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clc //Initialization of variables T1=150+460 //R T1=40+460 //R //calculations disp("from freon tables,") h2=43.850 //B/lbm hf2=17.273 hfg2=64.163 x2=(h2-hf2)/hfg2 //results printf("Quality of freon vapor = %.3f",x2)
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//Half band FIR Filter Design //(a)band-stop Half band Filter s=%s;z=%z; fp1=1;fs1=2;fp2=4;fs2=3;Ap=1;As=50; S=2*(fs1+fs2); Fp=0.5*(fs2/S-fs1/S);Fs=0.5*(fp2/S-fp1/S); Fc=0.5*(Fp+Fs);Fo=0.25; delp=(10^(Ap/20)-1)/(10^(Ap/20)+1); dels=10^(-As/20); del=min(delp,dels); As0=-20*log10(del) N1=(As0-7.95)/(14.36*(Fs-Fp))+1; N1=ceil(N1); B=0.0351*(As0-8.7) [hn1]=eqfir(31,[0 0.1;0.2 0.3;0.4 0.5],[1 0 1],[1 1 1]); [HBSF1,fr1]=frmag(hn1,400); HBSf1=20*log10(HBSF1); a=gca(); plot2d(fr1,HBSf1); xlabel('Digital Frequency'); ylabel('Magnitude in dB'); xtitle('Kaiser half band LPF:B=1.44;Fc=0.25'); [hn2]=eqfir(35,[0 0.1;0.2 0.3;0.4 0.5],[1 0 1],[1 1 1]); [HF2,fr2]=frmag(hn2,200); HBSf2=20*log10(HF2); xset('window',1); plot2d(fr2,HBSf2); xlabel('Digital Frequency'); ylabel('Magnitude in dB'); xtitle('Hamming half-band LPF:N=21;Fc=0.25');
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clear //Metodo Runge - Kutta de 4 ordem function result = RK4(x,y,hR,F_xy) for i=1:(length(x)-1) // calculation loop k_1 = F_xy(x(i),y(i)); k_2 = F_xy(x(i)+0.5*hR,y(i)+0.5*hR*k_1); k_3 = F_xy((x(i)+0.5*hR),(y(i)+0.5*hR*k_2)); k_4 = F_xy((x(i)+hR),(y(i)+k_3*hR)); y(i+1) = y(i) + (1/6)*(k_1+2*k_2+2*k_3+k_4)*hR; // main equation end result=y; endfunction //Initialize the method //iniInterval=0; //endInterval=2; //h=0.2 //(endInterval-iniInterval)/numSubInterval //Step size //numSubInterval=(endInterval-iniInterval)/h //Number of steps of ABM4 iniInterval=0; endInterval=0.1; h=0.01//((endInterval-iniInterval)/numSubInterval); //Step size numSubInterval=(endInterval-iniInterval)/h //Number of steps of ABM4 //Method Runge Kutta 4th Order xRK = iniInterval:h:iniInterval+3*h; // Calculates x for Range Kutta yRK = zeros(1,length(xRK)); // Make a array of zeros who size is lenght(x) //yRK(1)=0.5 yRK(1) = 0.3; //Initial condition //t=x e r=y function result = F_xy(t,r) result = r-(t^2)+1; //Change the function as you desire //result=t-2*r+1; endfunction yRK=RK4(xRK,yRK,h,F_xy) //Range Kutta 4th order //Method Adams-Bashfort-Moulton 4th Order f = zeros(1,5); xABM=zeros(1,numSubInterval+1); yABM=zeros(1,numSubInterval+1); for i=1:4 xABM(i)=xRK(i); yABM(i)=yRK(i); disp("x= "+string(xABM(i))+" y= "+string(yABM(i))); end for i=4:numSubInterval for k=3:-1:0 //Initialize the function x=xABM(i-k); y=yABM(i-k); f(3-k+1)=F_xy(x,y); //f1,f2,f3,f4 end //Predition Ypre =yABM(i)+((1/24)*h*((55*f(4))-(59*f(3))+(37*f(2))-(9*f(1)))); yABM(i+1)=Ypre; xABM(i+1)=iniInterval+i*h; //Correction x=xABM(i+1); y=yABM(i+1); f(5)=F_xy(x,y); Ycor=yABM(i)+((1/24)*h*(9*f(5)+19*f(4)-5*f(3)+f(2))); yABM(i+1)=Ycor; disp("x= "+string(xABM(i+1))+" y= "+string(yABM(i+1))); end
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clc // Given That lambda=5.89e-5// wavelength in cm rotation=(%pi/18)// rotation of plane of polarization in degree per cm //Sample Problem 32 Page No. 60 printf("\n # Problem 32 # \n ") printf(" \n Standard formula used \n delta=pi*d*del_mu/lambda \n") del_mu=rotation*lambda/ (%pi) printf("Difference in refractive indices of substance is %e .\n",del_mu)
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function tracerDensitePoisson(borneA, borneB, lambda) x= borneA:borneB; y = exp(-lambda) * lambda^x ./ factorial(x); plot2d(x, y, rect=[0,0,10,0.3],style=2); xtitle("Distribution théorique", "Valeurs de k", "P(X=k)"); endfunction
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clear clc disp("example10.5") i1=0.8 i2=1.0 l1=complex(0.04,0.12) l2=complex(0.03,0.1) l3=complex(0.03,0.12) vl=1 i3=i1+i2 v1=vl+i3*(l1)+i1*(l2) v2=vl+i3*(l1)+i2*(l3) p1=real(i1*v1) p2=real(i2*v2) cos1=real(v1)/abs(v1) cos2=real(v2)/abs(v2) b11=abs((real(l1)+real(l2))/(v1^2*cos1^2)) b22=abs((real(l1)+real(l3))/(v2^2*cos2^2)) b12=abs((real(l1))/(v1*v2*cos1*cos2)) pl=(p1^2)*b11+(p2^2)*b22+2*p1*p2*b12 printf("i1+i3=%dpu\nv1=%1.3f+%1.3fp.u\nv2=%1.3f+%1.3fp.u\np1=%1.3fp.u\np2=%1.3fp.u\ncos(ph1)=%1.3f\ncos(ph2)=%1.3f\nb11=%1.5fp.u\nb22=%1.5fp.u\nb12=%1.5fp.u\npl=%1.6fp.u",i3,v1,imag(v1),v2,imag(v2),p1,p2,cos1,cos2,b11,b22,b12,pl)
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function m = func1(i,j,N) m = i + (j-1) * (N-1); endfunction
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r=5*10^-15; //say r=∆x h=1.055; c=3*10^8; m0=9.1; disp("∆p >= h/(4*pi*∆x)"); a=h/(2*r); b=a*(10^-14); printf('\n The uncertainity in momentum is %f *(10^-20) kg m/s',b); d=0.511; e=1.6; f=d*e; printf('\n The rest mass enrgy of electron is %f*(10^-13) J',f); g=b*c; k=g*10^-8; printf('\n The value of ∆p*c is %f*(10^-12) J',k); disp("E=sqrt((m0*c^2)^2+(p*c)^2)"); disp("Emin=3.165*10^-12"); i=3.165*(10^-12)/(1.6*(10^-19)*10^6); printf('\n The value of Emin in Mev is %f',i); j=5.3; l=h/(2*j); m=l*10^2; printf('\n The uncertainity in momentum is when %f *(10^-23) kg m/s',m); n=(m^2)/(2*m0); printf('\n The value of kinetic energy is %f*(10^-19) J',n); o=n/1.6; printf('\n The value of kinetic energy in eV is %f eV',o);
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b=225//in mm D=500//in mm c=50//cover, in mm Asc=1520//in sq mm Ast=Asc fck=20//in MPa fy=500//in MPa fcc=0.446*fck//in MPa //(i) xu=1.3*D//in mm m=0.43*D//in mm esc1=0.002*(xu-c)/(xu-m) esc2=0.002*(xu-D+c)/(xu-m) //by interpolation fsc1=412.515//in MPa fsc2=183.794//in MPa //stress block parameters for xu / D = 1.3 n=0.409 l=0.468 A=n*fck*D//area of stress block r=l*D//distance of c.g., in mm Pu=(A*b+Asc*(fsc1-fcc)+Ast*fsc2)/10^3//in kN Mu=(A*b*(D/2-r)+Asc*(fsc1-fcc)*(D/2-c)-Ast*fsc2*(D/2-c))/10^6//in kN-m mprintf("(i) For xu = 1.3 D\nP=%f kN\nMu=%f kN-m\n",Pu,Mu) //(ii) xu=400//in mm esc=0.0035*(xu-c)/xu est=0.0035*(D-c-xu)/xu //by interpolation fsc=422.11//in MPa fst=87.45//in MPa Pu=(0.36*fck*b*xu+Asc*(fsc-fcc)-Ast*fst)/10^3//in kN Mu=(0.36*fck*b*xu*(D/2-0.416*xu)+Asc*(fsc-fcc)*(D/2-c)+Ast*fst*(D/2-c))/10^6//in kN-m mprintf("(ii) For xu = 400 mm\nP=%f kN\nMu=%f kN-m",Pu,Mu) //answer in textbook for Mu in (ii) is incorrect
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//===================================================================================== //Chapter 14 example 6 clc; clear all; //variable declaration n =3; //number of full digits v1 = 1; //voltage in V v2 = 10; //voltage in V v3 = 5; //voltage in V a = 0.5; //accuracy of reading in % r = 2; //reading in V //calculations R = 1/(10^n); //resolution V1 = R*v1; //for full scale range of 1V ,the resolution in V V2 = R*v2; //for full scale range of 10V ,the resolution in V v = v3*R; //the digit in least significant digit has a value of in V e = ((a/100)*r)+v; //total possible error on in V //result mprintf("for full scale range of 1V ,the resolution = %3.4f V",V1); mprintf("\nfor full scale range of 10V ,the resolution = %3.4f V",V2); mprintf("\ntotal possible error = %3.5f V",e);
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function usermenu() x_message(['To define the action associated with ""Your Menu"" button'; 'edit usermenu macro (in scilab/macros/util)'; ' '; 'To add other user buttons, you can modify the C procedure'; 'scilab/xsci/command.c .'])
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clc clear //Input data d=0.1;//The diameter of the bore in m L=0.12;//The length of the stroke in m N=3000;//The engine rpm d2=0.035;//The throat diameter of carburettor venturi in m nv=80;//The volumetric efficiency of the engine in percent Cda=0.82;//The coefficient of discharge of air flow p=1.013;//The ambient pressure in bar T=298;//The ambient temperature in K ar=15;//The air fuel ratio Z=0.005;//The top of the jet above the petrol level in the float chamber in m Cdf=0.7;//The coefficient of discharge for fuel flow df=750;//The specific gravity of the fuel in kg/m^3 R=287;//Real gas constant in J/kgK pi=3.141;//The mathematical constant of pi g=9.81;//The gravitational constant in m/s^2 n=4;//Number of cylinders //Calculations V=(pi/4)*d^2*L*(nv/100)*(N/(2*60))*n;//Volume of air inducted per second in m^3/s da=(p*10^5)/(R*T);//The density of air in kg/m^3 ma=V*da;//The mass flow rate of air in kg/s A2=(pi/4)*d2^2;//The area of the throat in m^2 P=[ma^2/(Cda^2*A2^2*2*da)]/10^5;//The change in pressure in bar mf=ma/ar;//The mass flow rate of fuel in kg/s Aj=[mf/(Cdf*(2*df*((P*10^5)-(g*Z*df)))^(1/2))]*10^6;//The area of the fuel jet in mm^2 dj=(Aj*4/pi)^(1/2);//The diameter of the fuel jet of a simple carburator in mm //Output printf('The depression of the throat = %3.5f bar \n The diameter of the fuel jet of a simple carburettor = %3.2f mm ',P,dj)
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// Scilab code Ex2.5: Pg.78 (2008) clc; clear; // For simplicity let velocity of light be unity, i.e c = 1; // Velocity of light, m/s E_re = 0.5110; // Rest energy of electron, Mev/c^2 // Since E = m*c^2, solving for m, we get m = E_re/(c^2); // Mass of electron, Mev/c^2 v = 0.998*c; // Speed of muon, m/s gama = 1/sqrt(1-(v/c)^2); // Simplification factor m_m = 105.7; // Mass of muon, Mev/c^2 E = gama*m_m*c^2; // Energy of muon, MeV m_m = E/c^2; // Mass of muon, MeV/c^2 printf("\nThe total energy of the cosmic ray-produced muon = %4d MeV", E); printf("\nThe mass of muon = %4d MeV/c^2", m_m); // Result // Energy of muon particle = 1672 MeV // Mass of muon particle = 1672 MeV/c^2
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clc clear //input r=5500//radius g1=6.7*10^-11 g=7//acceleration due to gravity //calculation of mean density p=3*g/(4*%pi*r*10^3*g1)//mean density //output printf("the mean density of planet is %3.3f kgm^-3",p)
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//Introduction to Fiber Optics by A. Ghatak and K. Thyagarajan, Cambridge, New Delhi, 1999 //Example 2.2 //OS=Windows XP sp3 //Scilab version 5.5.2 clc; clear; //given P=10;//power of bulb in W A=4*%pi*1e2;//cross-sectional area covered by bulb in m^2 I=P/A;//power per unit area of bulb in W/m^2 n=1;//refractive index of air medium c=3e8;//speed of light in air medium in m/s meu0=4*(%pi)*1e-7;//permeability of free space in SI units E0=sqrt(2*c*meu0*I/n)//Corresponding electric field in V/m mprintf("Electric field=%.1f V/m",E0);//Final answer
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clc CO2=52.32 H2O=38.49 C5H12=247 O2=33.62 e=5 //moles of CO2 g=6 //moles of H2O h=8 //moles of O2 deltaCp=(e*CO2)+(g*H2O)-C5H12-(h*O2) mprintf("deltaCp=%f\n",deltaCp)//ans vary due to roundoff error deltaH298=-3274.5 t1=298 t2=800 deltaH800=deltaH298+(deltaCp*(10^-3)*(t2-t1)) mprintf("deltaH800=%fkJ",deltaH800)//ans vary due to roundoff error
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//Ex 1.13 clc;clear;close; format('v',6); E=12;//V V2=8;//V V4=2;//V V1=E-V2;//V //-V2+V3+V4=0;//for Loop B V3=V2-V4;//V disp(V1,"Voltage V1(V)"); disp(V3,"Voltage V3(V)");
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clf; clear; clc; load('C:\Users\tangu\OneDrive\Documents\GitHub\Modelisation\TD4\NetworkData.sod') // Extraction des temps de service index_bool = ( data(:, 3) == 1 ) tabS1 = data(index_bool, :) t_s1 = tabS1(1:$,4); deciles=perctl(t_s1,10:10:90); for i=2:10 ClassesDeciles(i)=deciles(i-1) end ClassesDeciles(1)=min(t_s1) ClassesDeciles(11)=max(t_s1) histplot(ClassesDeciles,t_s1,style=2) legend("Histogramme d isofréquence du serveur 1") // Définition des paramètres d'affichages a=gca(); a.x_location = "origin"; a.grid=[5,5];
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//Transport Processes and Seperation Process Principles //Chapter 2 //Example 2.2-3 //Principles of Momentum Transfer and Overall Balances //given data //a) si units rhow=1000; g=9.80665; P=101325; hw=P/(rhow*g);//water head mprintf("a) head= %f m of water 4 deg C",hw) //b) for Hg rhom=13595.5; hm=(rhow/rhom)*hw; mprintf(" b) head= %f m of Mercury",hm)
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//Caption:Calculate (i)-guide wavelength,(ii)-phase constant,(iii)-phase velocity for dominant mode //Exa:4.14 clc; clear; close; c=3*10^10;//in cm/s a=5;//in cm b=2.5;//in cm wl_o=4.5;//in cm //For TE10 mode: wl_c=2*a; wl_g=wl_o/sqrt(1-(wl_o/wl_c)^2); V_p=c/sqrt(1-(wl_o/wl_c)^2); w=2*%pi*c/wl_o; w_c=2*%pi*c/wl_c; b=sqrt(w^2-w_c^2)/c; disp(wl_g,'Guide wavelength (in cm) ='); disp(b,'Phase constant ='); disp(V_p,'Phase velocity (in cm/s) ='); //answer in book is wrongly written as guide wavelength =7.803 cm //answer in book is wrongly written as Phase velocity = 5.22*10^10 cm/s
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load Divide.asm, output-file Divide.out, compare-to Divide.cmp, output-list RAM[15]%D2.7.2; set PC 0, set RAM[13] 157; set RAM[14] 3; repeat 500 { ticktock; } output; set PC 0, set RAM[13] 2048; set RAM[14] 16; repeat 500 { ticktock; } output; set PC 0, set RAM[13] 0; set RAM[14] 0; repeat 500 { ticktock; } output; set PC 0, set RAM[13] 3; set RAM[14] 523; repeat 500 { ticktock; } output; set PC 0, set RAM[13] 33; set RAM[14] 11; repeat 500 { ticktock; } output;
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//To find mass of the flywheel clc //Given: d=40, t=15 //mm NoofHoles=30 //per minute EnergyRequired=6 //N-m/mm^2 Time=1/10 //seconds N1=160, N2=140 //rpm k=1 //m //Solution: //Calculating the sheared area per hole A=round(%pi*d*t) //Sheared area per hole, mm^2 //Calculating the energy required to punch a hole E1=EnergyRequired*A //N-m //Calculating the energy required for punching work per second E=E1*NoofHoles/60 //Energy required for punching work per second, N-m/s //Calculating the energy supplied by the motor during the time of punching E2=E*Time //N-m //Calculating the energy to be supplied by the flywheel during punching a hole deltaE=E1-E2 //N-m //Calculating the mean speed of the flywheel N=(N1+N2)/2 //rpm //Calculating the mass of the flywheel required m=round(deltaE*900/(%pi^2*k^2*N*(N1-N2))) //kg //Results: printf("\n\n Mass of the flywheel required, m = %d kg.\n\n",m)
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feature — используется при добавлении новой функциональности уровня приложения fix — если исправили какую-то серьезную багу docs — всё, что касается документации style — исправляем опечатки, исправляем форматирование refactor — рефакторинг кода приложения test — всё, что связано с тестированием chore — обычное обслуживание кода
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//Example number 5.3, Page number 85 clc;clear; close; //Variable declaration me=9.1*10**-31; //mass(kg) h=6.62*10**-34; //plank constant mn=1.676*10**-27; //mass(kg) c=3*10**8; //velocity of light(m/s) //Calculation lamda=h*10**10/sqrt(4*mn*me*c**2); //de broglie wavelength(angstrom) //Result printf("de broglie wavelength is %.1e Angstrom",lamda)
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//welcome Mr.Govardhan clc,clear,clf s=poly(0,'s') // poly command is used to write polynomial functions g = syslin('c',10/(s*(1+0.4*s)*(1+0.1*s))) // 'c' is used for continuous waveform bode(g) show_margins(g,'bode') [g,fr]=g_margin(g) // where g =gain ,fr =frequency [p,fr]=p_margin(g) ///////////////////////////////////////////////////// //example :2 clc,clear,clf,resethistory s=poly(0,'s') y=syslin('c',20/(s*(1+3*s)*(1+4*s))) bode(y) show_margins(y,'bode') [g,fr]=g_margin(y) [p,f]=p_margin(y) ///////////////////////////////////////////////////// //nyquist plot// clc,clear,clf,resethistory s=poly(0,'s') y=syslin('c',20/(s*(1+3*s)*(1+4*s))) nyquist(y) show_margins(y,'nyquist') ///////////////////////////////////////////////////// // 3d plot // clc,clear,clf,resethistory t=[0:0.3:2*%pi]' z=sin(t)*cos(t') plot3d(t,t,z) ///////////////////////////////////////////////////// clc,clear,clf,resethistory t=[0:0.3:2*%pi]'; z=sin(t)*cos(t'); [xx,yy,zz]=genfac3d(t,t,z) plot3d(xx,yy,zz) ///////////////////////////////////////////////////// clc,clear,clf,resethistory u = linspace(-%pi/2,%pi/2,40) //generates linearly spaced numbers between 2 reached bounds v = linspace(1,2*%pi,20) X = cos(u)'*cos(v) Y = cos(u)'*sin(v) Z = sin(u)'*ones(v) plot3d2(X,Y,Z)
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# This test file was generated from offline assembler source # by text2tst.rexx 2 Dec 2016 12:03:46 # Treat as object code. That is, modifications will be lost. # assemble and listing files are provided for information only. *Testcase cipher 20161202 12.03 sysclear archlvl z r 1A0=00000001800000000000000000000716 r 1C0=00020001800000000000000000000000 r 1D0=00020001800000000000000000000000 r 700=12EEA784000841A0900050A0F14C0DEE r 710=07F90AFF07F9 r 200=00000000000000000000000000000000 r 210=00000000000000000000000000000000 r 220=00000000000000000000000000000000 r 230=0F0E0D0C0B0A0908 r 238=00010203040506070000000000000000 r 248=00000000000000000000000000000000 r 258=0F0E0D0C0B0A09080001020304050607 r 268=08090A0B0C0D0E0F r 270=00000000000000000000000000000000 r 280=0000000000000000 r 290=0F0E0D0C0B0A09080001020304050607 r 2A0=08090A0B0C0D0E0F1011121314151617 r 2B0=00000000000000000000000000000000 r 2C0=0000000000000000 r 2C8=0F0E0D0C0B0A09080706050403020100 r 2D8=000102030405060708090A0B0C0D0E0F r 2E8=00000000000000000000000000000000 r 2F8=0000000000000000 r 300=00000000000000000001020304050607 r 310=08090A0B0C0D0E0F0F0E0D0C0B0A0908 r 320=07060504030201000001020304050607 r 330=08090A0B0C0D0E0F r 338=10111213141516170000000000000000 r 348=00000000000000000000000000000000 r 358=0000000000000000 r 368=0F0E0D0C0B0A09080706050403020100 r 378=000102030405060708090A0B0C0D0E0F r 388=101112131415161718191A1B1C1D1E1F r 398=0000000000000000 r 3A0=00000000000000000000000000000000 r 3B0=0000000000000000 r 716=410000804110F200B9280000 *Program 6 runtest .1 r 722=41000000B9280000A795FFEB runtest program .1 *Compare r 200.10 *Want F0003800 00000000 00000000 00000000 r 72E=410000014110F238B928000041000002 r 73E=4110F260B9280000410000034110F298 r 74E=B9280000410000124110F2D8B9280000 r 75E=410000134110F328 r 766=B9280000410000144110F378B9280000 r 776=A795FFC5 runtest svc .1 *Compare r 230.130 r 77A=410000004110F210B92E0002 *Program 6 runtest svc .1 r 786=B92E0020 *Program 6 runtest program .1 r 78A=B92E00224110F220B92F0022A795FFB5 runtest program .1 *Compare r 210.10 *Want "km query" F0703838 00002828 00000000 00000000 r 220.10 *Want "kmc query" F0703838 00000000 10000000 00000000 r 600=0F0E0D0C0B0A09080706050403020100 r 618=0001020304050607 r 79A=410000014110F6184120F70041300100 r 7AA=4140F400D7FFF400F4001B55B92E0042 r 7BA=A714FFFEB2220050A795FF9F runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 *Want "DEA encrypt" 0AC1057C AE3140C8 42998815 A83F973B r 7C6=A70A00804140F500D7FFF500F5004120 r 7D6=F40041300100B92E0042A714FFFEB222 r 7E6=0050A795FF8C runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "dea clear" 12EEA784 000841A0 900050A0 F14C0DEE r 7EC=410000014110F610D207F610F6004120 r 7FC=F700413001004140F400D7FFF400F400 r 80C=1B55B92F0042A714FFFEB2220050A795 r 81C=FF73 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 *Want "kmc DEA encrypt" 775871E5 7BCFB637 7A18002F 9D060111 r 81E=D207F610F600A70A00804140F500D7FF r 82E=F500F5004120F40041300100B92F0042 r 83E=A714FFFEB2220050A795FF5D runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-dea clear" 12EEA784 000841A0 900050A0 F14C0DEE r 84A=410000094110F2384120F70041300100 r 85A=4140F400D7FFF400F4001B55B92E0042 r 86A=A714FFFEB2220050A795FF47 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 *Want "dea-c encrypt" 0AC1057C AE3140C8 42998815 A83F973B r 876=A70A00804140F500D7FFF500F5004120 r 886=F40041300100B92E0042A714FFFEB222 r 896=0050A795FF34 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "dea-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 89C=410000094110F230D207F230F6004120 r 8AC=F700413001004140F400D7FFF400F400 r 8BC=1B55B92F0042A714FFFEB2220050A795 r 8CC=FF1B runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-dea-c encrypt" 775871E5 7BCFB637 7A18002F 9D060111 r 8CE=D207F230F600A70A00804140F500D7FF r 8DE=F500F5004120F40041300100B92F0042 r 8EE=A714FFFEB2220050A795FF05 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-dea-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 630=000102030405060708090A0B0C0D0E0F r 8FA=410000024110F6304120F70041300100 r 90A=4140F400D7FFF400F4001B55B92E0042 r 91A=A714FFFEB2220050A795FEEF runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "TDEA-128 encrypt" 7CA6D1C7 ED63C17C 82B881F2 ED99515A r 926=A70A00804140F500D7FFF500F5004120 r 936=F40041300100B92E0042A714FFFEB222 r 946=0050A795FEDC runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "tdea-128 clear" 12EEA784 000841A0 900050A0 F14C0DEE r 94C=410000024110F628D207F628F6004120 r 95C=F700413001004140F400D7FFF400F400 r 96C=1B55B92F0042A714FFFEB2220050A795 r 97C=FEC3 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-TDEA-128 encrypt" ECB31BB4 AD6F93D9 C011B376 FB0A028C r 97E=D207F628F600A70A00804140F500D7FF r 98E=F500F5004120F40041300100B92F0042 r 99E=A714FFFEB2220050A795FEAD runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-tdea-128 clear" 12EEA784 000841A0 900050A0 F14C0DEE r 9AA=4100000A4110F2604120F70041300100 r 9BA=4140F400D7FFF400F4001B55B92E0042 r 9CA=A714FFFEB2220050A795FE97 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "tdea-128-c encrypt" 7CA6D1C7 ED63C17C 82B881F2 ED99515A r 9D6=A70A00804140F500D7FFF500F5004120 r 9E6=F40041300100B92E0042A714FFFEB222 r 9F6=0050A795FE84 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "tdea-128-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 9FC=4100000A4110F258D207F258F6004120 r A0C=F700413001004140F400D7FFF400F400 r A1C=1B55B92F0042A714FFFEB2220050A795 r A2C=FE6B runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-TDEA-128-c encrypt" ECB31BB4 AD6F93D9 C011B376 FB0A028C r A2E=D207F258F600A70A00804140F500D7FF r A3E=F500F5004120F40041300100B92F0042 r A4E=A714FFFEB2220050A795FE55 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-tdea-128-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 648=000102030405060708090A0B0C0D0E0F r 658=10111213141516170000000000000000 r A5A=410000034110F6484120F70041300100 r A6A=4140F400D7FFF400F4001B55B92E0042 r A7A=A714FFFEB2220050A795FE3F runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "TDEA-192 encrypt" 486E3849 9D047AE7 0CB72FC7 52D816BD r A86=A70A00804140F500D7FFF500F5004120 r A96=F40041300100B92E0042A714FFFEB222 r AA6=0050A795FE2C runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "tdea-192 clear" 12EEA784 000841A0 900050A0 F14C0DEE r AAC=410000034110F640D207F640F6004120 r ABC=F700413001004140F400D7FFF400F400 r ACC=1B55B92F0042A714FFFEB2220050A795 r ADC=FE13 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-TDEA-192 encrypt" B28FE3BA 98A5F8B9 6A025CE0 A10EB6C7 r ADE=D207F640F600A70A00804140F500D7FF r AEE=F500F5004120F40041300100B92F0042 r AFE=A714FFFEB2220050A795FDFD runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-tdea-192 clear" 12EEA784 000841A0 900050A0 F14C0DEE r B0A=4100000B4110F2984120F70041300100 r B1A=4140F400D7FFF400F4001B55B92E0042 r B2A=A714FFFEB2220050A795FDE7 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "tdea-192-c encrypt" 486E3849 9D047AE7 0CB72FC7 52D816BD r B36=A70A00804140F500D7FFF500F5004120 r B46=F40041300100B92E0042A714FFFEB222 r B56=0050A795FDD4 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "tdea-192-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r B5C=4100000B4110F290D207F290F6004120 r B6C=F700413001004140F400D7FFF400F400 r B7C=1B55B92F0042A714FFFEB2220050A795 r B8C=FDBB runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-TDEA-192-c encrypt" B28FE3BA 98A5F8B9 6A025CE0 A10EB6C7 r B8E=D207F290F600A70A00804140F500D7FF r B9E=F500F5004120F40041300100B92F0042 r BAE=A714FFFEB2220050A795FDA5 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-tdea-192-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 678=000102030405060708090A0B0C0D0E0F r 688=000102030405060708090A0B0C0D0E0F r BBA=410000124110F6784120F70041300100 r BCA=4140F400D7FFF400F4001B55B92E0042 r BDA=A714FFFEB2220050A795FD8F runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "AES-128 encrypt" 4BAEA5CB F3A16993 492F7031 31D004E6 r BE6=A70A00804140F500D7FFF500F5004120 r BF6=F40041300100B92E0042A714FFFEB222 r C06=0050A795FD7C runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "aes-128 clear" 12EEA784 000841A0 900050A0 F14C0DEE r C0C=410000124110F668D20FF668F6004120 r C1C=F700413001004140F400D7FFF400F400 r C2C=1B55B92F0042A714FFFEB2220050A795 r C3C=FD63 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc AES-128 encrypt" 31090D54 5341F560 12C8663B E3EA8CB6 r C3E=D20FF668F600A70A00804140F500D7FF r C4E=F500F5004120F40041300100B92F0042 r C5E=A714FFFEB2220050A795FD4D runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-aes-128 clear" 12EEA784 000841A0 900050A0 F14C0DEE r C6A=4100001A4110F2D84120F70041300100 r C7A=4140F400D7FFF400F4001B55B92E0042 r C8A=A714FFFEB2220050A795FD37 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "aes-128-c encrypt" 4BAEA5CB F3A16993 492F7031 31D004E6 r C96=A70A00804140F500D7FFF500F5004120 r CA6=F40041300100B92E0042A714FFFEB222 r CB6=0050A795FD24 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "aes-128-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r CBC=4100001A4110F2C8D20FF2C8F6004120 r CCC=F700413001004140F400D7FFF400F400 r CDC=1B55B92F0042A714FFFEB2220050A795 r CEC=FD0B runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc AES-128-c encrypt" 31090D54 5341F560 12C8663B E3EA8CB6 r CEE=D20FF2C8F600A70A00804140F500D7FF r CFE=F500F5004120F40041300100B92F0042 r D0E=A714FFFEB2220050A795FCF5 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-aes-128-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r D1A=410000324110F6784120F70041300100 r D2A=4140F400D7FFF400F4001B55B92E0042 r D3A=A714FFFEB2220050A795FCDF runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "XTS-AES-128 encrypt" 0671AB22 583E906D 12C21AB6 463341AE r D46=D20FF688F678A70A00804140F500D7FF r D56=F500F5004120F40041300100B92E0042 r D66=A714FFFEB2220050A795FCC9 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "xts-aes-128 clear" 12EEA784 000841A0 900050A0 F14C0DEE r D72=4100003A4110F2D84120F70041300100 r D82=4140F400D7FFF400F4001B55B92E0042 r D92=A714FFFEB2220050A795FCB3 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "XTS-aes-128-c encrypt" 0671AB22 583E906D 12C21AB6 463341AE r D9E=D20FF308F678A70A00804140F500D7FF r DAE=F500F5004120F40041300100B92E0042 r DBE=A714FFFEB2220050A795FC9D runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "xts-aes-128-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 6A8=000102030405060708090A0B0C0D0E0F r 6B8=10111213141516170000000000000000 r DCA=410000134110F6A84120F70041300100 r DDA=4140F400D7FFF400F4001B55B92E0042 r DEA=A714FFFEB2220050A795FC87 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "AES-192 encrypt" EE3EAA7F 5500091D 509AC619 2A222632 r DF6=A70A00804140F500D7FFF500F5004120 r E06=F40041300100B92E0042A714FFFEB222 r E16=0050A795FC74 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "aes-192 clear" 12EEA784 000841A0 900050A0 F14C0DEE r E1C=410000134110F698D20FF698F6004120 r E2C=F700413001004140F400D7FFF400F400 r E3C=1B55B92F0042A714FFFEB2220050A795 r E4C=FC5B runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-AES-192 encrypt" 7A5E62BE 6DD45AB4 03F9EB6A DFCF9920 r E4E=D20FF698F600A70A00804140F500D7FF r E5E=F500F5004120F40041300100B92F0042 r E6E=A714FFFEB2220050A795FC45 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-aes-192 clear" 12EEA784 000841A0 900050A0 F14C0DEE r E7A=4100001B4110F3284120F70041300100 r E8A=4140F400D7FFF400F4001B55B92E0042 r E9A=A714FFFEB2220050A795FC2F runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "AES-192-c encrypt" EE3EAA7F 5500091D 509AC619 2A222632 r 410.f0 r EA6=A70A00804140F500D7FFF500F5004120 r EB6=F40041300100B92E0042A714FFFEB222 r EC6=0050A795FC1C runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "aes-192-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r ECC=4100001B4110F318D20FF318F6004120 r EDC=F700413001004140F400D7FFF400F400 r EEC=1B55B92F0042A714FFFEB2220050A795 r EFC=FC03 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-AES-192-c encrypt" 7A5E62BE 6DD45AB4 03F9EB6A DFCF9920 r EFE=D20FF318F600A70A00804140F500D7FF r F0E=F500F5004120F40041300100B92F0042 r F1E=A714FFFEB2220050A795FBED runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-aes-192-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 6D8=000102030405060708090A0B0C0D0E0F r 6E8=101112131415161718191A1B1C1D1E1F r F2A=410000144110F6D84120F70041300100 r F3A=4140F400D7FFF400F4001B55B92E0042 r F4A=A714FFFEB2220050A795FBD7 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "AES-256 encrypt" BFF28D4A A70CFF6F 2DF87BF0 D6FC2882 r F56=A70A00804140F500D7FFF500F5004120 r F66=F40041300100B92E0042A714FFFEB222 r F76=0050A795FBC4 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "aes-256 clear" 12EEA784 000841A0 900050A0 F14C0DEE r F7C=410000144110F6C8D20FF6C8F6004120 r F8C=F700413001004140F400D7FFF400F400 r F9C=1B55B92F0042A714FFFEB2220050A795 r FAC=FBAB runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-AES-256 encrypt" 418BF112 38C9F028 A32DF978 A3E56293 r FAE=D20FF6C8F600A70A00804140F500D7FF r FBE=F500F5004120F40041300100B92F0042 r FCE=A714FFFEB2220050A795FB95 runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-aes-256 clear" 12EEA784 000841A0 900050A0 F14C0DEE r FDA=4100001C4110F3784120F70041300100 r FEA=4140F400D7FFF400F4001B55B92E0042 r FFA=A714FFFEB2220050A795FB7F runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "AES-256 encrypt" BFF28D4A A70CFF6F 2DF87BF0 D6FC2882 r 1006=A70A00804140F500D7FFF500F5004120 r 1016=F40041300100B92E0042A714FFFEB222 r 1026=0050A795FB6C runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "aes-256-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 102C=4100001C4110F368D20FF368F6004120 r 103C=F700413001004140F400D7FFF400F400 r 104C=1B55B92F0042A714FFFEB2220050A795 r 105C=FB53 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-AES-256 encrypt" 418BF112 38C9F028 A32DF978 A3E56293 r 105E=D20FF368F600A70A00804140F500D7FF r 106E=F500F5004120F40041300100B92F0042 r 107E=A714FFFEB2220050A795FB3D runtest svc .1 gpr *Gpr 2 0500 #address *Gpr 3 0000 *Gpr 4 0600 #address *Gpr 5 0000 r 500.10 *Want "kmc-aes-256-c clear" 12EEA784 000841A0 900050A0 F14C0DEE r 3B8=0F0E0D0C0B0A09080001020304050607 r 3C8=08090A0B0C0D0E0F1011121314151617 r 108A=410000434110F3B84120F70041300100 r 109A=4140F400D7FFF400F4001B55B92F0042 r 10AA=A714FFFEB2220050A795FB27 runtest svc .1 gpr *Gpr 2 0800 #address *Gpr 3 0000 *Gpr 4 0500 #address *Gpr 5 0000 r 400.10 * *Want "kmc-prng" 895D7F0D 4A95FB6D 2D170C6D 59FE9CF7 r 3b8.8 *Want "prng chain" AAF415C1 203ECFBB *Done
78996aae4c4b90edf7a63681a81b620100bbe104
449d555969bfd7befe906877abab098c6e63a0e8
/2207/CH4/EX4.8.2/ex_4_8_2.sce
5c9b8e0506e82e91c704ecb428e05d69e9c186c8
[]
no_license
FOSSEE/Scilab-TBC-Uploads
948e5d1126d46bdd2f89a44c54ba62b0f0a1f5e1
7bc77cb1ed33745c720952c92b3b2747c5cbf2df
refs/heads/master
2020-04-09T02:43:26.499817
2018-02-03T05:31:52
2018-02-03T05:31:52
37,975,407
3
12
null
null
null
null
UTF-8
Scilab
false
false
185
sce
ex_4_8_2.sce
//Example 4.8.2: current clc; clear; close; io=1;//assume t0=0;// t1=(2*%pi)/3;// th=integrate('1','t',t0,t1);// th1=(1/(2*%pi))*th;// x=th1^(1/2);// disp("Ithrms is "+string(x)+"*Io")
6c9477bf9975cd107e438fa715f272e0e53da45c
fbd17575bab2ee4dc49cc7d13b5b94d24ab9482c
/TP4/rendre/testTP4-2.sci
3b5bfc58201fe6f06102b304c6263653ae49e05a
[]
no_license
1saac-W/MT09-Analyse-Num-rique
05b509981dfa00e3b7b550716b1487cbbf0a3fed
0853f8053254f5dd23179073187ada3d936aff84
refs/heads/master
2020-09-27T04:34:36.549125
2020-01-05T16:02:18
2020-01-05T16:02:18
226,431,201
0
0
null
null
null
null
UTF-8
Scilab
false
false
2,531
sci
testTP4-2.sci
//4.2 (a) exec './hilbert.sci'; //4.2 (b) //création de './puissiterSDP.sci' et './puissitereeinvSDP.sci', // en remplaçant la ligne u = B \ x par méthode de Cholesky exec './puissiterSDP.sci'; exec './puissitereeinvSDP.sci'; //4.2 (c) H4 = hilbertmat(4); H10 = hilbertmat(10); disp('H4 :'); disp(H4); disp('H10 :'); disp(H10); tol = 1e-12; N = 200; x_4 = ones(4,1); x_10 = ones(10,1); q = 0; [vp,vecp, kk]= puissiterSDP(H4,x_4,N,tol) [vp1, vecp1, k1] = puissitereeinvSDP(H4, q, x_4, N, tol); [vp2,vecp, kk]= puissiterSDP(H10,x_10,N,tol) [vp3, vecp1, k1] = puissitereeinvSDP(H10, q, x_10, N, tol); cond4 = vp/vp1; cond10 = vp2/vp3; disp("Le conditionnement de H4 est de Lambda max / Lambda min :"); //disp(vp, '/', vp1, '=', cond4); disp(cond4, '=', vp1, '/', vp) disp("Le conditionnement de H10 est de Lambda max / Lambda min "); //disp(vp2, '/', vp3, '=', cond10); disp(cond10, '=', vp3, '/', vp2); //4.2 (d) cond4_2 = cond(H4); cond10_2 = cond(H10); disp("Le conditionnement de H4 selon la fonction cond de scilab est de");disp(cond4); disp("Le conditionnement de H10 selon la fonction cond de scilab est de");disp(cond10); //4.2 (e) exec './resolchol.sci'; b1 = [1 1 1 1]'; x1 = resolchol(H4,b1); disp("x1 = ");disp(x1); bpert = [0.999 1.004 0.995 1.005]'; xpert = resolchol(H4,bpert); disp("xpert =");disp(xpert); deltb = b1-bpert; deltx = x1-xpert; ecart_b = norm(deltb)/norm(b1); ecart_x = norm(deltx)/norm(x1); disp("L ecart relatif de b est de");disp(ecart_b); disp("L ecart relatif de x est de");disp(ecart_x); //4.2 (f) b2 = ones(10,1); x2 = resolchol(H10,b2); disp("x2 = ");disp(x2); b2pert = b2-1e-3*rand(1,10,"unifoem")'; x2pert = resolchol(H10,b2pert); disp("x2pert =");disp(x2pert); deltb2 = b2-b2pert; deltx2 = x2-x2pert; ecart_b2 = norm(deltb2)/norm(b2); ecart_x2 = norm(deltx2)/norm(x2); disp("L ecart relatif de b2 est de");disp(ecart_b2); disp("L ecart relatif de x2 est de");disp(ecart_x2); x2_2 = H10\b2; x2pert_2 = H10\b2pert; disp("x2_2 =");disp(x2_2); disp("x2pert_2 = ");disp(x2pert_2); deltx3 = x2_2-x2pert_2; ecart_x3 = norm(deltx2)/norm(x2_2); //disp("L ecart relatif de b2 est de");disp(ecart_b2); disp("L ecart relatif de x2 en utisant la fonction \ de scilab est de");disp(ecart_x3); //L'écart relatif de X est tuojours plus important lorsque l'équation //est résolue via la résolution du système linéaire x = H\ b //que lorsqu'elle est résolue via la méthode de Cholesky. //Cependant, la matrice de Hilbert étant mal conditionnée, cet //écart reste conséquent.
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//Page Number: 11.31 //Example 11.32 clc; //Given Px=[1/2 1/4 1/8 1/8]; //As I(xi)=-log2(Pxi) for i=1:4 Ix(i)=-log2(Px(i)); n(i)=Ix(i); end //As H(X)=-Sum of[P(xi)log2P(xi)] //and I(xi)=-log2p(xi) //Where i=0 to n; HofX=0; for i=1:4 HofX=HofX+(Px(i)*Ix(i)); end //Average Code length //L=Summation(P(xi)ni) L=0; for i=1:4 L=L+(Px(i)*n(i)); end //Efficiency=H(X)/L n=HofX/L; np=n*100; disp('%',np,'Code efficiency:'); //Hence, efficiency is 100%
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//multiple loop systems s=%s innerloop=syslin('c',6/s*(s+1)*(s+2)) nyquist(innerloop) show_margins(innerloop,'nyquist') printf("nyquist plot intersects jw axis at -1 so innerloop is marginally stable") outerloop=syslin('c',100*(s+0.1)/(s+10)*(s^3+3*s^2+2*s+6)) //nyquist(outerloop) show_margins(outerloop,'nyquist') P=0//no of poles on RHP Pw=2//no of poles on jw axis theta=-(Z-P-0.5*Pw)*180 Z=0//for outer loop to be stable disp(theta,"theta for stability=") printf("theta as seen from nyquist plot is same as that required for stability \n hence outer loop is stable")
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clc(); clear; // To calculate the energies of electron n2=2; //second quantum state n3=3; //fourth quantum state h=6.626*10^-34; m=9.1*10^-31; //mass in kg a=1*10^-10; //width of potential well in m B=8*m*a^2; E1=h^2/B; //ground state energy E1eV=E1/(1.6*10^-19); //energy in eV A=n2^2*h^2; E2=A/B; //energy in j E2eV=E2/(1.6*10^-19); //energy in eV C=n3^2*h^2; E3=C/B; //energy in j E3eV=E3/(1.6*10^-19); //energy in eV printf("ground state energy in Joule is"); disp(E1); printf("ground state energy in eV is"); disp(E1eV); printf("first energy state in eV is"); disp(E2eV); printf("second energy state in eV is"); disp(E3eV); //answers given in the book are wrong by one decimal
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solution8_17.sce
//Obtain path of solution file path = get_absolute_file_path('solution8_17.sce') //Obtain path of data file datapath = path + filesep() + 'data8_17.sci' //Obtain path of function file funcpath = path + filesep() + 'functions8_17.sci' //Clear all clc //Execute the data file exec(datapath) exec(funcpath,[-1]) //Calculate the limit stress for the weld Sdash (N/mm2) Sdash = (50/100)*Sut //Calculate Ka, Kb and Kc funcprot(0) [Ka, Kb, Kc, Kf] = fluctuate(op, d, reliability) //From Fig.5.24 //Ka = 0.52 //Calculate the value of Kd Kd = 1/Kf //Calculate the endurance limit of the butt weld Se (N/mm2) Se = Ka * Kb * Kc * Kd * Sdash //Calculate the permissible stress amplitude sigmat (N/mm2) sigmat = Se/fs //Calculate the length of the weld l (mm) l = (P * 1000)/(d * sigmat) //Print results) printf('\nThe length of the weld(l) = %f mm\n',l) printf('\nAnswer is slightly different because of use of equation 5.18\n') printf('Use value of Ka from Fig.5.24 in order to obtain the mentioned result\n')
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clc clear //Initialization of variables Y=0.06 X=0.0012 P=2.53 //Mpa //calculations y=Y/(1+Y) x=X/(1+X) H=y*P/x //results printf("Henrys law constant = %.2f Mpa",H)
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libieeep1788_tests_rev.tst
## DO NOT EDIT! Generated automatically from test/libieeep1788_tests_rev.itl ## by the Interval Testing Framework for IEEE 1788. ## https://github.com/nehmeier/ITF1788/tree/92558f7e942665a78f2e883dbe7af52320100fba ## ## Copyright 2013-2015 Marco Nehmeier (nehmeier@informatik.uni-wuerzburg.de) ## Copyright 2015-2016 Oliver Heimlich ## ## Original author: Marco Nehmeier (unit tests in libieeep1788, ## original license: Apache License 2.0) ## Converted into portable ITL format by Oliver Heimlich with minor corrections. ## ## This program is free software; you can redistribute it and/or modify ## it under the terms of the GNU General Public License as published by ## the Free Software Foundation; either version 3 of the License, or ## (at your option) any later version. ## ## This program is distributed in the hope that it will be useful, ## but WITHOUT ANY WARRANTY; without even the implied warranty of ## MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the ## GNU General Public License for more details. ## ## You should have received a copy of the GNU General Public License ## along with this program; if not, see <http://www.gnu.org/licenses/>. ## %!#Test library imports %!#Arithmetic library imports pkg load interval %!#Preamble try; error ("__FILE__"); catch test (lasterror.stack.file, "quiet", stdout); end_try_catch; %!function assert_warn (observed_value, expected_value) %! if (not (isequal (observed_value, expected_value))) %! observed_expression = regexprep (argn(1, :), '\s+$', ''); %! expected_expression = regexprep (argn(2, :), '\s+$', ''); %! observed_as_char = disp (observed_value)(1 : end - 1); %! expected_as_char = disp(expected_value)(1 : end - 1); %! warning ([observed_expression, " != ", expected_expression, ... %! "\n ", observed_as_char, " != ", expected_as_char]); %! endif %!endfunction ## minimal_sqrRev_test %!test %! assert (isequal (sqrrev (infsup), infsup)); %!test %! assert (isequal (sqrrev (infsup (-10.0, -1.0)), infsup)); %!test %! assert (isequal (sqrrev (infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (sqrrev (infsup (0.0, 1.0)), infsup (-1.0, 1.0))); %!test %! assert (isequal (sqrrev (infsup (-0.5, 1.0)), infsup (-1.0, 1.0))); %!test %! assert (isequal (sqrrev (infsup (-1000.0, 1.0)), infsup (-1.0, 1.0))); %!test %! assert (isequal (sqrrev (infsup (0.0, 25.0)), infsup (-5.0, 5.0))); %!test %! assert (isequal (sqrrev (infsup (-1.0, 25.0)), infsup (-5.0, 5.0))); %!test %! assert (isequal (sqrrev (infsup (1.000000000000000021e-02, 1.000000000000000194e-02)), infsup (-1.000000000000000194e-01, 1.000000000000000194e-01))); %!test %! assert (isequal (sqrrev (infsup (0.0, 3.999999999999986233e+00)), infsup (-1.999999999999996669e+00, 1.999999999999996669e+00))); ## minimal_sqrRevBin_test %!test %! assert (isequal (sqrrev (infsup, infsup (-5.0, 1.0)), infsup)); %!test %! assert (isequal (sqrrev (infsup (-10.0, -1.0), infsup (-5.0, 1.0)), infsup)); %!test %! assert (isequal (sqrrev (infsup (0.0, inf), infsup (-5.0, 1.0)), infsup (-5.0, 1.0))); %!test %! assert (isequal (sqrrev (infsup (0.0, 1.0), infsup (-0.1, 1.0)), infsup (-0.1, 1.0))); %!test %! assert (isequal (sqrrev (infsup (-0.5, 1.0), infsup (-0.1, 1.0)), infsup (-0.1, 1.0))); %!test %! assert (isequal (sqrrev (infsup (-1000.0, 1.0), infsup (-0.1, 1.0)), infsup (-0.1, 1.0))); %!test %! assert (isequal (sqrrev (infsup (0.0, 25.0), infsup (-4.1, 6.0)), infsup (-4.1, 5.0))); %!test %! assert (isequal (sqrrev (infsup (-1.0, 25.0), infsup (-4.1, 7.0)), infsup (-4.1, 5.0))); %!test %! assert (isequal (sqrrev (infsup (1.0, 25.0), infsup (0.0, 7.0)), infsup (1.0, 5.0))); %!test %! assert (isequal (sqrrev (infsup (1.000000000000000021e-02, 1.000000000000000194e-02), infsup (-0.1, inf)), infsup (-0.1, 1.000000000000000194e-01))); %!test %! assert (isequal (sqrrev (infsup (0.0, 3.999999999999986233e+00), infsup (-0.1, inf)), infsup (-0.1, 1.999999999999996669e+00))); ## minimal_sqrRev_dec_test %!test %! assert (isequal (sqrrev (infsupdec (empty, "trv")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (empty, "trv"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-10.0, -1.0, "com")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-10.0, -1.0, "com"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, inf, "dac")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, inf, "dac"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, 1.0, "def")), infsupdec (-1.0, 1.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, 1.0, "def"))){1}, decorationpart (infsupdec (-1.0, 1.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-0.5, 1.0, "dac")), infsupdec (-1.0, 1.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-0.5, 1.0, "dac"))){1}, decorationpart (infsupdec (-1.0, 1.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-1000.0, 1.0, "com")), infsupdec (-1.0, 1.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-1000.0, 1.0, "com"))){1}, decorationpart (infsupdec (-1.0, 1.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, 25.0, "def")), infsupdec (-5.0, 5.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, 25.0, "def"))){1}, decorationpart (infsupdec (-5.0, 5.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-1.0, 25.0, "dac")), infsupdec (-5.0, 5.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-1.0, 25.0, "dac"))){1}, decorationpart (infsupdec (-5.0, 5.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (1.000000000000000021e-02, 1.000000000000000194e-02, "com")), infsupdec (-1.000000000000000194e-01, 1.000000000000000194e-01, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (1.000000000000000021e-02, 1.000000000000000194e-02, "com"))){1}, decorationpart (infsupdec (-1.000000000000000194e-01, 1.000000000000000194e-01, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, 3.999999999999986233e+00, "def")), infsupdec (-1.999999999999996669e+00, 1.999999999999996669e+00, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, 3.999999999999986233e+00, "def"))){1}, decorationpart (infsupdec (-1.999999999999996669e+00, 1.999999999999996669e+00, "trv")){1})); ## minimal_sqrRev_dec_bin_test %!test %! assert (isequal (sqrrev (infsupdec (empty, "trv"), infsupdec (-5.0, 1.0, "def")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (empty, "trv"), infsupdec (-5.0, 1.0, "def"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-10.0, -1.0, "com"), infsupdec (-5.0, 1.0, "dac")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-10.0, -1.0, "com"), infsupdec (-5.0, 1.0, "dac"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, inf, "def"), infsupdec (-5.0, 1.0, "dac")), infsupdec (-5.0, 1.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, inf, "def"), infsupdec (-5.0, 1.0, "dac"))){1}, decorationpart (infsupdec (-5.0, 1.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, 1.0, "dac"), infsupdec (-0.1, 1.0, "def")), infsupdec (-0.1, 1.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, 1.0, "dac"), infsupdec (-0.1, 1.0, "def"))){1}, decorationpart (infsupdec (-0.1, 1.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-0.5, 1.0, "def"), infsupdec (-0.1, 1.0, "dac")), infsupdec (-0.1, 1.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-0.5, 1.0, "def"), infsupdec (-0.1, 1.0, "dac"))){1}, decorationpart (infsupdec (-0.1, 1.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-1000.0, 1.0, "com"), infsupdec (-0.1, 1.0, "def")), infsupdec (-0.1, 1.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-1000.0, 1.0, "com"), infsupdec (-0.1, 1.0, "def"))){1}, decorationpart (infsupdec (-0.1, 1.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, 25.0, "def"), infsupdec (-4.1, 6.0, "com")), infsupdec (-4.1, 5.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, 25.0, "def"), infsupdec (-4.1, 6.0, "com"))){1}, decorationpart (infsupdec (-4.1, 5.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (-1.0, 25.0, "dac"), infsupdec (-4.1, 7.0, "def")), infsupdec (-4.1, 5.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (-1.0, 25.0, "dac"), infsupdec (-4.1, 7.0, "def"))){1}, decorationpart (infsupdec (-4.1, 5.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (1.0, 25.0, "dac"), infsupdec (0.0, 7.0, "def")), infsupdec (1.0, 5.0, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (1.0, 25.0, "dac"), infsupdec (0.0, 7.0, "def"))){1}, decorationpart (infsupdec (1.0, 5.0, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (1.000000000000000021e-02, 1.000000000000000194e-02, "def"), infsupdec (-0.1, inf, "dac")), infsupdec (-0.1, 1.000000000000000194e-01, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (1.000000000000000021e-02, 1.000000000000000194e-02, "def"), infsupdec (-0.1, inf, "dac"))){1}, decorationpart (infsupdec (-0.1, 1.000000000000000194e-01, "trv")){1})); %!test %! assert (isequal (sqrrev (infsupdec (0.0, 3.999999999999986233e+00, "dac"), infsupdec (-0.1, inf, "dac")), infsupdec (-0.1, 1.999999999999996669e+00, "trv"))); %! assert (isequal (decorationpart (sqrrev (infsupdec (0.0, 3.999999999999986233e+00, "dac"), infsupdec (-0.1, inf, "dac"))){1}, decorationpart (infsupdec (-0.1, 1.999999999999996669e+00, "trv")){1})); ## minimal_absRev_test %!test %! assert (isequal (absrev (infsup), infsup)); %!test %! assert (isequal (absrev (infsup (-1.1, -0.4)), infsup)); %!test %! assert (isequal (absrev (infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (absrev (infsup (1.1, 2.1)), infsup (-2.1, 2.1))); %!test %! assert (isequal (absrev (infsup (-1.1, 2.0)), infsup (-2.0, 2.0))); %!test %! assert (isequal (absrev (infsup (-1.1, 0.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (absrev (infsup (-1.9, 0.2)), infsup (-0.2, 0.2))); %!test %! assert (isequal (absrev (infsup (0.0, 0.2)), infsup (-0.2, 0.2))); %!test %! assert (isequal (absrev (infsup (-1.5, inf)), infsup (-inf, inf))); ## minimal_absRevBin_test %!test %! assert (isequal (absrev (infsup, infsup (-1.1, 5.0)), infsup)); %!test %! assert (isequal (absrev (infsup (-1.1, -0.4), infsup (-1.1, 5.0)), infsup)); %!test %! assert (isequal (absrev (infsup (0.0, inf), infsup (-1.1, 5.0)), infsup (-1.1, 5.0))); %!test %! assert (isequal (absrev (infsup (1.1, 2.1), infsup (-1.0, 5.0)), infsup (1.1, 2.1))); %!test %! assert (isequal (absrev (infsup (-1.1, 2.0), infsup (-1.1, 5.0)), infsup (-1.1, 2.0))); %!test %! assert (isequal (absrev (infsup (-1.1, 0.0), infsup (-1.1, 5.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (absrev (infsup (-1.9, 0.2), infsup (-1.1, 5.0)), infsup (-0.2, 0.2))); ## minimal_absRev_dec_test %!test %! assert (isequal (absrev (infsupdec (empty, "trv")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (empty, "trv"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.1, -0.4, "dac")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.1, -0.4, "dac"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (0.0, inf, "dac")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (0.0, inf, "dac"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (1.1, 2.1, "com")), infsupdec (-2.1, 2.1, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (1.1, 2.1, "com"))){1}, decorationpart (infsupdec (-2.1, 2.1, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.1, 2.0, "def")), infsupdec (-2.0, 2.0, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.1, 2.0, "def"))){1}, decorationpart (infsupdec (-2.0, 2.0, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.1, 0.0, "dac")), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.1, 0.0, "dac"))){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.9, 0.2, "com")), infsupdec (-0.2, 0.2, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.9, 0.2, "com"))){1}, decorationpart (infsupdec (-0.2, 0.2, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (0.0, 0.2, "def")), infsupdec (-0.2, 0.2, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (0.0, 0.2, "def"))){1}, decorationpart (infsupdec (-0.2, 0.2, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.5, inf, "def")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.5, inf, "def"))){1}, decorationpart (infsupdec (entire, "trv")){1})); ## minimal_absRev_dec_bin_test %!test %! assert (isequal (absrev (infsupdec (empty, "trv"), infsupdec (-1.1, 5.0, "com")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (empty, "trv"), infsupdec (-1.1, 5.0, "com"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.1, -0.4, "dac"), infsupdec (-1.1, 5.0, "dac")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.1, -0.4, "dac"), infsupdec (-1.1, 5.0, "dac"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (0.0, inf, "def"), infsupdec (-1.1, 5.0, "def")), infsupdec (-1.1, 5.0, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (0.0, inf, "def"), infsupdec (-1.1, 5.0, "def"))){1}, decorationpart (infsupdec (-1.1, 5.0, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (1.1, 2.1, "dac"), infsupdec (-1.0, 5.0, "def")), infsupdec (1.1, 2.1, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (1.1, 2.1, "dac"), infsupdec (-1.0, 5.0, "def"))){1}, decorationpart (infsupdec (1.1, 2.1, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.1, 2.0, "com"), infsupdec (-1.1, 5.0, "def")), infsupdec (-1.1, 2.0, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.1, 2.0, "com"), infsupdec (-1.1, 5.0, "def"))){1}, decorationpart (infsupdec (-1.1, 2.0, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.1, 0.0, "def"), infsupdec (-1.1, 5.0, "def")), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.1, 0.0, "def"), infsupdec (-1.1, 5.0, "def"))){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (absrev (infsupdec (-1.9, 0.2, "dac"), infsupdec (-1.1, 5.0, "def")), infsupdec (-0.2, 0.2, "trv"))); %! assert (isequal (decorationpart (absrev (infsupdec (-1.9, 0.2, "dac"), infsupdec (-1.1, 5.0, "def"))){1}, decorationpart (infsupdec (-0.2, 0.2, "trv")){1})); ## minimal_pownRev_test %!test %! assert (isequal (pownrev (infsup, 0), infsup)); %!test %! assert (isequal (pownrev (infsup (1.0, 1.0), 0), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (-1.0, 5.0), 0), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (-1.0, 0.0), 0), infsup)); %!test %! assert (isequal (pownrev (infsup (-1.0, -0.0), 0), infsup)); %!test %! assert (isequal (pownrev (infsup (1.1, 10.0), 0), infsup)); %!test %! assert (isequal (pownrev (infsup, 1), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), 1), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), 1), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), 1), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (13.1, 13.1), 1), infsup (13.1, 13.1))); %!test %! assert (isequal (pownrev (infsup (-7451.145, -7451.145), 1), infsup (-7451.145, -7451.145))); %!test %! assert (isequal (pownrev (infsup (1.797693134862315708e+308, 1.797693134862315708e+308), 1), infsup (1.797693134862315708e+308, 1.797693134862315708e+308))); %!test %! assert (isequal (pownrev (infsup (-1.797693134862315708e+308, -1.797693134862315708e+308), 1), infsup (-1.797693134862315708e+308, -1.797693134862315708e+308))); %!test %! assert (isequal (pownrev (infsup (0.0, inf), 1), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), 1), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-inf, 0.0), 1), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), 1), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-324.3, 2.5), 1), infsup (-324.3, 2.5))); %!test %! assert (isequal (pownrev (infsup (0.01, 2.33), 1), infsup (0.01, 2.33))); %!test %! assert (isequal (pownrev (infsup (-1.9, -0.33), 1), infsup (-1.9, -0.33))); %!test %! assert (isequal (pownrev (infsup, 2), infsup)); %!test %! assert (isequal (pownrev (infsup (-5.0, -1.0), 2), infsup)); %!test %! assert (isequal (pownrev (infsup (0.0, inf), 2), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), 2), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), 2), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), 2), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (1.716099999999999852e+02, 1.716100000000000136e+02), 2), infsup (-1.310000000000000142e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (5.551956181102500111e+07, 5.551956181102500856e+07), 2), infsup (-7.451145000000001346e+03, 7.451145000000001346e+03))); %!test %! assert (isequal (pownrev (infsup (1.797693134862315708e+308, 1.797693134862315708e+308), 2), infsup (-1.340780792994259710e+154, 1.340780792994259710e+154))); %!test %! assert (isequal (pownrev (infsup (0.0, 1.051704900000000198e+05), 2), infsup (-3.243000000000000682e+02, 3.243000000000000682e+02))); %!test %! assert (isequal (pownrev (infsup (-0.0, 1.051704900000000198e+05), 2), infsup (-3.243000000000000682e+02, 3.243000000000000682e+02))); %!test %! assert (isequal (pownrev (infsup (9.999999999999999124e-05, 5.428900000000000503e+00), 2), infsup (-2.330000000000000515e+00, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (1.088999999999999968e-01, 3.609999999999999876e+00), 2), infsup (-1.900000000000000133e+00, 1.900000000000000133e+00))); %!test %! assert (isequal (pownrev (infsup, 8), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), 8), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, inf), 8), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), 8), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), 8), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), 8), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (8.673020346900621653e+08, 8.673020346900622845e+08), 8), infsup (-1.310000000000000142e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (9.501323805961964567e+30, 9.501323805961965692e+30), 8), infsup (-7.451145000000001346e+03, 7.451145000000001346e+03))); %!test %! assert (isequal (pownrev (infsup (1.797693134862315708e+308, 1.797693134862315708e+308), 8), infsup (-3.402823669209384635e+38, 3.402823669209384635e+38))); %!test %! assert (isequal (pownrev (infsup (0.0, 1.223420037986718843e+20), 8), infsup (-3.243000000000000682e+02, 3.243000000000000682e+02))); %!test %! assert (isequal (pownrev (infsup (-0.0, 1.223420037986718843e+20), 8), infsup (-3.243000000000000682e+02, 3.243000000000000682e+02))); %!test %! assert (isequal (pownrev (infsup (1.000000000000000102e-16, 8.686550888106663706e+02), 8), infsup (-2.330000000000000515e+00, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (1.406408618241000491e-04, 1.698356304099999647e+02), 8), infsup (-1.900000000000000133e+00, 1.900000000000000133e+00))); %!test %! assert (isequal (pownrev (infsup, 3), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), 3), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), 3), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), 3), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (2.248090999999999440e+03, 2.248090999999999894e+03), 3), infsup (1.309999999999999787e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (-4.136843053904099731e+11, -4.136843053904099121e+11), 3), infsup (-7.451145000000001346e+03, -7.451144999999999527e+03))); %!test %! assert (isequal (pownrev (infsup (1.797693134862315708e+308, 1.797693134862315708e+308), 3), infsup (5.643803094122361304e+102, 5.643803094122362298e+102))); %!test %! assert (isequal (pownrev (infsup (-1.797693134862315708e+308, -1.797693134862315708e+308), 3), infsup (-5.643803094122362298e+102, -5.643803094122361304e+102))); %!test %! assert (isequal (pownrev (infsup (0.0, inf), 3), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), 3), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-inf, 0.0), 3), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), 3), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-3.410678990700000525e+07, 1.562500000000000000e+01), 3), infsup (-3.243000000000000682e+02, 2.500000000000000000e+00))); %!test %! assert (isequal (pownrev (infsup (9.999999999999999547e-07, 1.264933700000000272e+01), 3), infsup (9.999999999999998473e-03, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (-6.858999999999999098e+00, -3.593700000000000366e-02), 3), infsup (-1.900000000000000133e+00, -3.299999999999999600e-01))); %!test %! assert (isequal (pownrev (infsup, 7), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), 7), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), 7), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), 7), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (6.620626219008108228e+07, 6.620626219008108974e+07), 7), infsup (1.309999999999999787e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (-1.275149497957960280e+27, -1.275149497957960005e+27), 7), infsup (-7.451145000000001346e+03, -7.451144999999999527e+03))); %!test %! assert (isequal (pownrev (infsup (1.797693134862315708e+308, 1.797693134862315708e+308), 7), infsup (1.087396515837748951e+44, 1.087396515837749149e+44))); %!test %! assert (isequal (pownrev (infsup (-1.797693134862315708e+308, -1.797693134862315708e+308), 7), infsup (-1.087396515837749149e+44, -1.087396515837748951e+44))); %!test %! assert (isequal (pownrev (infsup (0.0, inf), 7), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), 7), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-inf, 0.0), 7), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), 7), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-3.772494720896449920e+17, 6.103515625000000000e+02), 7), infsup (-3.243000000000000682e+02, 2.500000000000000000e+00))); %!test %! assert (isequal (pownrev (infsup (9.999999999999999988e-15, 3.728133428371958757e+02), 7), infsup (9.999999999999998473e-03, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (-8.938717389999997920e+01, -4.261844297700001028e-04), 7), infsup (-1.900000000000000133e+00, -3.299999999999999600e-01))); %!test %! assert (isequal (pownrev (infsup, -2), infsup)); %!test %! assert (isequal (pownrev (infsup (0.0, inf), -2), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), -2), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), -2), infsup)); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), -2), infsup)); %!test %! assert (isequal (pownrev (infsup (-10.0, 0.0), -2), infsup)); %!test %! assert (isequal (pownrev (infsup (-10.0, -0.0), -2), infsup)); %!test %! assert (isequal (pownrev (infsup (5.827166249053085390e-03, 5.827166249053086257e-03), -2), infsup (-1.310000000000000142e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (1.801166953377180740e-08, 1.801166953377181071e-08), -2), infsup (-7.451145000000001346e+03, 7.451145000000001346e+03))); %!test %! assert (isequal (pownrev (infsup (0.000000000000000000e+00, 4.940656458412465442e-324), -2), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (9.508370646556841917e-06, inf), -2), infsup (-3.243000000000000682e+02, 3.243000000000000682e+02))); %!test %! assert (isequal (pownrev (infsup (1.841993774061043421e-01, 1.000000000000000000e+04), -2), infsup (-2.330000000000000515e+00, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (2.770083102493074989e-01, 9.182736455463727410e+00), -2), infsup (-1.900000000000000133e+00, 1.900000000000000133e+00))); %!test %! assert (isequal (pownrev (infsup, -8), infsup)); %!test %! assert (isequal (pownrev (infsup (0.0, inf), -8), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), -8), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), -8), infsup)); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), -8), infsup)); %!test %! assert (isequal (pownrev (infsup (1.153000869365374417e-09, 1.153000869365374624e-09), -8), infsup (-1.310000000000000142e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (1.052484917283328578e-31, 1.052484917283328797e-31), -8), infsup (-7.451145000000001346e+03, 7.451145000000001346e+03))); %!test %! assert (isequal (pownrev (infsup (0.000000000000000000e+00, 4.940656458412465442e-324), -8), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (8.173807596331487643e-21, inf), -8), infsup (-3.243000000000000682e+02, 3.243000000000000682e+02))); %!test %! assert (isequal (pownrev (infsup (1.151204906160357110e-03, 1.000000000000000000e+16), -8), infsup (-2.330000000000000515e+00, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (5.888045974722156024e-03, 7.110309102419345436e+03), -8), infsup (-1.900000000000000133e+00, 1.900000000000000133e+00))); %!test %! assert (isequal (pownrev (infsup, -1), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), -1), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), -1), infsup)); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), -1), infsup)); %!test %! assert (isequal (pownrev (infsup (7.633587786259540819e-02, 7.633587786259542207e-02), -1), infsup (1.309999999999999787e+01, 1.310000000000000320e+01))); %!test %! assert (isequal (pownrev (infsup (-1.342075613882161712e-04, -1.342075613882161441e-04), -1), infsup (-7.451145000000002256e+03, -7.451144999999999527e+03))); %!test %! assert (isequal (pownrev (infsup (5.562684646268003458e-309, 5.562684646268008398e-309), -1), infsup (1.797693134862314311e+308, inf))); %!test %! assert (isequal (pownrev (infsup (-5.562684646268008398e-309, -5.562684646268003458e-309), -1), infsup (-inf, -1.797693134862314311e+308))); %!test %! assert (isequal (pownrev (infsup (0.0, inf), -1), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), -1), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-inf, 0.0), -1), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), -1), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (4.291845493562231328e-01, 1.000000000000000000e+02), -1), infsup (9.999999999999998473e-03, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (-3.030303030303030276e+00, -5.263157894736841813e-01), -1), infsup (-1.900000000000000133e+00, -3.299999999999999600e-01))); %!test %! assert (isequal (pownrev (infsup, -3), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), -3), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), -3), infsup)); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), -3), infsup)); %!test %! assert (isequal (pownrev (infsup (4.448218510727546177e-04, 4.448218510727546720e-04), -3), infsup (1.309999999999999787e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (-2.417302244657943502e-12, -2.417302244657943098e-12), -3), infsup (-7.451145000000001346e+03, -7.451144999999999527e+03))); %!test %! assert (isequal (pownrev (infsup (0.000000000000000000e+00, 4.940656458412465442e-324), -3), infsup (5.871356456934583070e+107, inf))); %!test %! assert (isequal (pownrev (infsup (-4.940656458412465442e-324, -0.000000000000000000e+00), -3), infsup (-inf, -5.871356456934583070e+107))); %!test %! assert (isequal (pownrev (infsup (0.0, inf), -3), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), -3), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-inf, 0.0), -3), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), -3), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (7.905552678373577169e-02, 1.000000000000000000e+06), -3), infsup (9.999999999999998473e-03, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (-2.782647410746584171e+01, -1.457938474996355316e-01), -3), infsup (-1.900000000000000133e+00, -3.299999999999999600e-01))); %!test %! assert (isequal (pownrev (infsup, -7), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), -7), infsup (-inf, inf))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), -7), infsup)); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), -7), infsup)); %!test %! assert (isequal (pownrev (infsup (1.510431138868640339e-08, 1.510431138868640670e-08), -7), infsup (1.309999999999999787e+01, 1.310000000000000142e+01))); %!test %! assert (isequal (pownrev (infsup (-7.842217728991088300e-28, -7.842217728991087403e-28), -7), infsup (-7.451145000000001346e+03, -7.451144999999999527e+03))); %!test %! assert (isequal (pownrev (infsup (0.000000000000000000e+00, 4.940656458412465442e-324), -7), infsup (1.536746355637629315e+46, inf))); %!test %! assert (isequal (pownrev (infsup (-4.940656458412465442e-324, -0.000000000000000000e+00), -7), infsup (-inf, -1.536746355637629315e+46))); %!test %! assert (isequal (pownrev (infsup (0.0, inf), -7), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-0.0, inf), -7), infsup (0.0, inf))); %!test %! assert (isequal (pownrev (infsup (-inf, 0.0), -7), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), -7), infsup (-inf, 0.0))); %!test %! assert (isequal (pownrev (infsup (2.682307431353632161e-03, 1.000000000000000000e+14), -7), infsup (9.999999999999998473e-03, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (-2.346402003798384158e+03, -1.118728735197209619e-02), -7), infsup (-1.900000000000000133e+00, -3.299999999999999600e-01))); ## minimal_pownRevBin_test %!test %! assert (isequal (pownrev (infsup, infsup (1.0, 1.0), 0), infsup)); %!test %! assert (isequal (pownrev (infsup (1.0, 1.0), infsup (1.0, 1.0), 0), infsup (1.0, 1.0))); %!test %! assert (isequal (pownrev (infsup (-1.0, 5.0), infsup (-51.0, 12.0), 0), infsup (-51.0, 12.0))); %!test %! assert (isequal (pownrev (infsup (-1.0, 0.0), infsup (5.0, 10.0), 0), infsup)); %!test %! assert (isequal (pownrev (infsup (-1.0, -0.0), infsup (-1.0, 1.0), 0), infsup)); %!test %! assert (isequal (pownrev (infsup (1.1, 10.0), infsup (1.0, 41.0), 0), infsup)); %!test %! assert (isequal (pownrev (infsup, infsup (0.0, 100.1), 1), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), infsup (-5.1, 10.0), 1), infsup (-5.1, 10.0))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), infsup (-10.0, 5.1), 1), infsup (0.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (-0.0, -0.0), infsup (1.0, 5.0), 1), infsup)); %!test %! assert (isequal (pownrev (infsup, infsup (5.0, 17.1), 2), infsup)); %!test %! assert (isequal (pownrev (infsup (-5.0, -1.0), infsup (5.0, 17.1), 2), infsup)); %!test %! assert (isequal (pownrev (infsup (0.0, inf), infsup (5.6, 27.544), 2), infsup (5.6, 27.544))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), infsup (1.0, 2.0), 2), infsup)); %!test %! assert (isequal (pownrev (infsup (9.999999999999999124e-05, 5.428900000000000503e+00), infsup (1.0, inf), 2), infsup (1.0, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (1.088999999999999968e-01, 3.609999999999999876e+00), infsup (-inf, -1.0), 2), infsup (-1.900000000000000133e+00, -1.0))); %!test %! assert (isequal (pownrev (infsup, infsup (-23.0, -1.0), 3), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), infsup (-23.0, -1.0), 3), infsup (-23.0, -1.0))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), infsup (1.0, 2.0), 3), infsup)); %!test %! assert (isequal (pownrev (infsup (9.999999999999999547e-07, 1.264933700000000272e+01), infsup (1.0, inf), 3), infsup (1.0, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (-6.858999999999999098e+00, -3.593700000000000366e-02), infsup (-inf, -1.0), 3), infsup (-1.900000000000000133e+00, -1.0))); %!test %! assert (isequal (pownrev (infsup, infsup (-3.0, 17.3), -2), infsup)); %!test %! assert (isequal (pownrev (infsup (0.0, inf), infsup (-5.1, -0.1), -2), infsup (-5.1, -0.1))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), infsup (27.2, 55.1), -2), infsup)); %!test %! assert (isequal (pownrev (infsup (9.508370646556841917e-06, inf), infsup (-inf, -1.797693134862315708e+308), -2), infsup)); %!test %! assert (isequal (pownrev (infsup (1.841993774061043421e-01, 1.000000000000000000e+04), infsup (1.0, inf), -2), infsup (1.0, 2.330000000000000515e+00))); %!test %! assert (isequal (pownrev (infsup (2.770083102493074989e-01, 9.182736455463727410e+00), infsup (-inf, -1.0), -2), infsup (-1.900000000000000133e+00, -1.0))); %!test %! assert (isequal (pownrev (infsup, infsup (-5.1, 55.5), -1), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), infsup (-5.1, 55.5), -1), infsup (-5.1, 55.5))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), infsup (-5.1, 55.5), -1), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), infsup (-1.0, 1.0), -1), infsup (-1.0, 0.0))); %!test %! assert (isequal (pownrev (infsup (4.291845493562231328e-01, 1.000000000000000000e+02), infsup (-1.0, 0.0), -1), infsup)); %!test %! assert (isequal (pownrev (infsup, infsup (-5.1, 55.5), -3), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, inf), infsup (-5.1, 55.5), -3), infsup (-5.1, 55.5))); %!test %! assert (isequal (pownrev (infsup (0.0, 0.0), infsup (-5.1, 55.5), -3), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, 0.0), infsup (5.1, 55.5), -3), infsup)); %!test %! assert (isequal (pownrev (infsup (-inf, -0.0), infsup (-32.0, 1.1), -3), infsup (-32.0, 0.0))); ## minimal_pownRev_dec_test %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.0, 1.0, "com"), 0), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.0, 1.0, "com"), 0)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.0, 5.0, "dac"), 0), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.0, 5.0, "dac"), 0)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.0, 0.0, "def"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.0, 0.0, "def"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.0, -0.0, "dac"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.0, -0.0, "dac"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.1, 10.0, "com"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.1, 10.0, "com"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), 1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), 1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), 1), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), 1)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "com"), 1), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "com"), 1)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "dac"), 1), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "dac"), 1)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (13.1, 13.1, "def"), 1), infsupdec (13.1, 13.1, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (13.1, 13.1, "def"), 1)){1}, decorationpart (infsupdec (13.1, 13.1, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-7451.145, -7451.145, "dac"), 1), infsupdec (-7451.145, -7451.145, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-7451.145, -7451.145, "dac"), 1)){1}, decorationpart (infsupdec (-7451.145, -7451.145, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "com"), 1), infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "com"), 1)){1}, decorationpart (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "com"), 1), infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "com"), 1)){1}, decorationpart (infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), 1), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), 1)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "dac"), 1), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "dac"), 1)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, 0.0, "def"), 1), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, 0.0, "def"), 1)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "def"), 1), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "def"), 1)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-324.3, 2.5, "dac"), 1), infsupdec (-324.3, 2.5, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-324.3, 2.5, "dac"), 1)){1}, decorationpart (infsupdec (-324.3, 2.5, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.01, 2.33, "com"), 1), infsupdec (0.01, 2.33, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.01, 2.33, "com"), 1)){1}, decorationpart (infsupdec (0.01, 2.33, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.9, -0.33, "def"), 1), infsupdec (-1.9, -0.33, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.9, -0.33, "def"), 1)){1}, decorationpart (infsupdec (-1.9, -0.33, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), 2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), 2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), 2), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), 2)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "def"), 2), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "def"), 2)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "com"), 2), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "com"), 2)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "dac"), 2), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "dac"), 2)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.716099999999999852e+02, 1.716100000000000136e+02, "def"), 2), infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.716099999999999852e+02, 1.716100000000000136e+02, "def"), 2)){1}, decorationpart (infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (5.551956181102500111e+07, 5.551956181102500856e+07, "def"), 2), infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (5.551956181102500111e+07, 5.551956181102500856e+07, "def"), 2)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "dac"), 2), infsupdec (-1.340780792994259710e+154, 1.340780792994259710e+154, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "dac"), 2)){1}, decorationpart (infsupdec (-1.340780792994259710e+154, 1.340780792994259710e+154, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 1.051704900000000198e+05, "dac"), 2), infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 1.051704900000000198e+05, "dac"), 2)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, 1.051704900000000198e+05, "def"), 2), infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, 1.051704900000000198e+05, "def"), 2)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.999999999999999124e-05, 5.428900000000000503e+00, "com"), 2), infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.999999999999999124e-05, 5.428900000000000503e+00, "com"), 2)){1}, decorationpart (infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.088999999999999968e-01, 3.609999999999999876e+00, "def"), 2), infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.088999999999999968e-01, 3.609999999999999876e+00, "def"), 2)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), 8), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), 8)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), 8), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), 8)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), 8), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), 8)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "dac"), 8), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "dac"), 8)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), 8), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), 8)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "dac"), 8), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "dac"), 8)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (8.673020346900621653e+08, 8.673020346900622845e+08, "com"), 8), infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (8.673020346900621653e+08, 8.673020346900622845e+08, "com"), 8)){1}, decorationpart (infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.501323805961964567e+30, 9.501323805961965692e+30, "dac"), 8), infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.501323805961964567e+30, 9.501323805961965692e+30, "dac"), 8)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "def"), 8), infsupdec (-3.402823669209384635e+38, 3.402823669209384635e+38, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "def"), 8)){1}, decorationpart (infsupdec (-3.402823669209384635e+38, 3.402823669209384635e+38, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 1.223420037986718843e+20, "dac"), 8), infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 1.223420037986718843e+20, "dac"), 8)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, 1.223420037986718843e+20, "def"), 8), infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, 1.223420037986718843e+20, "def"), 8)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.000000000000000102e-16, 8.686550888106663706e+02, "com"), 8), infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.000000000000000102e-16, 8.686550888106663706e+02, "com"), 8)){1}, decorationpart (infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.406408618241000491e-04, 1.698356304099999647e+02, "dac"), 8), infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.406408618241000491e-04, 1.698356304099999647e+02, "dac"), 8)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), 3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), 3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), 3), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), 3)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "dac"), 3), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "dac"), 3)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "def"), 3), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "def"), 3)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (2.248090999999999440e+03, 2.248090999999999894e+03, "com"), 3), infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (2.248090999999999440e+03, 2.248090999999999894e+03, "com"), 3)){1}, decorationpart (infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-4.136843053904099731e+11, -4.136843053904099121e+11, "def"), 3), infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-4.136843053904099731e+11, -4.136843053904099121e+11, "def"), 3)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "dac"), 3), infsupdec (5.643803094122361304e+102, 5.643803094122362298e+102, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "dac"), 3)){1}, decorationpart (infsupdec (5.643803094122361304e+102, 5.643803094122362298e+102, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "com"), 3), infsupdec (-5.643803094122362298e+102, -5.643803094122361304e+102, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "com"), 3)){1}, decorationpart (infsupdec (-5.643803094122362298e+102, -5.643803094122361304e+102, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "def"), 3), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "def"), 3)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "def"), 3), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "def"), 3)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, 0.0, "dac"), 3), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, 0.0, "dac"), 3)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "def"), 3), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "def"), 3)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-3.410678990700000525e+07, 1.562500000000000000e+01, "com"), 3), infsupdec (-3.243000000000000682e+02, 2.500000000000000000e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-3.410678990700000525e+07, 1.562500000000000000e+01, "com"), 3)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 2.500000000000000000e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.999999999999999547e-07, 1.264933700000000272e+01, "dac"), 3), infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.999999999999999547e-07, 1.264933700000000272e+01, "dac"), 3)){1}, decorationpart (infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-6.858999999999999098e+00, -3.593700000000000366e-02, "def"), 3), infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-6.858999999999999098e+00, -3.593700000000000366e-02, "def"), 3)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), 7), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), 7)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), 7), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), 7)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "com"), 7), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "com"), 7)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "dac"), 7), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "dac"), 7)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (6.620626219008108228e+07, 6.620626219008108974e+07, "def"), 7), infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (6.620626219008108228e+07, 6.620626219008108974e+07, "def"), 7)){1}, decorationpart (infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.275149497957960280e+27, -1.275149497957960005e+27, "dac"), 7), infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.275149497957960280e+27, -1.275149497957960005e+27, "dac"), 7)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "com"), 7), infsupdec (1.087396515837748951e+44, 1.087396515837749149e+44, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.797693134862315708e+308, 1.797693134862315708e+308, "com"), 7)){1}, decorationpart (infsupdec (1.087396515837748951e+44, 1.087396515837749149e+44, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "def"), 7), infsupdec (-1.087396515837749149e+44, -1.087396515837748951e+44, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.797693134862315708e+308, -1.797693134862315708e+308, "def"), 7)){1}, decorationpart (infsupdec (-1.087396515837749149e+44, -1.087396515837748951e+44, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), 7), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), 7)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "dac"), 7), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "dac"), 7)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, 0.0, "def"), 7), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, 0.0, "def"), 7)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "def"), 7), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "def"), 7)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-3.772494720896449920e+17, 6.103515625000000000e+02, "dac"), 7), infsupdec (-3.243000000000000682e+02, 2.500000000000000000e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-3.772494720896449920e+17, 6.103515625000000000e+02, "dac"), 7)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 2.500000000000000000e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.999999999999999988e-15, 3.728133428371958757e+02, "com"), 7), infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.999999999999999988e-15, 3.728133428371958757e+02, "com"), 7)){1}, decorationpart (infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-8.938717389999997920e+01, -4.261844297700001028e-04, "def"), 7), infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-8.938717389999997920e+01, -4.261844297700001028e-04, "def"), 7)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), -2), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), -2)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "dac"), -2), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "dac"), -2)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "com"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "com"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-10.0, 0.0, "dac"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-10.0, 0.0, "dac"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-10.0, -0.0, "def"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-10.0, -0.0, "def"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (5.827166249053085390e-03, 5.827166249053086257e-03, "dac"), -2), infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (5.827166249053085390e-03, 5.827166249053086257e-03, "dac"), -2)){1}, decorationpart (infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.801166953377180740e-08, 1.801166953377181071e-08, "def"), -2), infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.801166953377180740e-08, 1.801166953377181071e-08, "def"), -2)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "com"), -2), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "com"), -2)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.508370646556841917e-06, inf, "dac"), -2), infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.508370646556841917e-06, inf, "dac"), -2)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.841993774061043421e-01, 1.000000000000000000e+04, "def"), -2), infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.841993774061043421e-01, 1.000000000000000000e+04, "def"), -2)){1}, decorationpart (infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (2.770083102493074989e-01, 9.182736455463727410e+00, "com"), -2), infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (2.770083102493074989e-01, 9.182736455463727410e+00, "com"), -2)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), -8), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), -8)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "def"), -8), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "def"), -8)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "dac"), -8), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "dac"), -8)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), -8), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), -8)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "dac"), -8), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "dac"), -8)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.153000869365374417e-09, 1.153000869365374624e-09, "com"), -8), infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.153000869365374417e-09, 1.153000869365374624e-09, "com"), -8)){1}, decorationpart (infsupdec (-1.310000000000000142e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.052484917283328578e-31, 1.052484917283328797e-31, "def"), -8), infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.052484917283328578e-31, 1.052484917283328797e-31, "def"), -8)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, 7.451145000000001346e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "dac"), -8), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "dac"), -8)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (8.173807596331487643e-21, inf, "def"), -8), infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (8.173807596331487643e-21, inf, "def"), -8)){1}, decorationpart (infsupdec (-3.243000000000000682e+02, 3.243000000000000682e+02, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.151204906160357110e-03, 1.000000000000000000e+16, "com"), -8), infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.151204906160357110e-03, 1.000000000000000000e+16, "com"), -8)){1}, decorationpart (infsupdec (-2.330000000000000515e+00, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (5.888045974722156024e-03, 7.110309102419345436e+03, "def"), -8), infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (5.888045974722156024e-03, 7.110309102419345436e+03, "def"), -8)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, 1.900000000000000133e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), -1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), -1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), -1), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), -1)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "dac"), -1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "dac"), -1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "dac"), -1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "dac"), -1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (7.633587786259540819e-02, 7.633587786259542207e-02, "def"), -1), infsupdec (1.309999999999999787e+01, 1.310000000000000320e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (7.633587786259540819e-02, 7.633587786259542207e-02, "def"), -1)){1}, decorationpart (infsupdec (1.309999999999999787e+01, 1.310000000000000320e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.342075613882161712e-04, -1.342075613882161441e-04, "dac"), -1), infsupdec (-7.451145000000002256e+03, -7.451144999999999527e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.342075613882161712e-04, -1.342075613882161441e-04, "dac"), -1)){1}, decorationpart (infsupdec (-7.451145000000002256e+03, -7.451144999999999527e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (5.562684646268003458e-309, 5.562684646268008398e-309, "dac"), -1), infsupdec (1.797693134862314311e+308, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (5.562684646268003458e-309, 5.562684646268008398e-309, "dac"), -1)){1}, decorationpart (infsupdec (1.797693134862314311e+308, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-5.562684646268008398e-309, -5.562684646268003458e-309, "def"), -1), infsupdec (-inf, -1.797693134862314311e+308, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-5.562684646268008398e-309, -5.562684646268003458e-309, "def"), -1)){1}, decorationpart (infsupdec (-inf, -1.797693134862314311e+308, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), -1), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), -1)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "dac"), -1), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "dac"), -1)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, 0.0, "dac"), -1), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, 0.0, "dac"), -1)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "def"), -1), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "def"), -1)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (4.291845493562231328e-01, 1.000000000000000000e+02, "com"), -1), infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (4.291845493562231328e-01, 1.000000000000000000e+02, "com"), -1)){1}, decorationpart (infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-3.030303030303030276e+00, -5.263157894736841813e-01, "com"), -1), infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-3.030303030303030276e+00, -5.263157894736841813e-01, "com"), -1)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), -3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), -3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), -3), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), -3)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), -3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), -3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "dac"), -3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "dac"), -3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (4.448218510727546177e-04, 4.448218510727546720e-04, "com"), -3), infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (4.448218510727546177e-04, 4.448218510727546720e-04, "com"), -3)){1}, decorationpart (infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-2.417302244657943502e-12, -2.417302244657943098e-12, "def"), -3), infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-2.417302244657943502e-12, -2.417302244657943098e-12, "def"), -3)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "dac"), -3), infsupdec (5.871356456934583070e+107, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "dac"), -3)){1}, decorationpart (infsupdec (5.871356456934583070e+107, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-4.940656458412465442e-324, -0.000000000000000000e+00, "def"), -3), infsupdec (-inf, -5.871356456934583070e+107, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-4.940656458412465442e-324, -0.000000000000000000e+00, "def"), -3)){1}, decorationpart (infsupdec (-inf, -5.871356456934583070e+107, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), -3), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), -3)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "dac"), -3), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "dac"), -3)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, 0.0, "def"), -3), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, 0.0, "def"), -3)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "def"), -3), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "def"), -3)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (7.905552678373577169e-02, 1.000000000000000000e+06, "com"), -3), infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (7.905552678373577169e-02, 1.000000000000000000e+06, "com"), -3)){1}, decorationpart (infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-2.782647410746584171e+01, -1.457938474996355316e-01, "def"), -3), infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-2.782647410746584171e+01, -1.457938474996355316e-01, "def"), -3)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), -7), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), -7)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), -7), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), -7)){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "com"), -7), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "com"), -7)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "def"), -7), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "def"), -7)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.510431138868640339e-08, 1.510431138868640670e-08, "dac"), -7), infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.510431138868640339e-08, 1.510431138868640670e-08, "dac"), -7)){1}, decorationpart (infsupdec (1.309999999999999787e+01, 1.310000000000000142e+01, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-7.842217728991088300e-28, -7.842217728991087403e-28, "dac"), -7), infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-7.842217728991088300e-28, -7.842217728991087403e-28, "dac"), -7)){1}, decorationpart (infsupdec (-7.451145000000001346e+03, -7.451144999999999527e+03, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "def"), -7), infsupdec (1.536746355637629315e+46, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.000000000000000000e+00, 4.940656458412465442e-324, "def"), -7)){1}, decorationpart (infsupdec (1.536746355637629315e+46, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-4.940656458412465442e-324, -0.000000000000000000e+00, "def"), -7), infsupdec (-inf, -1.536746355637629315e+46, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-4.940656458412465442e-324, -0.000000000000000000e+00, "def"), -7)){1}, decorationpart (infsupdec (-inf, -1.536746355637629315e+46, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), -7), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), -7)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, inf, "def"), -7), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, inf, "def"), -7)){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, 0.0, "dac"), -7), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, 0.0, "dac"), -7)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "def"), -7), infsupdec (-inf, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "def"), -7)){1}, decorationpart (infsupdec (-inf, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (2.682307431353632161e-03, 1.000000000000000000e+14, "com"), -7), infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (2.682307431353632161e-03, 1.000000000000000000e+14, "com"), -7)){1}, decorationpart (infsupdec (9.999999999999998473e-03, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-2.346402003798384158e+03, -1.118728735197209619e-02, "com"), -7), infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-2.346402003798384158e+03, -1.118728735197209619e-02, "com"), -7)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -3.299999999999999600e-01, "trv")){1})); ## minimal_pownRev_dec_bin_test %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), infsupdec (1.0, 1.0, "def"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), infsupdec (1.0, 1.0, "def"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.0, 1.0, "dac"), infsupdec (1.0, 1.0, "dac"), 0), infsupdec (1.0, 1.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.0, 1.0, "dac"), infsupdec (1.0, 1.0, "dac"), 0)){1}, decorationpart (infsupdec (1.0, 1.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.0, 5.0, "def"), infsupdec (-51.0, 12.0, "dac"), 0), infsupdec (-51.0, 12.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.0, 5.0, "def"), infsupdec (-51.0, 12.0, "dac"), 0)){1}, decorationpart (infsupdec (-51.0, 12.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.0, 0.0, "com"), infsupdec (5.0, 10.0, "dac"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.0, 0.0, "com"), infsupdec (5.0, 10.0, "dac"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-1.0, -0.0, "dac"), infsupdec (-1.0, 1.0, "def"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-1.0, -0.0, "dac"), infsupdec (-1.0, 1.0, "def"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.1, 10.0, "def"), infsupdec (1.0, 41.0, "dac"), 0), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.1, 10.0, "def"), infsupdec (1.0, 41.0, "dac"), 0)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), infsupdec (0.0, 100.1, "dac"), 1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), infsupdec (0.0, 100.1, "dac"), 1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), infsupdec (-5.1, 10.0, "def"), 1), infsupdec (-5.1, 10.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), infsupdec (-5.1, 10.0, "def"), 1)){1}, decorationpart (infsupdec (-5.1, 10.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "com"), infsupdec (-10.0, 5.1, "dac"), 1), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "com"), infsupdec (-10.0, 5.1, "dac"), 1)){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-0.0, -0.0, "def"), infsupdec (1.0, 5.0, "dac"), 1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-0.0, -0.0, "def"), infsupdec (1.0, 5.0, "dac"), 1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), infsupdec (5.0, 17.1, "def"), 2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), infsupdec (5.0, 17.1, "def"), 2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), infsupdec (5.6, 27.544, "dac"), 2), infsupdec (5.6, 27.544, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), infsupdec (5.6, 27.544, "dac"), 2)){1}, decorationpart (infsupdec (5.6, 27.544, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (1.0, 2.0, "def"), 2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (1.0, 2.0, "def"), 2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.999999999999999124e-05, 5.428900000000000503e+00, "com"), infsupdec (1.0, inf, "def"), 2), infsupdec (1.0, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.999999999999999124e-05, 5.428900000000000503e+00, "com"), infsupdec (1.0, inf, "def"), 2)){1}, decorationpart (infsupdec (1.0, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.088999999999999968e-01, 3.609999999999999876e+00, "dac"), infsupdec (-inf, -1.0, "def"), 2), infsupdec (-1.900000000000000133e+00, -1.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.088999999999999968e-01, 3.609999999999999876e+00, "dac"), infsupdec (-inf, -1.0, "def"), 2)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -1.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), infsupdec (-23.0, -1.0, "dac"), 3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), infsupdec (-23.0, -1.0, "dac"), 3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), infsupdec (-23.0, -1.0, "com"), 3), infsupdec (-23.0, -1.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), infsupdec (-23.0, -1.0, "com"), 3)){1}, decorationpart (infsupdec (-23.0, -1.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (1.0, 2.0, "dac"), 3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (1.0, 2.0, "dac"), 3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.999999999999999547e-07, 1.264933700000000272e+01, "com"), infsupdec (1.0, inf, "dac"), 3), infsupdec (1.0, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.999999999999999547e-07, 1.264933700000000272e+01, "com"), infsupdec (1.0, inf, "dac"), 3)){1}, decorationpart (infsupdec (1.0, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-6.858999999999999098e+00, -3.593700000000000366e-02, "com"), infsupdec (-inf, -1.0, "dac"), 3), infsupdec (-1.900000000000000133e+00, -1.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-6.858999999999999098e+00, -3.593700000000000366e-02, "com"), infsupdec (-inf, -1.0, "dac"), 3)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -1.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), infsupdec (-3.0, 17.3, "def"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), infsupdec (-3.0, 17.3, "def"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, inf, "dac"), infsupdec (-5.1, -0.1, "dac"), -2), infsupdec (-5.1, -0.1, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, inf, "dac"), infsupdec (-5.1, -0.1, "dac"), -2)){1}, decorationpart (infsupdec (-5.1, -0.1, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (27.2, 55.1, "dac"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (27.2, 55.1, "dac"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (9.508370646556841917e-06, inf, "def"), infsupdec (-inf, -1.797693134862315708e+308, "dac"), -2), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (9.508370646556841917e-06, inf, "def"), infsupdec (-inf, -1.797693134862315708e+308, "dac"), -2)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (1.841993774061043421e-01, 1.000000000000000000e+04, "com"), infsupdec (1.0, inf, "dac"), -2), infsupdec (1.0, 2.330000000000000515e+00, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (1.841993774061043421e-01, 1.000000000000000000e+04, "com"), infsupdec (1.0, inf, "dac"), -2)){1}, decorationpart (infsupdec (1.0, 2.330000000000000515e+00, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (2.770083102493074989e-01, 9.182736455463727410e+00, "com"), infsupdec (-inf, -1.0, "dac"), -2), infsupdec (-1.900000000000000133e+00, -1.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (2.770083102493074989e-01, 9.182736455463727410e+00, "com"), infsupdec (-inf, -1.0, "dac"), -2)){1}, decorationpart (infsupdec (-1.900000000000000133e+00, -1.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), infsupdec (-5.1, 55.5, "def"), -1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), infsupdec (-5.1, 55.5, "def"), -1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), infsupdec (-5.1, 55.5, "dac"), -1), infsupdec (-5.1, 55.5, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), infsupdec (-5.1, 55.5, "dac"), -1)){1}, decorationpart (infsupdec (-5.1, 55.5, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "dac"), infsupdec (-5.1, 55.5, "def"), -1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "dac"), infsupdec (-5.1, 55.5, "def"), -1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "dac"), infsupdec (-1.0, 1.0, "com"), -1), infsupdec (-1.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "dac"), infsupdec (-1.0, 1.0, "com"), -1)){1}, decorationpart (infsupdec (-1.0, 0.0, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (4.291845493562231328e-01, 1.000000000000000000e+02, "def"), infsupdec (-1.0, 0.0, "dac"), -1), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (4.291845493562231328e-01, 1.000000000000000000e+02, "def"), infsupdec (-1.0, 0.0, "dac"), -1)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (empty, "trv"), infsupdec (-5.1, 55.5, "dac"), -3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (empty, "trv"), infsupdec (-5.1, 55.5, "dac"), -3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (entire, "def"), infsupdec (-5.1, 55.5, "def"), -3), infsupdec (-5.1, 55.5, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (entire, "def"), infsupdec (-5.1, 55.5, "def"), -3)){1}, decorationpart (infsupdec (-5.1, 55.5, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (-5.1, 55.5, "def"), -3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (0.0, 0.0, "def"), infsupdec (-5.1, 55.5, "def"), -3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, 0.0, "dac"), infsupdec (5.1, 55.5, "com"), -3), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, 0.0, "dac"), infsupdec (5.1, 55.5, "com"), -3)){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (pownrev (infsupdec (-inf, -0.0, "dac"), infsupdec (-32.0, 1.1, "def"), -3), infsupdec (-32.0, 0.0, "trv"))); %! assert (isequal (decorationpart (pownrev (infsupdec (-inf, -0.0, "dac"), infsupdec (-32.0, 1.1, "def"), -3)){1}, decorationpart (infsupdec (-32.0, 0.0, "trv")){1})); ## minimal_sinRev_test %!test %! assert (isequal (sinrev (infsup), infsup)); %!test %! assert (isequal (sinrev (infsup (-2.0, -1.1)), infsup)); %!test %! assert (isequal (sinrev (infsup (1.1, 2.0)), infsup)); %!test %! assert (isequal (sinrev (infsup (-1.0, 1.0)), infsup (-inf, inf))); %!test %! assert (isequal (sinrev (infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (sinrev (infsup (1.224646799147352961e-16, 1.224646799147353207e-16)), infsup (-inf, inf))); ## minimal_sinRevBin_test %!test %! assert (isequal (sinrev (infsup, infsup (-1.2, 12.1)), infsup)); %!test %! assert (isequal (sinrev (infsup (-2.0, -1.1), infsup (-5.0, 5.0)), infsup)); %!test %! assert (isequal (sinrev (infsup (1.1, 2.0), infsup (-5.0, 5.0)), infsup)); %!test %! assert (isequal (sinrev (infsup (-1.0, 1.0), infsup (-1.2, 12.1)), infsup (-1.2, 12.1))); %!test %! assert (isequal (sinrev (infsup (0.0, 0.0), infsup (-1.0, 1.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (sinrev (infsup (-0.0, -0.0), infsup (2.0, 2.5)), infsup)); %!test %! assert (isequal (sinrev (infsup (-0.0, -0.0), infsup (3.0, 3.5)), infsup (3.141592653589793116e+00, 3.141592653589793560e+00))); %!test %! assert (isequal (sinrev (infsup (9.999999999999998890e-01, 1.000000000000000000e+00), infsup (1.57, 1.58)), infsup (1.570796311893735364e+00, 1.570796341696058196e+00))); %!test %! assert (isequal (sinrev (infsup (0.0, 1.000000000000000000e+00), infsup (-0.1, 1.58)), infsup (0.0, 1.58))); %!test %! assert (isequal (sinrev (infsup (1.224646799147352961e-16, 1.224646799147353207e-16), infsup (3.14, 3.15)), infsup (3.141592653589792672e+00, 3.141592653589793560e+00))); %!test %! assert (isequal (sinrev (infsup (-3.216245299353273201e-16, -3.216245299353272708e-16), infsup (3.14, 3.15)), infsup (3.141592653589793116e+00, 3.141592653589794004e+00))); %!test %! assert (isequal (sinrev (infsup (-3.216245299353273201e-16, 1.224646799147353207e-16), infsup (3.14, 3.15)), infsup (3.141592653589792672e+00, 3.141592653589794004e+00))); %!test %! assert (isequal (sinrev (infsup (0.0, 1.0), infsup (-0.1, 3.15)), infsup (0.0, 3.141592653589793560e+00))); %!test %! assert (isequal (sinrev (infsup (0.0, 1.0), infsup (-0.1, 3.15)), infsup (-0.0, 3.141592653589793560e+00))); %!test %! assert (isequal (sinrev (infsup (-3.216245299353273201e-16, 1.0), infsup (-0.1, 3.15)), infsup (-3.216245299353273694e-16, 3.141592653589794004e+00))); %!test %! assert (isequal (sinrev (infsup (-3.216245299353273201e-16, 1.0), infsup (0.0, 3.15)), infsup (0.0, 3.141592653589794004e+00))); %!test %! assert (isequal (sinrev (infsup (1.224646799147352961e-16, 1.000000000000000000e+00), infsup (3.14, 3.15)), infsup (3.14, 3.141592653589793560e+00))); %!test %! assert (isequal (sinrev (infsup (-3.216245299353273201e-16, 1.000000000000000000e+00), infsup (1.57, 3.15)), infsup (1.57, 3.141592653589794004e+00))); %!test %! assert (isequal (sinrev (infsup (1.224646799147352961e-16, 1.224646799147353207e-16), infsup (-inf, 3.15)), infsup (-inf, 3.141592653589793560e+00))); %!test %! assert (isequal (sinrev (infsup (-3.216245299353273201e-16, -3.216245299353272708e-16), infsup (3.14, inf)), infsup (3.141592653589793116e+00, inf))); ## minimal_sinRev_dec_test %!test %! assert (isequal (sinrev (infsupdec (empty, "trv")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (empty, "trv"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-2.0, -1.1, "com")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-2.0, -1.1, "com"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (1.1, 2.0, "dac")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (1.1, 2.0, "dac"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-1.0, 1.0, "com")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-1.0, 1.0, "com"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (0.0, 0.0, "dac")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (0.0, 0.0, "dac"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "def")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "def"))){1}, decorationpart (infsupdec (entire, "trv")){1})); ## minimal_sinRev_dec_bin_test %!test %! assert (isequal (sinrev (infsupdec (empty, "trv"), infsupdec (-1.2, 12.1, "com")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (empty, "trv"), infsupdec (-1.2, 12.1, "com"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-2.0, -1.1, "def"), infsupdec (-5.0, 5.0, "def")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-2.0, -1.1, "def"), infsupdec (-5.0, 5.0, "def"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (1.1, 2.0, "dac"), infsupdec (-5.0, 5.0, "com")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (1.1, 2.0, "dac"), infsupdec (-5.0, 5.0, "com"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-1.0, 1.0, "com"), infsupdec (-1.2, 12.1, "def")), infsupdec (-1.2, 12.1, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-1.0, 1.0, "com"), infsupdec (-1.2, 12.1, "def"))){1}, decorationpart (infsupdec (-1.2, 12.1, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (0.0, 0.0, "dac"), infsupdec (-1.0, 1.0, "def")), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (0.0, 0.0, "dac"), infsupdec (-1.0, 1.0, "def"))){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-0.0, -0.0, "def"), infsupdec (2.0, 2.5, "trv")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-0.0, -0.0, "def"), infsupdec (2.0, 2.5, "trv"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-0.0, -0.0, "def"), infsupdec (3.0, 3.5, "dac")), infsupdec (3.141592653589793116e+00, 3.141592653589793560e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-0.0, -0.0, "def"), infsupdec (3.0, 3.5, "dac"))){1}, decorationpart (infsupdec (3.141592653589793116e+00, 3.141592653589793560e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (9.999999999999998890e-01, 1.000000000000000000e+00, "dac"), infsupdec (1.57, 1.58, "dac")), infsupdec (1.570796311893735364e+00, 1.570796341696058196e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (9.999999999999998890e-01, 1.000000000000000000e+00, "dac"), infsupdec (1.57, 1.58, "dac"))){1}, decorationpart (infsupdec (1.570796311893735364e+00, 1.570796341696058196e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (0.0, 1.000000000000000000e+00, "com"), infsupdec (-0.1, 1.58, "dac")), infsupdec (0.0, 1.58, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (0.0, 1.000000000000000000e+00, "com"), infsupdec (-0.1, 1.58, "dac"))){1}, decorationpart (infsupdec (0.0, 1.58, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com"), infsupdec (3.14, 3.15, "def")), infsupdec (3.141592653589792672e+00, 3.141592653589793560e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com"), infsupdec (3.14, 3.15, "def"))){1}, decorationpart (infsupdec (3.141592653589792672e+00, 3.141592653589793560e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "com"), infsupdec (3.14, 3.15, "dac")), infsupdec (3.141592653589793116e+00, 3.141592653589794004e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "com"), infsupdec (3.14, 3.15, "dac"))){1}, decorationpart (infsupdec (3.141592653589793116e+00, 3.141592653589794004e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-3.216245299353273201e-16, 1.224646799147353207e-16, "dac"), infsupdec (3.14, 3.15, "com")), infsupdec (3.141592653589792672e+00, 3.141592653589794004e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-3.216245299353273201e-16, 1.224646799147353207e-16, "dac"), infsupdec (3.14, 3.15, "com"))){1}, decorationpart (infsupdec (3.141592653589792672e+00, 3.141592653589794004e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (0.0, 1.0, "def"), infsupdec (-0.1, 3.15, "def")), infsupdec (0.0, 3.141592653589793560e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (0.0, 1.0, "def"), infsupdec (-0.1, 3.15, "def"))){1}, decorationpart (infsupdec (0.0, 3.141592653589793560e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (0.0, 1.0, "dac"), infsupdec (-0.1, 3.15, "com")), infsupdec (-0.0, 3.141592653589793560e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (0.0, 1.0, "dac"), infsupdec (-0.1, 3.15, "com"))){1}, decorationpart (infsupdec (-0.0, 3.141592653589793560e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-3.216245299353273201e-16, 1.0, "def"), infsupdec (-0.1, 3.15, "def")), infsupdec (-3.216245299353273694e-16, 3.141592653589794004e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-3.216245299353273201e-16, 1.0, "def"), infsupdec (-0.1, 3.15, "def"))){1}, decorationpart (infsupdec (-3.216245299353273694e-16, 3.141592653589794004e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-3.216245299353273201e-16, 1.0, "com"), infsupdec (0.0, 3.15, "dac")), infsupdec (0.0, 3.141592653589794004e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-3.216245299353273201e-16, 1.0, "com"), infsupdec (0.0, 3.15, "dac"))){1}, decorationpart (infsupdec (0.0, 3.141592653589794004e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (1.224646799147352961e-16, 1.000000000000000000e+00, "def"), infsupdec (3.14, 3.15, "com")), infsupdec (3.14, 3.141592653589793560e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (1.224646799147352961e-16, 1.000000000000000000e+00, "def"), infsupdec (3.14, 3.15, "com"))){1}, decorationpart (infsupdec (3.14, 3.141592653589793560e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-3.216245299353273201e-16, 1.000000000000000000e+00, "dac"), infsupdec (1.57, 3.15, "com")), infsupdec (1.57, 3.141592653589794004e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-3.216245299353273201e-16, 1.000000000000000000e+00, "dac"), infsupdec (1.57, 3.15, "com"))){1}, decorationpart (infsupdec (1.57, 3.141592653589794004e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com"), infsupdec (-inf, 3.15, "dac")), infsupdec (-inf, 3.141592653589793560e+00, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com"), infsupdec (-inf, 3.15, "dac"))){1}, decorationpart (infsupdec (-inf, 3.141592653589793560e+00, "trv")){1})); %!test %! assert (isequal (sinrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "com"), infsupdec (3.14, inf, "dac")), infsupdec (3.141592653589793116e+00, inf, "trv"))); %! assert (isequal (decorationpart (sinrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "com"), infsupdec (3.14, inf, "dac"))){1}, decorationpart (infsupdec (3.141592653589793116e+00, inf, "trv")){1})); ## minimal_cosRev_test %!test %! assert (isequal (cosrev (infsup), infsup)); %!test %! assert (isequal (cosrev (infsup (-2.0, -1.1)), infsup)); %!test %! assert (isequal (cosrev (infsup (1.1, 2.0)), infsup)); %!test %! assert (isequal (cosrev (infsup (-1.0, 1.0)), infsup (-inf, inf))); %!test %! assert (isequal (cosrev (infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (cosrev (infsup (1.224646799147352961e-16, 1.224646799147353207e-16)), infsup (-inf, inf))); ## minimal_cosRevBin_test %!test %! assert (isequal (cosrev (infsup, infsup (-1.2, 12.1)), infsup)); %!test %! assert (isequal (cosrev (infsup (-2.0, -1.1), infsup (-5.0, 5.0)), infsup)); %!test %! assert (isequal (cosrev (infsup (1.1, 2.0), infsup (-5.0, 5.0)), infsup)); %!test %! assert (isequal (cosrev (infsup (-1.0, 1.0), infsup (-1.2, 12.1)), infsup (-1.2, 12.1))); %!test %! assert (isequal (cosrev (infsup (1.0, 1.0), infsup (-0.1, 0.1)), infsup (0.0, 0.0))); %!test %! assert (isequal (cosrev (infsup (-1.0, -1.0), infsup (3.14, 3.15)), infsup (3.141592653589793116e+00, 3.141592653589794004e+00))); %!test %! assert (isequal (cosrev (infsup (6.123233995736764803e-17, 6.123233995736766036e-17), infsup (1.57, 1.58)), infsup (1.570796326794896336e+00, 1.570796326794896780e+00))); %!test %! assert (isequal (cosrev (infsup (-1.608122649676636601e-16, -1.608122649676636354e-16), infsup (1.57, 1.58)), infsup (1.570796326794896558e+00, 1.570796326794897002e+00))); %!test %! assert (isequal (cosrev (infsup (-1.608122649676636601e-16, 6.123233995736766036e-17), infsup (1.57, 1.58)), infsup (1.570796326794896336e+00, 1.570796326794897002e+00))); %!test %! assert (isequal (cosrev (infsup (6.123233995736764803e-17, 1.0), infsup (-2.0, 2.0)), infsup (-1.570796326794896780e+00, 1.570796326794896780e+00))); %!test %! assert (isequal (cosrev (infsup (6.123233995736764803e-17, 1.0), infsup (0.0, 2.0)), infsup (0.0, 1.570796326794896780e+00))); %!test %! assert (isequal (cosrev (infsup (-1.608122649676636601e-16, 1.0), infsup (-0.1, 1.5708)), infsup (-0.1, 1.570796326794897002e+00))); %!test %! assert (isequal (cosrev (infsup (-1.000000000000000000e+00, -9.999999999999998890e-01), infsup (3.14, 3.15)), infsup (3.141592638688631922e+00, 3.141592668490955198e+00))); %!test %! assert (isequal (cosrev (infsup (-1.000000000000000000e+00, -9.999999999999998890e-01), infsup (-3.15, -3.14)), infsup (-3.141592668490955198e+00, -3.141592638688631922e+00))); %!test %! assert (isequal (cosrev (infsup (-1.000000000000000000e+00, -9.999999999999998890e-01), infsup (9.42, 9.45)), infsup (9.424777945868218154e+00, 9.424777975670542318e+00))); %!test %! assert (isequal (cosrev (infsup (7.648421872844883840e-01, 1.0), infsup (-1.0, 0.1)), infsup (-7.000000000000000666e-01, 0.1))); %!test %! assert (isequal (cosrev (infsup (-4.161468365471424069e-01, 5.403023058681397650e-01), infsup (0.0, 2.1)), infsup (9.999999999999998890e-01, 2.000000000000000444e+00))); %!test %! assert (isequal (cosrev (infsup (1.224646799147352961e-16, 1.224646799147353207e-16), infsup (-inf, 1.58)), infsup (-inf, 1.570796326794896558e+00))); %!test %! assert (isequal (cosrev (infsup (1.224646799147352961e-16, 1.224646799147353207e-16), infsup (-inf, 1.5)), infsup (-inf, -1.570796326794896336e+00))); %!test %! assert (isequal (cosrev (infsup (-3.216245299353273201e-16, -3.216245299353272708e-16), infsup (-1.58, inf)), infsup (-1.570796326794897002e+00, inf))); %!test %! assert (isequal (cosrev (infsup (-3.216245299353273201e-16, -3.216245299353272708e-16), infsup (-1.5, inf)), infsup (1.570796326794896780e+00, inf))); ## minimal_cosRev_dec_test %!test %! assert (isequal (cosrev (infsupdec (empty, "trv")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (empty, "trv"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-2.0, -1.1, "def")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-2.0, -1.1, "def"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (1.1, 2.0, "dac")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (1.1, 2.0, "dac"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.0, 1.0, "com")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.0, 1.0, "com"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (0.0, 0.0, "def")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (0.0, 0.0, "def"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "dac")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "dac"))){1}, decorationpart (infsupdec (entire, "trv")){1})); ## minimal_cosRev_dec_bin_test %!test %! assert (isequal (cosrev (infsupdec (empty, "trv"), infsupdec (-1.2, 12.1, "def")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (empty, "trv"), infsupdec (-1.2, 12.1, "def"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-2.0, -1.1, "dac"), infsupdec (-5.0, 5.0, "com")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-2.0, -1.1, "dac"), infsupdec (-5.0, 5.0, "com"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (1.1, 2.0, "dac"), infsupdec (-5.0, 5.0, "com")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (1.1, 2.0, "dac"), infsupdec (-5.0, 5.0, "com"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.0, 1.0, "dac"), infsupdec (-1.2, 12.1, "def")), infsupdec (-1.2, 12.1, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.0, 1.0, "dac"), infsupdec (-1.2, 12.1, "def"))){1}, decorationpart (infsupdec (-1.2, 12.1, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (1.0, 1.0, "def"), infsupdec (-0.1, 0.1, "dac")), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (1.0, 1.0, "def"), infsupdec (-0.1, 0.1, "dac"))){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.0, -1.0, "com"), infsupdec (3.14, 3.15, "dac")), infsupdec (3.141592653589793116e+00, 3.141592653589794004e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.0, -1.0, "com"), infsupdec (3.14, 3.15, "dac"))){1}, decorationpart (infsupdec (3.141592653589793116e+00, 3.141592653589794004e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (6.123233995736764803e-17, 6.123233995736766036e-17, "def"), infsupdec (1.57, 1.58, "def")), infsupdec (1.570796326794896336e+00, 1.570796326794896780e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (6.123233995736764803e-17, 6.123233995736766036e-17, "def"), infsupdec (1.57, 1.58, "def"))){1}, decorationpart (infsupdec (1.570796326794896336e+00, 1.570796326794896780e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.608122649676636601e-16, -1.608122649676636354e-16, "dac"), infsupdec (1.57, 1.58, "dac")), infsupdec (1.570796326794896558e+00, 1.570796326794897002e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.608122649676636601e-16, -1.608122649676636354e-16, "dac"), infsupdec (1.57, 1.58, "dac"))){1}, decorationpart (infsupdec (1.570796326794896558e+00, 1.570796326794897002e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.608122649676636601e-16, 6.123233995736766036e-17, "com"), infsupdec (1.57, 1.58, "dac")), infsupdec (1.570796326794896336e+00, 1.570796326794897002e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.608122649676636601e-16, 6.123233995736766036e-17, "com"), infsupdec (1.57, 1.58, "dac"))){1}, decorationpart (infsupdec (1.570796326794896336e+00, 1.570796326794897002e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (6.123233995736764803e-17, 1.0, "def"), infsupdec (-2.0, 2.0, "com")), infsupdec (-1.570796326794896780e+00, 1.570796326794896780e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (6.123233995736764803e-17, 1.0, "def"), infsupdec (-2.0, 2.0, "com"))){1}, decorationpart (infsupdec (-1.570796326794896780e+00, 1.570796326794896780e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (6.123233995736764803e-17, 1.0, "dac"), infsupdec (0.0, 2.0, "def")), infsupdec (0.0, 1.570796326794896780e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (6.123233995736764803e-17, 1.0, "dac"), infsupdec (0.0, 2.0, "def"))){1}, decorationpart (infsupdec (0.0, 1.570796326794896780e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.608122649676636601e-16, 1.0, "def"), infsupdec (-0.1, 1.5708, "dac")), infsupdec (-0.1, 1.570796326794897002e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.608122649676636601e-16, 1.0, "def"), infsupdec (-0.1, 1.5708, "dac"))){1}, decorationpart (infsupdec (-0.1, 1.570796326794897002e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.000000000000000000e+00, -9.999999999999998890e-01, "dac"), infsupdec (3.14, 3.15, "def")), infsupdec (3.141592638688631922e+00, 3.141592668490955198e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.000000000000000000e+00, -9.999999999999998890e-01, "dac"), infsupdec (3.14, 3.15, "def"))){1}, decorationpart (infsupdec (3.141592638688631922e+00, 3.141592668490955198e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.000000000000000000e+00, -9.999999999999998890e-01, "def"), infsupdec (-3.15, -3.14, "com")), infsupdec (-3.141592668490955198e+00, -3.141592638688631922e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.000000000000000000e+00, -9.999999999999998890e-01, "def"), infsupdec (-3.15, -3.14, "com"))){1}, decorationpart (infsupdec (-3.141592668490955198e+00, -3.141592638688631922e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-1.000000000000000000e+00, -9.999999999999998890e-01, "def"), infsupdec (9.42, 9.45, "dac")), infsupdec (9.424777945868218154e+00, 9.424777975670542318e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-1.000000000000000000e+00, -9.999999999999998890e-01, "def"), infsupdec (9.42, 9.45, "dac"))){1}, decorationpart (infsupdec (9.424777945868218154e+00, 9.424777975670542318e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (7.648421872844883840e-01, 1.0, "dac"), infsupdec (-1.0, 0.1, "def")), infsupdec (-7.000000000000000666e-01, 0.1, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (7.648421872844883840e-01, 1.0, "dac"), infsupdec (-1.0, 0.1, "def"))){1}, decorationpart (infsupdec (-7.000000000000000666e-01, 0.1, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-4.161468365471424069e-01, 5.403023058681397650e-01, "com"), infsupdec (0.0, 2.1, "dac")), infsupdec (9.999999999999998890e-01, 2.000000000000000444e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-4.161468365471424069e-01, 5.403023058681397650e-01, "com"), infsupdec (0.0, 2.1, "dac"))){1}, decorationpart (infsupdec (9.999999999999998890e-01, 2.000000000000000444e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com"), infsupdec (-inf, 1.58, "dac")), infsupdec (-inf, 1.570796326794896558e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com"), infsupdec (-inf, 1.58, "dac"))){1}, decorationpart (infsupdec (-inf, 1.570796326794896558e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "def"), infsupdec (-inf, 1.5, "dac")), infsupdec (-inf, -1.570796326794896336e+00, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "def"), infsupdec (-inf, 1.5, "dac"))){1}, decorationpart (infsupdec (-inf, -1.570796326794896336e+00, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "dac"), infsupdec (-1.58, inf, "dac")), infsupdec (-1.570796326794897002e+00, inf, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "dac"), infsupdec (-1.58, inf, "dac"))){1}, decorationpart (infsupdec (-1.570796326794897002e+00, inf, "trv")){1})); %!test %! assert (isequal (cosrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "def"), infsupdec (-1.5, inf, "dac")), infsupdec (1.570796326794896780e+00, inf, "trv"))); %! assert (isequal (decorationpart (cosrev (infsupdec (-3.216245299353273201e-16, -3.216245299353272708e-16, "def"), infsupdec (-1.5, inf, "dac"))){1}, decorationpart (infsupdec (1.570796326794896780e+00, inf, "trv")){1})); ## minimal_tanRev_test %!test %! assert (isequal (tanrev (infsup), infsup)); %!test %! assert (isequal (tanrev (infsup (-1.0, 1.0)), infsup (-inf, inf))); %!test %! assert (isequal (tanrev (infsup (-156.0, -12.0)), infsup (-inf, inf))); %!test %! assert (isequal (tanrev (infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (tanrev (infsup (1.224646799147352961e-16, 1.224646799147353207e-16)), infsup (-inf, inf))); ## minimal_tanRevBin_test %!test %! assert (isequal (tanrev (infsup, infsup (-1.5708, 1.5708)), infsup)); %!test %! assert (isequal (tanrev (infsup (-inf, inf), infsup (-1.5708, 1.5708)), infsup (-1.5708, 1.5708))); %!test %! assert (isequal (tanrev (infsup (0.0, 0.0), infsup (-1.5708, 1.5708)), infsup (0.0, 0.0))); %!test %! assert (isequal (tanrev (infsup (1.633123935319536800e+16, 1.633123935319537000e+16), infsup (-1.5708, 1.5708)), infsup (-1.570796326794897224e+00, 1.570796326794896780e+00))); %!test %! assert (isequal (tanrev (infsup (-1.224646799147353207e-16, -1.224646799147352961e-16), infsup (3.14, 3.15)), infsup (3.141592653589792672e+00, 3.141592653589793560e+00))); %!test %! assert (isequal (tanrev (infsup (3.216245299353272708e-16, 3.216245299353273201e-16), infsup (-3.15, 3.15)), infsup (-3.141592653589793560e+00, 3.141592653589794004e+00))); %!test %! assert (isequal (tanrev (infsup (-1.633123935309004800e+16, 1.633123935309004800e+16), infsup (-inf, 1.5707965)), infsup (-inf, 1.570796499999999929e+00))); %!test %! assert (isequal (tanrev (infsup (-1.633123935309004800e+16, 1.633123935309004800e+16), infsup (-1.5707965, inf)), infsup (-1.570796499999999929e+00, inf))); %!test %! assert (isequal (tanrev (infsup (-1.633123935309004800e+16, 1.633123935309004800e+16), infsup (-1.5707965, 1.5707965)), infsup (-1.570796499999999929e+00, 1.570796499999999929e+00))); %!test %! assert (isequal (tanrev (infsup (-1.633123935319537000e+16, 1.633123935319537000e+16), infsup (-1.5707965, 1.5707965)), infsup (-1.5707965, 1.5707965))); ## minimal_tanRev_dec_test %!test %! assert (isequal (tanrev (infsupdec (empty, "trv")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (empty, "trv"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (-1.0, 1.0, "com")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (-1.0, 1.0, "com"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (-156.0, -12.0, "dac")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (-156.0, -12.0, "dac"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (0.0, 0.0, "def")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (0.0, 0.0, "def"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (1.224646799147352961e-16, 1.224646799147353207e-16, "com"))){1}, decorationpart (infsupdec (entire, "trv")){1})); ## minimal_tanRev_dec_bin_test %!test %! assert (isequal (tanrev (infsupdec (empty, "trv"), infsupdec (-1.5708, 1.5708, "def")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (empty, "trv"), infsupdec (-1.5708, 1.5708, "def"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (entire, "def"), infsupdec (-1.5708, 1.5708, "dac")), infsupdec (-1.5708, 1.5708, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (entire, "def"), infsupdec (-1.5708, 1.5708, "dac"))){1}, decorationpart (infsupdec (-1.5708, 1.5708, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (0.0, 0.0, "com"), infsupdec (-1.5708, 1.5708, "def")), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (0.0, 0.0, "com"), infsupdec (-1.5708, 1.5708, "def"))){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (1.633123935319536800e+16, 1.633123935319537000e+16, "dac"), infsupdec (-1.5708, 1.5708, "def")), infsupdec (-1.570796326794897224e+00, 1.570796326794896780e+00, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (1.633123935319536800e+16, 1.633123935319537000e+16, "dac"), infsupdec (-1.5708, 1.5708, "def"))){1}, decorationpart (infsupdec (-1.570796326794897224e+00, 1.570796326794896780e+00, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (-1.224646799147353207e-16, -1.224646799147352961e-16, "def"), infsupdec (3.14, 3.15, "dac")), infsupdec (3.141592653589792672e+00, 3.141592653589793560e+00, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (-1.224646799147353207e-16, -1.224646799147352961e-16, "def"), infsupdec (3.14, 3.15, "dac"))){1}, decorationpart (infsupdec (3.141592653589792672e+00, 3.141592653589793560e+00, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (3.216245299353272708e-16, 3.216245299353273201e-16, "com"), infsupdec (-3.15, 3.15, "com")), infsupdec (-3.141592653589793560e+00, 3.141592653589794004e+00, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (3.216245299353272708e-16, 3.216245299353273201e-16, "com"), infsupdec (-3.15, 3.15, "com"))){1}, decorationpart (infsupdec (-3.141592653589793560e+00, 3.141592653589794004e+00, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (-1.633123935309004800e+16, 1.633123935309004800e+16, "def"), infsupdec (-inf, 1.5707965, "def")), infsupdec (-inf, 1.570796499999999929e+00, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (-1.633123935309004800e+16, 1.633123935309004800e+16, "def"), infsupdec (-inf, 1.5707965, "def"))){1}, decorationpart (infsupdec (-inf, 1.570796499999999929e+00, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (-1.633123935309004800e+16, 1.633123935309004800e+16, "com"), infsupdec (-1.5707965, inf, "dac")), infsupdec (-1.570796499999999929e+00, inf, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (-1.633123935309004800e+16, 1.633123935309004800e+16, "com"), infsupdec (-1.5707965, inf, "dac"))){1}, decorationpart (infsupdec (-1.570796499999999929e+00, inf, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (-1.633123935309004800e+16, 1.633123935309004800e+16, "com"), infsupdec (-1.5707965, 1.5707965, "com")), infsupdec (-1.570796499999999929e+00, 1.570796499999999929e+00, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (-1.633123935309004800e+16, 1.633123935309004800e+16, "com"), infsupdec (-1.5707965, 1.5707965, "com"))){1}, decorationpart (infsupdec (-1.570796499999999929e+00, 1.570796499999999929e+00, "trv")){1})); %!test %! assert (isequal (tanrev (infsupdec (-1.633123935319537000e+16, 1.633123935319537000e+16, "dac"), infsupdec (-1.5707965, 1.5707965, "def")), infsupdec (-1.5707965, 1.5707965, "trv"))); %! assert (isequal (decorationpart (tanrev (infsupdec (-1.633123935319537000e+16, 1.633123935319537000e+16, "dac"), infsupdec (-1.5707965, 1.5707965, "def"))){1}, decorationpart (infsupdec (-1.5707965, 1.5707965, "trv")){1})); ## minimal_coshRev_test %!test %! assert (isequal (coshrev (infsup), infsup)); %!test %! assert (isequal (coshrev (infsup (1.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (coshrev (infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (coshrev (infsup (1.0, 1.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (coshrev (infsup (1.543080634815243712e+00, 1.705784684221513993e+130)), infsup (-3.005632345000000782e+02, 3.005632345000000782e+02))); ## minimal_coshRevBin_test %!test %! assert (isequal (coshrev (infsup, infsup (0.0, inf)), infsup)); %!test %! assert (isequal (coshrev (infsup (1.0, inf), infsup (0.0, inf)), infsup (0.0, inf))); %!test %! assert (isequal (coshrev (infsup (0.0, inf), infsup (1.0, 2.0)), infsup (1.0, 2.0))); %!test %! assert (isequal (coshrev (infsup (1.0, 1.0), infsup (1.0, inf)), infsup)); %!test %! assert (isequal (coshrev (infsup (1.543080634815243712e+00, 1.705784684221513993e+130), infsup (-inf, 0.0)), infsup (-3.005632345000000782e+02, -9.999999999999998890e-01))); ## minimal_coshRev_dec_test %!test %! assert (isequal (coshrev (infsupdec (empty, "trv")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (empty, "trv"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (1.0, inf, "dac")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (1.0, inf, "dac"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (0.0, inf, "dac")), infsupdec (entire, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (0.0, inf, "dac"))){1}, decorationpart (infsupdec (entire, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (1.0, 1.0, "def")), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (1.0, 1.0, "def"))){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (1.543080634815243712e+00, 1.705784684221513993e+130, "com")), infsupdec (-3.005632345000000782e+02, 3.005632345000000782e+02, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (1.543080634815243712e+00, 1.705784684221513993e+130, "com"))){1}, decorationpart (infsupdec (-3.005632345000000782e+02, 3.005632345000000782e+02, "trv")){1})); ## minimal_coshRev_dec_bin_test %!test %! assert (isequal (coshrev (infsupdec (empty, "trv"), infsupdec (0.0, inf, "dac")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (empty, "trv"), infsupdec (0.0, inf, "dac"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (1.0, inf, "def"), infsupdec (0.0, inf, "dac")), infsupdec (0.0, inf, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (1.0, inf, "def"), infsupdec (0.0, inf, "dac"))){1}, decorationpart (infsupdec (0.0, inf, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (0.0, inf, "def"), infsupdec (1.0, 2.0, "com")), infsupdec (1.0, 2.0, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (0.0, inf, "def"), infsupdec (1.0, 2.0, "com"))){1}, decorationpart (infsupdec (1.0, 2.0, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (1.0, 1.0, "dac"), infsupdec (1.0, inf, "def")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (1.0, 1.0, "dac"), infsupdec (1.0, inf, "def"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (coshrev (infsupdec (1.543080634815243712e+00, 1.705784684221513993e+130, "com"), infsupdec (-inf, 0.0, "dac")), infsupdec (-3.005632345000000782e+02, -9.999999999999998890e-01, "trv"))); %! assert (isequal (decorationpart (coshrev (infsupdec (1.543080634815243712e+00, 1.705784684221513993e+130, "com"), infsupdec (-inf, 0.0, "dac"))){1}, decorationpart (infsupdec (-3.005632345000000782e+02, -9.999999999999998890e-01, "trv")){1})); ## minimal_mulRev_test %!test %! assert (isequal (mulrev (infsup, infsup (1.0, 2.0)), infsup)); %!test %! assert (isequal (mulrev (infsup (1.0, 2.0), infsup), infsup)); %!test %! assert (isequal (mulrev (infsup, infsup), infsup)); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-2.1, -0.4)), infsup (2.000000000000000111e-01, 2.100000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-2.1, -0.4)), infsup (2.000000000000000111e-01, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-2.1, -0.4)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-2.1, -0.4)), infsup (-inf, -3.636363636363635909e-01))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-2.1, -0.4)), infsup (-2.100000000000000284e+02, -3.636363636363635909e-01))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-2.1, -0.4)), infsup)); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-2.1, -0.4)), infsup (0.0, 2.100000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-2.1, -0.4)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-2.1, -0.4)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-2.1, -0.4)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-2.1, -0.4)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-2.1, -0.4)), infsup (-2.100000000000000284e+02, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-2.1, -0.4)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-2.1, 0.0)), infsup (0.0, 2.100000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-2.1, 0.0)), infsup (-2.100000000000000284e+02, 0.0))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-2.1, 0.0)), infsup (0.0, 2.100000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-2.1, 0.0)), infsup (-2.100000000000000284e+02, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-2.1, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-2.1, 0.12)), infsup (-1.199999999999999956e+00, 2.100000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-2.1, 0.12)), infsup (-2.100000000000000284e+02, 1.200000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-2.1, 0.12)), infsup (-1.199999999999999956e+00, 2.100000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-2.1, 0.12)), infsup (-2.100000000000000284e+02, 1.200000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-2.1, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (0.0, 0.12)), infsup (-1.199999999999999956e+00, 0.0))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (0.0, 0.12)), infsup (0.0, 1.200000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (0.0, 0.12)), infsup (-1.199999999999999956e+00, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (0.0, 0.12)), infsup (0.0, 1.200000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (0.0, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (0.01, 0.12)), infsup (-1.199999999999999956e+00, -5.000000000000000104e-03))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (0.01, 0.12)), infsup (-inf, -5.000000000000000104e-03))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (0.01, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (0.01, 0.12)), infsup (9.090909090909088733e-03, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (0.01, 0.12)), infsup (9.090909090909088733e-03, 1.200000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (0.01, 0.12)), infsup)); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (0.01, 0.12)), infsup (-1.199999999999999956e+00, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (0.01, 0.12)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (0.01, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (0.01, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (0.01, 0.12)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (0.01, 0.12)), infsup (0.0, 1.200000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (0.01, 0.12)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (0.0, 0.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (0.0, 0.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (0.0, 0.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (0.0, 0.0)), infsup (0.0, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (0.0, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-inf, -0.1)), infsup (5.000000000000000278e-02, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-inf, -0.1)), infsup (5.000000000000000278e-02, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-inf, -0.1)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-inf, -0.1)), infsup (-inf, -9.090909090909089774e-02))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-inf, -0.1)), infsup (-inf, -9.090909090909089774e-02))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-inf, -0.1)), infsup)); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-inf, -0.1)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-inf, -0.1)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-inf, -0.1)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-inf, -0.1)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-inf, -0.1)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-inf, -0.1)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-inf, -0.1)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-inf, 0.0)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-inf, 0.0)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-inf, 0.0)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-inf, 0.0)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-inf, 0.0)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-inf, 0.3)), infsup (-3.000000000000000000e+00, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-inf, 0.3)), infsup (-inf, 3.000000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-inf, 0.3)), infsup (-3.000000000000000000e+00, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-inf, 0.3)), infsup (-inf, 3.000000000000000000e+01))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-inf, 0.3)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-0.21, inf)), infsup (-inf, 2.100000000000000089e+00))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-0.21, inf)), infsup (-2.100000000000000000e+01, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-0.21, inf)), infsup (-inf, 2.100000000000000089e+00))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-0.21, inf)), infsup (-2.100000000000000000e+01, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-0.21, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (0.0, inf)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (0.0, inf)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (0.0, inf)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (0.0, inf)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (0.0, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (0.04, inf)), infsup (-inf, -2.000000000000000042e-02))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (0.04, inf)), infsup (-inf, -2.000000000000000042e-02))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (0.04, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (0.04, inf)), infsup (3.636363636363635493e-02, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (0.04, inf)), infsup (3.636363636363635493e-02, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (0.04, inf)), infsup)); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (0.04, inf)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (0.04, inf)), infsup (-inf, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (0.04, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (0.04, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (0.04, inf)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (0.04, inf)), infsup (0.0, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (0.04, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 0.0), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 1.1), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, 0.0), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 0.0), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, 1.1), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-2.0, inf), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.0, inf), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (0.01, inf), infsup (-inf, inf)), infsup (-inf, inf))); %!test %! assert (isequal (mulrev (infsup (-inf, inf), infsup (-inf, inf)), infsup (-inf, inf))); ## minimal_mulRevTen_test %!test %! assert (isequal (mulrev (infsup (-2.0, -0.1), infsup (-2.1, -0.4), infsup (-2.1, -0.4)), infsup)); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (-2.1, -0.4), infsup (-2.1, -0.4)), infsup (-2.1, -0.4))); %!test %! assert (isequal (mulrev (infsup (0.01, 1.1), infsup (-2.1, 0.0), infsup (-2.1, 0.0)), infsup (-2.1, 0.0))); %!test %! assert (isequal (mulrev (infsup (-inf, -0.1), infsup (0.0, 0.12), infsup (0.0, 0.12)), infsup (0.0, 0.0))); %!test %! assert (isequal (mulrev (infsup (-2.0, 1.1), infsup (0.04, inf), infsup (0.04, inf)), infsup (0.04, inf))); ## minimal_mulRev_dec_test %!test %! assert (isequal (mulrev (infsupdec (-2.0, -0.1, "dac"), infsupdec (-2.1, -0.4, "dac")), infsupdec (2.000000000000000111e-01, 2.100000000000000000e+01, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-2.0, -0.1, "dac"), infsupdec (-2.1, -0.4, "dac"))){1}, decorationpart (infsupdec (2.000000000000000111e-01, 2.100000000000000000e+01, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (-2.0, -0.1, "def"), infsupdec (-2.1, 0.0, "def")), infsupdec (0.0, 2.100000000000000000e+01, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-2.0, -0.1, "def"), infsupdec (-2.1, 0.0, "def"))){1}, decorationpart (infsupdec (0.0, 2.100000000000000000e+01, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (-2.0, -0.1, "com"), infsupdec (-2.1, 0.12, "dac")), infsupdec (-1.199999999999999956e+00, 2.100000000000000000e+01, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-2.0, -0.1, "com"), infsupdec (-2.1, 0.12, "dac"))){1}, decorationpart (infsupdec (-1.199999999999999956e+00, 2.100000000000000000e+01, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (-inf, -0.1, "dac"), infsupdec (0.0, 0.12, "com")), infsupdec (-1.199999999999999956e+00, 0.0, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-inf, -0.1, "dac"), infsupdec (0.0, 0.12, "com"))){1}, decorationpart (infsupdec (-1.199999999999999956e+00, 0.0, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (0.01, 1.1, "def"), infsupdec (0.01, 0.12, "dac")), infsupdec (9.090909090909088733e-03, 1.200000000000000000e+01, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (0.01, 1.1, "def"), infsupdec (0.01, 0.12, "dac"))){1}, decorationpart (infsupdec (9.090909090909088733e-03, 1.200000000000000000e+01, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (0.01, 1.1, "dac"), infsupdec (-inf, 0.3, "def")), infsupdec (-inf, 3.000000000000000000e+01, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (0.01, 1.1, "dac"), infsupdec (-inf, 0.3, "def"))){1}, decorationpart (infsupdec (-inf, 3.000000000000000000e+01, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (-inf, -0.1, "trv"), infsupdec (-0.21, inf, "dac")), infsupdec (-inf, 2.100000000000000089e+00, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-inf, -0.1, "trv"), infsupdec (-0.21, inf, "dac"))){1}, decorationpart (infsupdec (-inf, 2.100000000000000089e+00, "trv")){1})); ## minimal_mulRev_dec_ten_test %!test %! assert (isequal (mulrev (infsupdec (-2.0, -0.1, "dac"), infsupdec (-2.1, -0.4, "dac"), infsupdec (-2.1, -0.4, "dac")), infsupdec (empty, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-2.0, -0.1, "dac"), infsupdec (-2.1, -0.4, "dac"), infsupdec (-2.1, -0.4, "dac"))){1}, decorationpart (infsupdec (empty, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (-2.0, 1.1, "def"), infsupdec (-2.1, -0.4, "com"), infsupdec (-2.1, -0.4, "com")), infsupdec (-2.1, -0.4, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-2.0, 1.1, "def"), infsupdec (-2.1, -0.4, "com"), infsupdec (-2.1, -0.4, "com"))){1}, decorationpart (infsupdec (-2.1, -0.4, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (0.01, 1.1, "com"), infsupdec (-2.1, 0.0, "dac"), infsupdec (-2.1, 0.0, "dac")), infsupdec (-2.1, 0.0, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (0.01, 1.1, "com"), infsupdec (-2.1, 0.0, "dac"), infsupdec (-2.1, 0.0, "dac"))){1}, decorationpart (infsupdec (-2.1, 0.0, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (-inf, -0.1, "dac"), infsupdec (0.0, 0.12, "com"), infsupdec (0.0, 0.12, "com")), infsupdec (0.0, 0.0, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-inf, -0.1, "dac"), infsupdec (0.0, 0.12, "com"), infsupdec (0.0, 0.12, "com"))){1}, decorationpart (infsupdec (0.0, 0.0, "trv")){1})); %!test %! assert (isequal (mulrev (infsupdec (-2.0, 1.1, "def"), infsupdec (0.04, inf, "dac"), infsupdec (0.04, inf, "dac")), infsupdec (0.04, inf, "trv"))); %! assert (isequal (decorationpart (mulrev (infsupdec (-2.0, 1.1, "def"), infsupdec (0.04, inf, "dac"), infsupdec (0.04, inf, "dac"))){1}, decorationpart (infsupdec (0.04, inf, "trv")){1}));
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//clc() //C(s) + 2H2(g) = CH4(g) Hf = ? Hc = -393.51;//kJ/mol Hh2 = -285.84;//kJ/mol Hch4 = - 890.4;//kJ/mol //heat of reaction can be calculated from the heat of combustion data using following equation, the heat of reaction is the sum of the heat of combustion of all the reactants in the desired reaction minus the sum of the heat of combustion of all the products of the desired reaction. Here the reactants are one mole of Carbon and two moles hydrogen, and the product is one mole of methane,there heat of reaction is Hf = 1 * Hc + 2 * Hh2 - 1 * Hch4; disp("kJ",Hf,"Heat of formation of methane = ")
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// Example 3_13 clc;clear;funcprot(0); // Given values h_0=0.5;// m Z_R=0.6;// m g=9.81;// m/s^2 R=0.1;// m //Calculation omega=sqrt((4*g*(Z_R-h_0))/R^2);// rad/s printf('The maximum rotational speed of the container,omega=%0.1f rad/s \n',omega); n=(omega/(2*%pi))*60;// rpm printf('The rotational speed of the container expressed in terms of rpm,n=%0.0f rpm\n',n);
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function [y,state,index] = HelicalInterleaver(in,col,N,stp,inist,stindex) y=[]; state = []; index=[]; // Display mode mode(0); // Display warning for floating point exception ieee(1); //HelicalInterleaver Permute symbols using helical array. //[y,state,index]= HelicalInterleaver(in,delay,inist).permutes the elements in input by using //Permute symbols using helical array //it also returns the current state of arrays as matrix //and the value of next index from which we would get output //in:input- can be any vector. Its length should be equal to col * N //col:Number of columns-The number of columns, C, in the helical array. //N:The group size, N, of each group of input symbols. //inist:Initialstate- Initial conditions of helical array //Specify the initial values in each shift register as a numeric scalar value or a //matrix. Intially pass a scalar for subsequent calls pass the state returned from previous calls //stindex:start index- which shift register will give first ouput. it should be scalar //less than no of col.Intially pass 1 subsequent cause pass the index returned from previous calls //Author - Harshal Shah //checking conditions on input if(~isreal(in) | or( isnan(in)) | min(size(in))~=1 | length(in)~=(N*col) ) then error("HelicalInterleaver:improper input"); end // checking conditions on col if (~isreal(col) | length(col)~=1 | isnan(col)|col<=0) then error("HelicalInterleaver:improper col"); end // checking conditions on N if (~isreal(N) | length(N)~=1 | isnan(N)|N<=0) then error("HelicalInterleaver:improper N"); end delay = 0:stp:(col-1)*stp; k=1; for i =1:N for j =i:N:N*col Z(k)=in(j); k=k+1; end end [y,state,index] = MultiplexedInterleaver(Z,delay,inist,stindex); endfunction
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function [y] = ELU(alpha,x) for i=1:length(x) if x(i) < 0 then y(i) = alpha * (%e^x(i) - 1) else y(i) = x(i) end; end; endfunction
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//Initilization of variables W1=40 //lb W2=30 //lb theta1=30 //degrees //Calculations //Summing the forces parallel to 30 degree plane T=40*sind(theta1) theta=asind(T/W2) //Result clc printf('The tension in the cable is %flb and the angle theta is %f degrees',T,theta)
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clc d=0.15; //m T=303; //K p=3*10^5; //N/m^2 l=0.085; //m Q=-4000; //J disp("(i) Workdone by the system") dv=%pi/4*d^2*l; W=p*dv; disp("W=") disp(W/10^3) disp("kJ") disp("(ii) Decrease in internal energy of the system") dU=(Q-W)/10^3; disp("Decrease in internal energy = ") disp(-dU) disp("kJ")
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2_Theorie.sce
clear; clc; t = linspace(-1, 7, 801)'; u_E_zu = [zeros(200,1); 3*ones(601,1)]; u_C_zu = [zeros(200,1); 3 * (1 - exp(1 - t(201:801)))]; u_R_zu = [zeros(200,1); 3 * exp(1 - t(201:801))]; i_zu = [zeros(200,1); 3 * exp(1 - t(201:801))]; D_zu = [t, u_C_zu, u_R_zu, u_E_zu, i_zu]; u_E_ab = [3*ones(200,1); zeros(601,1)]; u_C_ab = [3*ones(200,1); 3 * exp(1 - t(201:801))]; u_R_ab = [zeros(200,1); -3 * exp(1 - t(201:801))]; i_ab = [zeros(200,1); -3 * exp(1 - t(201:801))]; D_ab = [t, u_C_ab, u_R_ab, u_E_ab, i_ab];
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//i/p args are x and p and p is imaginary clc; clear; exec('/home/debdeep/Desktop/TEST NOW!!/rooteig/rooteig.sci'); x=[1 2 3 4 5 67 8 9]; p=2*%i; y=rooteig(x,p); disp(y); //output //!--error 144 //Undefined operation for the given operands. //check or define function %s_3_s for overloading. //at line 9 of function IsIntOrDouble called by : //at line 143 of function rooteig called by : //y=rooteig(x,p);
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Chapter6_Example24.sce
clc clear //Input data l=79.6;//latent heat of ice in cal/g V2=1;//The specific volume of water at 0 degree centigrade in cm^3 V1=1.091;//The specific volume of ice at 0 degree centigrade in cm^3 p=1.013*10^6;//One atmospheric pressure in dynes/cm^3 T=-1;//The change in temperature in K T1=273;//The temperature of water at 0 degree centigrade in K p1=1;//The atmospheric pressure in atm //Calculations L=l*4.18*10^7;//The latent heat of ice in ergs/g P=((L*T)/(T1*(V2-V1)*p));//The change in pressure in atmospheres P1=P+p1;//The pressure required in atmospheres //Output printf('The pressure required to lower melting point of ice,\n by 1 degree centigrade is %3.1f atmospheres ',P1)
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exa_6_4.sce
// Exa 6.4 clc; clear; close; // Given Data f= 1;// in kHz f= f*10^3;// in Hz // Vout/Vin= 10 R1= 100;// in k ohm R1=R1*10^3;// in ohm R2= 1000;// in k ohm R2=R2*10^3;// in ohm omega= 2*%pi*f; // Vout/Vin at a 3 dB frequency of 1 kHz = 1/sqrt(2) = omega*R2*C/sqrt(1+omega^2*R1^2*C2) C= sqrt(1/(omega^2*(2*R2^2-R1^2)));// in F disp(R1*10^-3,"Value of R1 in k ohm"); disp(R2*10^-6,"Value of R2 in k ohm"); disp(C,"Value of C in k ohm");
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5_27.sce
clc,clear printf('Example 5.27\n\n') V_L=220 VA=100*10^3 R_a=0.1 //effective resistacne of alternator X_a=0.5 //leakage reactance X_ar=2*X_a Z_s=complex(R_a,X_a+X_ar) //Part(1) phi=acos(0.4) V_ph=V_L/sqrt(3) I_L=VA/(sqrt(3)*V_L)//VA=sqrt(3)*V_L*I_L I_a=I_L E_ph=sqrt((V_ph*cos(phi)+I_a*R_a)^2+(V_ph*sin(phi)+I_a*(X_a+X_ar))^2) printf('(i)Required noload voltage is %.3f V',E_ph) //Part(2) V_ph2=0 E_ph2=sqrt((V_ph2*cos(phi)+I_a*R_a)^2+(V_ph2*sin(phi)+I_a*(X_a+X_ar))^2) printf('\n(ii)Required noload voltage is %.3f V',E_ph2)
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Ex11_2.sce
clear ; clc; // Example 11.2 printf('Example 11.2\n\n'); printf('Page No. 313\n\n'); //given p1 = 10;//heat-sensitive liquor percen p2 = 50;//heat-sensitive liquor percent m = 0.28;// mass rate in kg/s t = 150;// time in h per week // This question does not contain any calculation part in it. I = [8250 1150 14850 16500];//Installation cost in Pound A = [69300 36800 23600 24600];// Annual steam cost in Pound A_S = [A(1)-A(1) A(1)-A(2) A(1)-A(3) A(1)-A(4)];// Annual savings in Pound printf('\t\t CAPITAL AND OPERATING COSTS OF EVAPORATION PLANT\n\n\t \t\tInstallation \t\t Annual \t\t Annual saving\n Type \t\t\t cost \t\t\tsteam cost \t\t(to single effect)\n \t \t\t (Pound) \t\t (Pound) \t\t (Pound)\n\nSingle effect \t\t %.0f \t\t\t %.0f \t\t\ %.0f \nDouble effect \t\t %.0f \t\t\t %.0f \t\t\ %.0f \nTriple effect + \n(vapour compression) \t %.0f \t\t %.0f \t\t\ %.0f \nTriple effect \t\t %.0f \t\t %.0f \t\t\ %.0f \n\n\n',I(1),A(1),A_S(1),I(2),A(2),A_S(2),I(3),A(3),A_S(3),I(4),A(4),A_S(4)) printf(' The results enable the return on investment to be assessed by one of the standard economic procedures and the final selsction made.')
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ex10_24.sce
//Page Number: 10.41 //Example 10.24 clc; //(a) Number of constellation Points //Given Rs=2400; //bps Rb=19.2D+3; //bps //As Rs=Rb/log2M M=2^(Rb/Rs); disp(M,'Number of constellation points'); //(b) Bandwidth efficiency BT=2400; //Symbols/second n=Rb/BT; disp('bps/hz',n,'Bandwidth efficiency');
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Ex1_3_u2.sce
//Example 1_3_u2 clc(); clear; //To calculate the uncertenity in momentum h=6.63e-34 //units in m^2 kg s^-1 deltax=1 //units in nm deltax=deltax*10^-9 //units in meters deltap=h/(4*%pi*deltax) //units in Kg meter s^-1 printf("The uncertenity in momentum is delta p=") disp(deltap) printf("Kg ms^-1") //In text book the answer is printed wrong as 0.53*10^-15 Kg ms^-1 the correct answer is 5.276D-26 Kg ms^-1
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Ex13_68.sce
//EX13_68 Pg-37 clc clear printf(" Subtraction of two hexadecimal numbers using 16''s complement") printf("\n (CB2)_16>(972)_16") printf("\n Therefore (CB2)_16-(972)_16 =") x=['CB2'] y=['972'] //hexadecimal to decimal conversion x=hex2dec(x) y=hex2dec(y) y1=bitcmp(y,12)//15's complement of the smaller number y2=y1+1;//16's complement of the smaller number //subtraction of smaller number from larger number a=x+y2; w=bitset(a,13,0)//we discard the carry s=dec2hex(w) printf(" %s\n",s)
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Ex9_3.sce
//Chapter 9 : Electromagnetic Theory clear; //Variable declaration E0=9*10**-12 myu0=4*%pi*10**-7 r=10**4 //radius of Hemisphere epsilon0=8.85*10**-12 C=3*10**2 P=10**5 //Calculations S=P/(2*%pi*r**2)/10**-4 E0=sqrt((2*S)/(C*epsilon0))/10**5 B0=E0/C/10**-4 //Result mprintf("Poynting vector S= %.2f*10**-4 W/m**2",S) mprintf("\nE0= %.3f V/m",E0) mprintf("\nB0= %.2f *10**-10 T",B0)
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example6_sce.sce
//chapter 7 //example 7.6 //page 285, figure 7.40 R1=10000;R2=5100;R3=10000; C1=.001*10^-6; V=10; V5=(V*R3)/(R3+R2); disp(V5) fo=2.4*(V-V5)/(R1*C1*V); disp(fo)
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clc; clear all; disp("case 1:Without extra layer of lagging") r1=160/2;//mm outer radius of pipe r2=r1+40;//mm outer radius of layer 1 kA=0.8;// W/(m*C) thermal conductivity of pipe material ho=10;// W/(m^2*C) //ts= temperature of steam //ta=temperature of air L=1;//m length of pipe //Q1=2*3.1416*(ts-ta)/(1000/(ho*r2)+(log(r2/r1))/kA)); //Q1=2*3.1416*(ts-ta)/1.34; disp("Without extra layer of lagging Q1 = 2*3.1416*(ts-ta)/1.34") disp("case 1:With extra layer of lagging") r3=r2+40;//mm outer radius of layer 2 kB=1.2;// W/(m*C) thermal conductivity of insulation material ho=10;// W/(m^2*C) //Q2=2*3.1416*(ts-ta)/(1000/(ho*r3)+(log(r2/r1))/kA)+(log(r3/r2))/kB)); //Q2=2*3.1416*(ts-ta)/1.343; disp("With extra layer of lagging Q2 = 2*3.1416*(ts-ta)/1.343") //(Q2-Q1)/Q1=0.00223 t=0.00223*100; disp("%",t,"percentage decrease in heat flow due to extra addition of insulation =" )
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acordes_test.sci
exec dc.sci; //Script to tests //Open the file to write results file_results = mopen('chords_results.txt','w'); chord = 0; //Testing combinations of CM chord_result_1 = DA2(wavread('acordes_teste/CM1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/CM2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/CM3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Cm chord_result_1 = DA2(wavread('acordes_teste/Cm1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Cm2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Cm3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Caum chord_result_1 = DA2(wavread('acordes_teste/Caum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Caum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Caum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Cdim chord_result_1 = DA2(wavread('acordes_teste/Cdim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Cdim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Cdim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of C#M chord_result_1 = DA2(wavread('acordes_teste/C#M1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/C#M2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/C#M3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of C#m chord_result_1 = DA2(wavread('acordes_teste/C#m1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/C#m2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/C#m3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of C#aum chord_result_1 = DA2(wavread('acordes_teste/C#aum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/C#aum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/C#aum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of C#dim chord_result_1 = DA2(wavread('acordes_teste/C#dim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/C#dim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/C#dim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of DM chord_result_1 = DA2(wavread('acordes_teste/DM1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/DM2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/DM3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Dm chord_result_1 = DA2(wavread('acordes_teste/Dm1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Dm2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Dm3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Daum chord_result_1 = DA2(wavread('acordes_teste/Daum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Daum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Daum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Ddim chord_result_1 = DA2(wavread('acordes_teste/Ddim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Ddim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Ddim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of D#M chord_result_1 = DA2(wavread('acordes_teste/D#M1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/D#M2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/D#M3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of D#m chord_result_1 = DA2(wavread('acordes_teste/D#m1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/D#m2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/D#m3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of D#aum chord_result_1 = DA2(wavread('acordes_teste/D#aum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/D#aum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/D#aum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of D#dim chord_result_1 = DA2(wavread('acordes_teste/D#dim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/D#dim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/D#dim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of EM chord_result_1 = DA2(wavread('acordes_teste/EM1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/EM2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/EM3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Em chord_result_1 = DA2(wavread('acordes_teste/Em1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Em2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Em3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Eaum chord_result_1 = DA2(wavread('acordes_teste/Eaum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Eaum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Eaum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Edim chord_result_1 = DA2(wavread('acordes_teste/Edim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Edim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Edim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of FM chord_result_1 = DA2(wavread('acordes_teste/FM1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/FM2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/FM3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Fm chord_result_1 = DA2(wavread('acordes_teste/Fm1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Fm2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Fm3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Faum chord_result_1 = DA2(wavread('acordes_teste/Faum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Faum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Faum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Fdim chord_result_1 = DA2(wavread('acordes_teste/Fdim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Fdim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Fdim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of F#M chord_result_1 = DA2(wavread('acordes_teste/F#M1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/F#M2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/F#M3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of F#m chord_result_1 = DA2(wavread('acordes_teste/F#m1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/F#m2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/F#m3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of F#aum chord_result_1 = DA2(wavread('acordes_teste/F#aum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/F#aum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/F#aum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of F#dim chord_result_1 = DA2(wavread('acordes_teste/F#dim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/F#dim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/F#dim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of GM chord_result_1 = DA2(wavread('acordes_teste/GM1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/GM2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/GM3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Gm chord_result_1 = DA2(wavread('acordes_teste/Gm1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Gm2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Gm3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Gaum chord_result_1 = DA2(wavread('acordes_teste/Gaum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Gaum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Gaum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Gdim chord_result_1 = DA2(wavread('acordes_teste/Gdim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Gdim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Gdim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of G#M chord_result_1 = DA2(wavread('acordes_teste/G#M1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/G#M2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/G#M3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of G#m chord_result_1 = DA2(wavread('acordes_teste/G#m1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/G#m2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/G#m3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of G#aum chord_result_1 = DA2(wavread('acordes_teste/G#aum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/G#aum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/G#aum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of G#dim chord_result_1 = DA2(wavread('acordes_teste/G#dim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/G#dim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/G#dim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of AM chord_result_1 = DA2(wavread('acordes_teste/AM1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/AM2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/AM3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Am chord_result_1 = DA2(wavread('acordes_teste/Am1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Am2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Am3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Aaum chord_result_1 = DA2(wavread('acordes_teste/Aaum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Aaum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Aaum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Adim chord_result_1 = DA2(wavread('acordes_teste/Adim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Adim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Adim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of A#M chord_result_1 = DA2(wavread('acordes_teste/A#M1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/A#M2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/A#M3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of A#m chord_result_1 = DA2(wavread('acordes_teste/A#m1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/A#m2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/A#m3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of A#aum chord_result_1 = DA2(wavread('acordes_teste/A#aum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/A#aum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/A#aum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of A#dim chord_result_1 = DA2(wavread('acordes_teste/A#dim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/A#dim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/A#dim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of BM chord_result_1 = DA2(wavread('acordes_teste/BM1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/BM2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/BM3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Bm chord_result_1 = DA2(wavread('acordes_teste/Bm1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Bm2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Bm3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Baum chord_result_1 = DA2(wavread('acordes_teste/Baum1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Baum2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Baum3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); //Testing combinations of Bdim chord_result_1 = DA2(wavread('acordes_teste/Bdim1.wav')); chord = chord + 1; disp(chord) chord_result_2 = DA2(wavread('acordes_teste/Bdim2.wav')); chord = chord + 1; disp(chord) chord_result_3 = DA2(wavread('acordes_teste/Bdim3.wav')); chord = chord + 1; disp(chord) mputl(chord_result_1+';'+chord_result_2+';'+chord_result_3,file_results); mclose(file_results);
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//Example 4_5 page no:169 clc v=10*sin(%pi/2) disp(v,"1) Instantaneous voltage at 90 degree for first wave (volt)"); v=8*sin(%pi/4) disp(v,"2) Instantaneous voltage at 90 degree for second wave(volt)");//text book value is rounded to two digit
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clc; clear all; C=5.1*1e-12;//given capacitance fr=10*1e6;//given resonant frequency L=2*1e-6;//given L //part a Lt=1/(4*%pi*%pi*fr*fr*C);//new inductance disp(Lt,'new inductancetance for fr=10mhz is='); //part b L2=Lt-L;//required Ls disp(L2,'required series inductance is');
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// Example 3.2 clc; clear; close; // Given data format('v',6); R1= 2;// in kΩ Rf_min= 0; Rf_max= 100;// in kΩ // Formula Used : Af= 1+Rf/R1 Af_max= 1+Rf_max/R1;// maximum closed loop voltage gain Af_min= 1+Rf_min/R1;// minimum closed loop voltage gain disp(Af_max,"The maximum closed loop voltage gain is : "); disp(Af_min,"The minimum closed loop voltage gain is : ");
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clc; //Example 22.9 //page no 305 printf("\n Example 22.9 page no 305\n\n"); //water is flowing from an elevated reservoir through a conduit to a turbine at a lower level and out of the turbine through a similar conduit //refer to fig 22.2 //since the diameter of the conduit is the same at location 1 and 2 ,kinetic energy effects can be neglected and bernoulli eq. takes the form //P/rho + z(g/g_c) -h_s + h_f = 0 P1=30///pressure at point 1,psia z1=300//height of point 1,ft P2=18//pressure at point 2,psia z2=-10//height of point 2,ft rho=62.4//density m_dot=3600//mass flow rate,tons/hr W_dot =1000//output at the shaft of turbine,hp neta=0.9//efficiency of turbine h_s=W_dot*550*3600/(neta*m_dot*2000)// printf("\n h_s =%f ft.lbf/lb",h_s); //put this value in bernoulli eq. h_f=(P2-P1)*144/rho + (z2-z1) -h_s//frictional loss printf("\n frictional loss h_f=%f ft.lbf/lb",h_f)
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//Kunii D., Levenspiel O., 1991. Fluidization Engineering(II Edition). Butterworth-Heinemann, MA, pp 491 //Chapter-3, Example 4, Page 91 //Title: Prediction of flow regime //========================================================================================================== clear clc //INPUT rhos=1.5;//Density of Solid in g/cc uo1=40; uo2=80;//Superficial gas velocity in cm/s dp1=0.006; dp2=0.045;//Particle size in centimeter rhog1=1.5E-3; rhog2=1E-3; //Density of gas in g/cc myu1=2E-4; myu2=2.5E-4;//Viscosity of air in g/cm s g=980;//Acceleration due to gravity in square cm/s^2 //CALCULATION //for smaller particles dpstar1=dp1*((rhog1*(rhos-rhog1)*g)/myu1^2)^(1/3);//Calculation of dimensionless particle diamter Eq.(31) uostar1=uo1*((rhog1^2)/((myu1)*(rhos-rhog1)*g))^(1/3); uostar2=uo2*((rhog1^2)/((myu1)*(rhos-rhog1)*g))^(1/3);//Calculation of dimensionless superficial gas velocity Eq.(32) //for larger particles dpstar2=dp2*((rhog2*(rhos-rhog2)*g)/myu2^2)^(1/3);//Calculation of dimensionless particle diamter Eq.(31) uostar3=uo1*((rhog2^2)/((myu2)*(rhos-rhog2)*g))^(1/3); uostar4=uo2*((rhog2^2)/((myu2)*(rhos-rhog2)*g))^(1/3);//Calculation of dimensionless superficial gas velocity Eq.(32) //OUTPUT printf('\nFor particle of size %f centimeter',dp1); mprintf('\nThe dimensionless particle diameter = %f',dpstar1); mprintf('\nThe dimensionless superficial gas velocity = %fcm/s(for superficial gas velocity of %fcm/s)',uostar1,uo1); mprintf('\nThe dimensionless superficial gas velocity = %fcm/s(for superficial gas velocity of %fcm/s)',uostar2,uo2); mprintf('\n\nFrom Fig.16(page 89)comparing u*=%f vs dp*=%f',uostar1,dpstar1); mprintf('\nFor Superficial gas velocity =%f \nMode of Fluidization:Onset of turbulent fluidization in an ordinary bubbling bed',uo1); mprintf('\nFrom Fig.16(page 89)comparing u* =%f vs dp* =%f',uostar2,dpstar1); mprintf('\nFor Superficial gas velocity =%f \nMode of Fluidization:Fast fluidization(requires a circulating solid system)',uo2); printf('\n\nFor particle of size %f centimeter',dp2) mprintf('\nThe dimensionless particle diameter = %f',dpstar2); mprintf('\nThe dimensionless superficial gas velocity = %fcm/s(for superficial gas velocity of %fcm/s)',uostar3,uo1); mprintf('\nThe dimensionless superficial gas velocity = %fcm/s(for superficial gas velocity of %fcm/s)',uostar4,uo2); mprintf('\n\nFrom Fig.16(page 89)comparing u*=%f vs dp*=%f',uostar3,dpstar2); mprintf('\nFor Superficial gas velocity =%f \nMode of Fluidization:Bublling Fluidization',uo1); mprintf('\nFrom Fig.16(page 89)comparing u* =%f vs dp* =%f',uostar4,dpstar2); mprintf('\nFor Superficial gas velocity =%f \nMode of Fluidization:Bubbling Fluidization',uo2); //====================================END OF PROGRAM ======================================================
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//chapter 12 //example 12.14 //page 503 printf("\n") printf("given") vp=50*10^-3;Rl=50;Ve2=5;Vcc=12;Vbe=.7;hFE=70;hfe=100;R2=120*10^3;f1=150;R3=150*10^3;R1=5.6*10^3;R4=2.2*10^3; ip=vp/Rl disp("select Ie2>ip") Ie2=2*10^-3; R4=Ve2/Ie2//use standard 2.2Kohm R4=2.2*10^3; Ie2=Ve2/R4 Ic1=1*10^-3; Vr1=Vcc-(Vbe+Ve2) R1=Vr1/Ic1//use 5.6kohm and recalculate R1=5.6*10^3; Ic1=Vr1/R1 Ib1=Ic1/hFE hie=hfe*(26*10^-3/Ic1) hie2=hfe*((26*10^-3)/(2.27*10^-3)) Zi1=(R2*hie)/(R2+hie) Xc1=Zi1/10 C1=1/(2*3.14*f1*Xc1) Xc2=R3/100 C2=1/(2*3.14*f1*Xc2) Zo=(((hie2+R1)/hfe)*R4)/(((hie2+R1)/hfe)+R4) Xc3=Rl+Zo C3=1/(2*3.14*f1*Xc3)
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exa_2_13.sce
// Exa 2.13 clc; clear; close; // Given data AR= 100;// true value of resistance in ohm AI= 2;// true value of current in amp R= 0.2;// uncertainties in resistance in ohm I= 0.01;// uncertainties in current in amp PLR= R/AR*100;// percentage limiting error to resistance PLC= I/AI*100;// percentage limiting error to current P=AI^2*AR;// in watt LE_P= 2*PLC+PLR;// limiting error in the power dissipation disp("Power dissipation") disp(string(P-P*LE_P/100)+" to "+string(P+P*LE_P/100))
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//Example 5.35 //Newton Raphson Method //Page no. 203 clc;clear;close; deff('x=f(x)','x=x^3-30*x^2+2552') deff('x=f1(x)','x=3*x^2-60*x') //newton raphson printf('n\txn\t\t\f(xn)\t\tf1(xn)\t\tXn+1\t\tError\n') printf('-----------------------------------------------------------------------------------------------------\n') x0=10;e=0.00001 for i=1:4 x1=x0-f(x0)/f1(x0) e1=abs(x0-x1) printf(' %i\t%.10f\t%.10f\t%.10f\t%.10f\t%.10f\n',i-1,x0,f(x0),f1(x0),x1,e1) x0=x1; if abs(x0)<e then break; end end printf('\n\nThus the ball is submerged upto height of %.10f cm\n\n\n',x1)
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// Scilab Code Ex3.15:: Page-3.26 (2009) clc; clear; a = 0.25; // Slit width, cm lambda = 5890e-008; // Wavelength of light, cm f = 80; // Focal length of the lens, cm n = 2; // Order of diffraction // As for minima, theta = n*lambda/a and theta = x/f, solving for x x2 = 2*lambda*f/a; // Position of 2nd dark fringe, cm // As for maxima, theta = (2*n+1)*lambda/(2*a) and theta = x/f, solving for x x2_prime = 5*lambda*f/(2*a); // Position of 2nd bright fringe, cm delta_x = x2_prime-x2; // Distance between 2nd dark and next bright, cm printf("\nThe distance between 2nd dark and next bright fringe = %4.2e cm", delta_x); // Result // The distance between 2nd dark and next bright fringe = 9.42e-003 cm
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Ex3_8.sce
// Theory and Problems of Thermodynamics // Chapter 3 // Thermodynamic Properties of Fluids // Example 8 clear ;clc; //Given data V = 2 // Volume of Tank in m^3 P = 0.2 // Pressure in MPa V_f = 0.2 // Volume of liquid in m^3 v_f = 0.00106 // Specific volume of liquid in m^3/kg v_g = 0.8857 // Specific volume of vapor in m^3/kg m_f = V_f/v_f m_g = (V-V_f)/v_g X = m_g/(m_f+m_g) // Output Results mprintf('Mass of Liquid = %5.3f kg' ,m_f) mprintf('\n Mass of Vapor = %5.3f kg' ,m_g) mprintf('\n Quality of stream = %5.4f' ,X)
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clear; function y = f_analitica(x) //y = 70/9 * exp(-0.3*x) - 43/9 * exp(-1.2*x); y = -.5*x.^4 + 4*x.^3 -10*x.^2 + 8.5*x + 1; endfunction function dy = f(x, y) //dy = -1.2*y + 7*exp(-0.3*x) dy = -2*x.^3 + 12*x.^2 - 20*x + 8.5; endfunction function [x, y] = euler_basic(f, a, b, h, x0, y0) k = 1; x(k) = x0; y(k) = y0; for i = (a+h):h:(b) x(k+1) = x(k) + h; y(k+1) = y(k) + f(x(k), y(k))*h; k = k + 1; end endfunction function [x, y] = euler_modified(f, a, b, h, x0, y0) k = 1; x(k) = x0; y(k) = y0; for i = (a+h):h:(b) x(k+1) = x(k) + h; slope_euler = f(x(k), y(k)); y_KP1_euler = y(k) + slope_euler * h; slope_KP1_euler = f(x(k+1), y_KP1_euler); slope = (slope_euler + slope_KP1_euler)/2; y(k+1) = y(k) + slope*h; k = k + 1; end endfunction function [x, y] = euler_midpoint(f, a, b, h, x0, y0) k = 1; x(k) = x0; y(k) = y0; for i = (a+h):h:(b) xH = x(k) + h/2; yH = y(k) + f(x(k), y(k)) * h/2; slope = f(xH,yH); x(k+1) = x(k) + h; y(k+1) = y(k) + slope * h; k = k + 1; end endfunction function [x, y] = euler_RK3(f, a, b, h, x0, y0) k = 1; x(k) = x0; y(k) = y0; for i = (a+h):h:(b) k1 = f(x(k) , y(k) ); k2 = f(x(k) + h/2, y(k) + k1 * h/2 ); k3 = f(x(k) + h , y(k) - (k1-2*k2)*h); x(k+1) = x(k) + h; y(k+1) = y(k) + (1/6) * (k1+4*k2+k3) * h; k = k + 1; end endfunction function [x, y] = euler_RK4(f, a, b, h, x0, y0) k = 1; x(k) = x0; y(k) = y0; for i = (a+h):h:(b) k1 = f(x(k) , y(k) ); k2 = f(x(k) + h/2, y(k) + k1*h/2); k3 = f(x(k) + h/2, y(k) + k2*h/2); k4 = f(x(k) + h , y(k) + k3*h ); x(k+1) = x(k) + h; y(k+1) = y(k) + (1/6) * (k1+2*k2+2*k3+k4) * h; k = k + 1; end endfunction // Opções para a variável "method": euler_basic, euler_modified, euler_midpoint, euler_RK3 e euler_RK4 // Exemplos de uso: //plot_EDO(euler_midpoint, f, 0, 4, .5, 0, 1, f_analitica, .1) //plot_EDO(euler_RK4, f, 0, 4, .5, 0, 1, f_analitica, .1) function plot_EDO(method, f, a, b, h, x0, y0, f_analytics, h_analytics) [x, y] = method(f, a, b, h, x0, y0); t = a:h_analytics:b; plot(t, f_analytics(t)) plot(x, y, 'r*') xgrid; endfunction function plot_EDO_all_methods(f, a, b, h, x0, y0, f_analytics, h_analytics) methods = list(euler_basic, euler_modified, euler_midpoint, euler_RK3, euler_RK4); styleOfDots = list('bo', 'ro', 'g*', 'bx', 'r*'); legendDescriptions = ['Solução exata'; 'Euler'; 'Euler Modificado'; 'Ponto Médio'; 'Runge-Kutta3'; 'Runge-Kutta4']; if (length(methods) == length(styleOfDots)) then t = a:h_analytics:b; plot(t, f_analytics(t)) for (i=1:length(methods)) [x, y] = methods(i)(f, a, b, h, x0, y0); plot(x, y, styleOfDots(i)) end hl=legend(legendDescriptions); xgrid; end endfunction function dy = f_especifica(x, y) // Definir a função derivada específica para o problema // dy = ...; dy = x+y; // A expressão ( <-- )deve ser alterada!!! endfunction function y = f_analitica_especifica(x) // Definir a função analítica específica para o problema // y = ...; y = x;// A expressão deve ser alterada!!! endfunction // USO da função plot_EDO(f, a, b, h, x0, y0, f_analytics, h_analytics) // Explicação dos parâmetros: // f=f(x, y)=dy/dx; a=x_min; b=x_max; h=step; x0=initionDot; y0 = y(x0) // f : função derivada (idealmente, deve-se ser criada uma função própria para cada problema específico, modificando o modelo da função f_especifica) // a : limite inferior do intervalo do DOMÍNIO da função resposta (y(x)) // b : limite superior do intervalo do DOMÍNIO da função resposta (y(x)) // h : passo para cálculo dos pontos da função resposta (y(x)) no DOMÍNIO do intervalo [a, b] // x0 : condição inicial para o valor de x (coordenada x do ponto de partida para plotagem do gráfico de y(x)) // y0 : condição inicial para o valor de y(x0) (coordenada y do ponto de partida para plotagem do gráfico de y(x)) // f_analytics : função resposta analítica (idealmente, deve-se ser criada uma função própria para cada problema específico, modificando o modelo da função f_especifica) //SISTEMAS DE EQUAÇÕES DIFERENCIAIS //Computar as EDOs function dx1 = f1(t, x1, x2) //dy = (3/10) * x2 - (8/5) * x1; dx1 = -.5*x1; endfunction function dx2 = f2(t, x1, x2) //dz = (8/5) * x1 - (4/5) * x2; dx2 = 4 - .3*x2 - .1*x1; endfunction //Exemplo de uso da função resolveSystemODE: // ICs '==' [x1(startPoint) x2(startPoint) ... xn(startPoint)] function output = resolveSystemODERK4(listODEs, startPoint, endingPoint, step, ICs) systemOrder = length(listODEs); nRows = length(startPoint:step:endingPoint); nColumns = systemOrder + 1; output = zeros(nRows, nColumns); // Assign the first row of the OUTPUT matriz output(1, 1) = startPoint; for (i = 2:nColumns) output(1, i) = ICs(i-1); end // #Assign the first row of the OUTPUT matriz k1 = []; // k1s das n EDOs em ordem de ocorrência k2 = []; // k2s das n EDOs em ordem de ocorrência k3 = []; // k3s das n EDOs em ordem de ocorrência k4 = []; // k4s das n EDOs em ordem de ocorrência allKs = [k1; k2; k3; k4]; k = 1; aux_K1 = [', ' , '0' ,' * 1' ]; aux_K2 = [' + step/2, ' , 'allKs(1, iK)' ,' * step/2' ]; aux_K3 = [' + step/2, ' , 'allKs(2, iK)' ,' * step/2' ]; aux_K4 = [' + step, ' , 'allKs(3, iK)' ,' * step' ]; aux_Kn = [aux_K1; aux_K2; aux_K3; aux_K4]; for i = (startPoint + step):step:endingPoint // Número de iterações // Calculando todos os Ks for (b = 1:4) for (l = 1:systemOrder) text_aux = 'listODEs(l)( output(k, 1)' + aux_Kn(b, 1); iK = 1; for (m = 2:nColumns) iK = m-1; text_aux = text_aux + 'output(k, ' + string(m) + ') +' + string( evstr(aux_Kn(b, 2)) ) + aux_Kn(b, 3); if (m <> nColumns) text_aux = text_aux + ', '; end end text_aux = text_aux + ')'; allKs(b, l) = evstr(text_aux); //disp(allKs) end end // Calculando os Ts e XNs output(k+1, 1) = output(k, 1) + step; for (p = 1:systemOrder) slope6 = allKs(1, p) + 2*( allKs(2, p) + allKs(3, p) ) + allKs(4, p); output(k+1, p+1) = output(k, p+1) + (1/6) * slope6 * step; end k = k + 1; end // # Número de iterações endfunction //Exemplo de uso da função resolveSystemODE: //out = resolveSystemODEEulerB(list(f1, f2), 0, 2, .5, [4 6]) function output = resolveSystemODEEulerB(listODEs, startPoint,endingPoint, step, ICs) systemOrder = length(listODEs); nRows = length(startPoint:step:endingPoint); nColumns = systemOrder + 1; output = zeros(nRows, nColumns); // Assign the first row of the OUTPUT matriz output(1, 1) = startPoint; for (i = 2:nColumns) output(1, i) = ICs(i-1); end k = 1; for i = (startPoint + step):step:endingPoint output(k+1, 1) = output(k, 1) + step; for j = 2:nColumns text_aux = 'listODEs(j-1)('; for m = 1:nColumns text_aux = text_aux + 'output(k, ' + string(m) + ')'; if (m <> nColumns) text_aux = text_aux + ','; end end text_aux = text_aux + ')'; output(k+1, j) = output(k, j) + evstr(text_aux) * step; end k = k + 1; end endfunction //Para o exemplo do último slide, usar no console o seguinte //out1 = resolveSystemODEEulerB(list(f1, f2), 0, 2, .5, [4 6]) //out2 = resolveSystemODERK4(list(f1, f2), 0, 2, .5, [4 6])
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clc clf disp('13.4') x=[1:10]; y=[1 2 4 2 3 5 4 6 3 5]; plot(x,y,'r*'),xgrid() a=gca(); a.x_location = "origin"; a.y_location = "origin"; sleep(1200) z=[x;y] xi=1:0.25:10 yi=interpln(z,xi); plot(xi,yi,'m'),legend('initial','linear', 4), xgrid() sleep(1200) yi=interp1(x,y,xi,'nearest'); plot(xi,yi,'r'),legend('initial','nearest',4),xgrid() sleep(1200) yi=interp1(x,y,xi,'spline'); plot(xi,yi,axesflag=5),legend('initial','linear','nearest','spline',4),xgrid() xname('13.4')
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// exa 5.2 Pg 147 clc;clear;close; // Given Data w=400;//mm t=20;//mm sigma_t=90;// MPa tau=60;// MPa sigma_c=140;// MPa printf('\n Diameter of rivet, do = ') d0=6*sqrt(t);//mm (for t>8 mm) printf('%.2f mm',d0) d0=29;//mm (standard) printf('\n Standard diameter of rivet hole, do = %.f mm & corresponding diameter of rivet = 27 mm',d0) Pt=(w-d0)*t*sigma_t;//N max. tearing strength of plate Ps=1.75*%pi/4*d0**2*tau;// N (shearing strength of one rivet) n1=Pt/Ps;// no. of rivets n=ceil(n1); printf('\n no. of rivets, n = %.3f. Use n = %.f ',n1,n) t1=0.75*t;// mm t2=t1;// mm printf('\n thickness of inner butt strap, t1 = %.f mm', t1) printf('\n thickness of outer butt strap, t2 = %.f mm', t2) // section 1-1 P1=(w-d0)*t*sigma_t;//N // section 2-2 P2=(w-2*d0)*t*sigma_t+1.75*%pi/4*d0**2*tau;//N // section 3-3 P3=(w-3*d0)*t*sigma_t+1.75*3*%pi/4*d0**2*tau;//N // section 4-4 P4=(w-4*d0)*t*sigma_t+1.75*6*%pi/4*d0**2*tau;//N Ps=10*Ps;// N (shearing stress of all rivets) Pc=10*d0*t*sigma_c;// N (shearing stress of all rivets) Pj=P1;// N (strength f joint) P = w*t*sigma_t;// N (strength of solid plate) eta=P1/P*100; // % (efficiency of joint) printf('\n efficiency of joint = %.2f %%', eta) p1=3*d0+5;// mm (pitch of rivets) p=100;//mm (adopt for design) printf('\n pitch of rivets = %.f mm. Use %.f mm',p1,p) m1=1.5*d0;// mm (margin) m=50;//mm w=3*p+2*m;// mm printf('\n margin,\n m = %.1f mm. Use %.f mm', m1,m) printf('\n w = %.f mm',w) dis=2.5*d0;// mm printf('\n distance between rows = %.1f mm. Use 75 mm',dis)
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/3269/CH3/EX3.8/Ex3_8.sce
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// Example 3.8 clear all; clc; // 1 barn = 10^(-24) cm^2 // From the Figure 3.4 given in the textbook sigmae = 4.8*10^(-24); // Experimental cross section of carbon from 0.02eV to 0.01MeV // Assuming spherical shape and elstic scattering R = sqrt(sigmae/(4*%pi)); // Result printf('\n Radius of carbon nucleus = %3.1E cm\n',R);
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/1052/CH17/EX17.2/172.sce
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clc; //Example 17.2 //page no 201 printf("Example 17.2 page no 201\n\n"); rpm=1694//speed of fan q=12200//flow rate of q_a rpm_n=2100//new speed of fan q_n=q*(rpm_n/rpm)//new flow rate printf("\nnew flow rate q_n=%f acfm",q_n); //applyingeq 17.5 P=5//pressure ,in P_n=P*(rpm_n^2/rpm^2)//new pressure printf("\nnew pressureP_n=%f in H20",P_n); //required power is calculated using eq. 17.6 hp=9.25//power at 1694 speed hp_n=hp*(rpm_n^3/rpm^3)//new power required printf("\n new powerhp_n=%f bhp",hp_n);
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/3772/CH9/EX9.5/Ex9_5.sce
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// Problem no 9.5,Page no.235 clc;clear; close; L=4 //m //Length of column W=250 //KN //Safe Load FOS=5 //Factor of safety //d=0.8*D //Internal diameter is 0.8 times Extarnal Diameter sigma_c=550 //MPa //Compressive stress alpha=1*1600**-1 //constant //Calculations P=W*FOS //N //Crippling Load //A=%pi*4**-1(D**2-d**2) //m**2 //Area of hollow cyclinder //After substituting value of d we get //A=%pi*0.09*D**2 //I=%pi*64**-1*(D**4-d**4) //m**4 //Mo,ent Of Inertia //After substituting value of d we get d we get //I=0.009225*%pi*D**4 //K=(I*A**-1)**0.5 //Radius of Gyration //After substituting value of I and A and further simplifying we get //K=0.32*D //Now using the Relation we get //P=sigma_c*A*(1+alpha*(l_e*k)**2)**-1 //Rankines Formula //Now Substituting values in above equation we get //125*10**4=550*10**6*%pi*0.09*D**2*(1+1*1600**-1*((2*0.32)**2)**-1)**-1 //Further simplifying and rearranging we get //D**4-0.008038*D**2-0.0001962397=0 a=1 b=-0.008038 c=-0.0001962397 X=b**2-4*a*c D_1=((-b+X**0.5)*(2*a)**-1)**0.5*10**2 D_2=((-b-X**0.5)*(2*a)**-1)**0.5 //Thus Diameter cannot be negative, discard value of D_2 d=0.8*D_1 //Result printf("The Minimum Diameter is %.2f",d);printf(" cm")
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/360 krunker strafes .sce
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360 krunker strafes .sce
Name=360 krunker strafes PlayerCharacters=Character Profile BotCharacters=Quaker Bot.bot;Quaker Bot.bot;Quaker Bot.bot;Quaker Bot.bot IsChallenge=true Timelimit=60.0 PlayerProfile=Character Profile AddedBots=Quaker Bot.bot;Quaker Bot.bot PlayerMaxLives=0 BotMaxLives=0;0 PlayerTeam=1 BotTeams=0;0 MapName=flat_field_mini.map MapScale=5.0 BlockProjectilePredictors=true BlockCheats=true InvinciblePlayer=true InvincibleBots=false Timescale=1.0 BlockHealthbars=false TimeRefilledByKill=0.0 ScoreToWin=100000.0 ScorePerDamage=0.0 ScorePerKill=1.0 ScorePerMidairDirect=0.0 ScorePerAnyDirect=0.0 ScorePerTime=0.0 ScoreLossPerDamageTaken=0.0 ScoreLossPerDeath=0.0 ScoreLossPerMidairDirected=0.0 ScoreLossPerAnyDirected=0.0 ScoreMultAccuracy=false ScoreMultDamageEfficiency=false ScoreMultKillEfficiency=false GameTag= WeaponHeroTag=LG DifficultyTag=4 AuthorsTag=Igglez BlockHitMarkers=false BlockHitSounds=false BlockMissSounds=true BlockFCT=false Description=Close tracking training on a slide-hopping target (modified from close krunker strafes) GameVersion=2.0.2.0 ScorePerDistance=0.0 MBSEnable=false MBSTime1=0.25 MBSTime2=0.5 MBSTime3=0.75 MBSTime1Mult=1.0 MBSTime2Mult=2.0 MBSTime3Mult=3.0 MBSFBInstead=false MBSRequireEnemyAlive=false LockFOVRange=false LockedFOVMin=60.0 LockedFOVMax=120.0 LockedFOVScale=Clamped Horizontal [Aim Profile] Name=At Feet MinReactionTime=0.3 MaxReactionTime=0.4 MinSelfMovementCorrectionTime=0.001 MaxSelfMovementCorrectionTime=0.05 FlickFOV=30.0 FlickSpeed=1.5 FlickError=15.0 TrackSpeed=3.5 TrackError=3.5 MaxTurnAngleFromPadCenter=75.0 MinRecenterTime=0.3 MaxRecenterTime=0.5 OptimalAimFOV=30.0 OuterAimPenalty=1.0 MaxError=40.0 ShootFOV=15.0 VerticalAimOffset=-200.0 MaxTolerableSpread=5.0 MinTolerableSpread=1.0 TolerableSpreadDist=2000.0 MaxSpreadDistFactor=2.0 AimingStyle=Original ScanSpeedMultiplier=1.0 MaxSeekPitch=30.0 MaxSeekYaw=30.0 AimingSpeed=5.0 MinShootDelay=0.3 MaxShootDelay=0.6 [Aim Profile] Name=Low Skill MinReactionTime=0.35 MaxReactionTime=0.45 MinSelfMovementCorrectionTime=0.001 MaxSelfMovementCorrectionTime=0.05 FlickFOV=30.0 FlickSpeed=1.5 FlickError=20.0 TrackSpeed=3.0 TrackError=5.0 MaxTurnAngleFromPadCenter=75.0 MinRecenterTime=0.3 MaxRecenterTime=0.5 OptimalAimFOV=30.0 OuterAimPenalty=1.0 MaxError=60.0 ShootFOV=25.0 VerticalAimOffset=0.0 MaxTolerableSpread=5.0 MinTolerableSpread=1.0 TolerableSpreadDist=2000.0 MaxSpreadDistFactor=2.0 AimingStyle=Original ScanSpeedMultiplier=1.0 MaxSeekPitch=30.0 MaxSeekYaw=30.0 AimingSpeed=5.0 MinShootDelay=0.3 MaxShootDelay=0.6 [Aim Profile] Name=Default MinReactionTime=0.3 MaxReactionTime=0.4 MinSelfMovementCorrectionTime=0.001 MaxSelfMovementCorrectionTime=0.05 FlickFOV=30.0 FlickSpeed=1.5 FlickError=15.0 TrackSpeed=3.5 TrackError=3.5 MaxTurnAngleFromPadCenter=75.0 MinRecenterTime=0.3 MaxRecenterTime=0.5 OptimalAimFOV=30.0 OuterAimPenalty=1.0 MaxError=40.0 ShootFOV=15.0 VerticalAimOffset=0.0 MaxTolerableSpread=5.0 MinTolerableSpread=1.0 TolerableSpreadDist=2000.0 MaxSpreadDistFactor=2.0 AimingStyle=Original ScanSpeedMultiplier=1.0 MaxSeekPitch=30.0 MaxSeekYaw=30.0 AimingSpeed=5.0 MinShootDelay=0.3 MaxShootDelay=0.6 [Bot Profile] Name=Quaker Bot DodgeProfileNames=Long Strafes Jumping;Long Strafes Jumping;Long Strafes Jumping;Long Strafes Jumping DodgeProfileWeights=2.0;3.0;1.0;2.0 DodgeProfileMaxChangeTime=5.0 DodgeProfileMinChangeTime=1.0 WeaponProfileWeights=1.0;0.0;1.0;1.0;1.0;1.0;1.0;1.0 AimingProfileNames=At Feet;At Feet;Low Skill;Default;Default;Default;Default;Default WeaponSwitchTime=3.0 UseWeapons=true CharacterProfile=Quaker SeeThroughWalls=false NoDodging=false NoAiming=false AbilityUseTimer=0.1 UseAbilityFrequency=1.0 UseAbilityFreqMinTime=0.3 UseAbilityFreqMaxTime=0.6 ShowLaser=false LaserRGB=X=1.000 Y=0.300 Z=0.000 LaserAlpha=1.0 [Character Profile] Name=Character Profile MaxHealth=100.0 WeaponProfileNames=LG;;;;;;; MinRespawnDelay=0.1 MaxRespawnDelay=0.1 StepUpHeight=75.0 CrouchHeightModifier=0.5 CrouchAnimationSpeed=1.0 CameraOffset=X=0.000 Y=0.000 Z=0.000 HeadshotOnly=false DamageKnockbackFactor=8.0 MovementType=Base MaxSpeed=1000.0 MaxCrouchSpeed=500.0 Acceleration=16000.0 AirAcceleration=16000.0 Friction=8.0 BrakingFrictionFactor=2.0 JumpVelocity=800.0 Gravity=0.0 AirControl=0.25 CanCrouch=true CanPogoJump=false CanCrouchInAir=false CanJumpFromCrouch=false EnemyBodyColor=X=255.000 Y=0.000 Z=0.000 EnemyHeadColor=X=255.000 Y=255.000 Z=255.000 TeamBodyColor=X=0.000 Y=0.000 Z=255.000 TeamHeadColor=X=255.000 Y=255.000 Z=255.000 BlockSelfDamage=false InvinciblePlayer=false InvincibleBots=false BlockTeamDamage=false AirJumpCount=0 AirJumpVelocity=800.0 MainBBType=Cylindrical MainBBHeight=230.0 MainBBRadius=55.0 MainBBHasHead=true MainBBHeadRadius=45.0 MainBBHeadOffset=0.0 MainBBHide=false ProjBBType=Cylindrical ProjBBHeight=230.0 ProjBBRadius=55.0 ProjBBHasHead=true ProjBBHeadRadius=45.0 ProjBBHeadOffset=0.0 ProjBBHide=true HasJetpack=false JetpackActivationDelay=0.2 JetpackFullFuelTime=4.0 JetpackFuelIncPerSec=1.0 JetpackFuelRegensInAir=false JetpackThrust=6000.0 JetpackMaxZVelocity=400.0 JetpackAirControlWithThrust=0.25 AbilityProfileNames=;;; HideWeapon=false AerialFriction=0.0 StrafeSpeedMult=1.0 BackSpeedMult=1.0 RespawnInvulnTime=0.0 BlockedSpawnRadius=0.0 BlockSpawnFOV=0.0 BlockSpawnDistance=0.0 RespawnAnimationDuration=0.1 AllowBufferedJumps=false BounceOffWalls=false LeanAngle=0.0 LeanDisplacement=0.0 AirJumpExtraControl=0.0 ForwardSpeedBias=1.0 HealthRegainedonkill=0.0 HealthRegenPerSec=0.0 HealthRegenDelay=0.0 JumpSpeedPenaltyDuration=0.0 JumpSpeedPenaltyPercent=0.25 ThirdPersonCamera=false TPSArmLength=500.0 TPSOffset=X=0.000 Y=125.000 Z=40.000 BrakingDeceleration=2048.0 VerticalSpawnOffset=0.0 TerminalVelocity=0.0 CharacterModel=None CharacterSkin=Default SpawnXOffset=0.0 SpawnYOffset=0.0 InvertBlockedSpawn=false ViewBobTime=0.0 ViewBobAngleAdjustment=0.0 ViewBobCameraZOffset=0.0 ViewBobAffectsShots=false IsFlyer=false FlightObeysPitch=false FlightVelocityUp=800.0 FlightVelocityDown=800.0 [Character Profile] Name=Quaker MaxHealth=275.0 WeaponProfileNames=;;;;;;; MinRespawnDelay=0.001 MaxRespawnDelay=0.001 StepUpHeight=75.0 CrouchHeightModifier=0.5 CrouchAnimationSpeed=2.0 CameraOffset=X=0.000 Y=0.000 Z=80.000 HeadshotOnly=false DamageKnockbackFactor=0.0 MovementType=Base MaxSpeed=2600.0 MaxCrouchSpeed=500.0 Acceleration=100000.0 AirAcceleration=16000.0 Friction=4.0 BrakingFrictionFactor=2.0 JumpVelocity=1150.0 Gravity=3.0 AirControl=0.0 CanCrouch=true CanPogoJump=false CanCrouchInAir=true CanJumpFromCrouch=false EnemyBodyColor=X=0.771 Y=0.000 Z=0.000 EnemyHeadColor=X=1.000 Y=1.000 Z=1.000 TeamBodyColor=X=1.000 Y=0.888 Z=0.000 TeamHeadColor=X=1.000 Y=1.000 Z=1.000 BlockSelfDamage=false InvinciblePlayer=false InvincibleBots=false BlockTeamDamage=false AirJumpCount=0 AirJumpVelocity=0.0 MainBBType=Cylindrical MainBBHeight=280.0 MainBBRadius=70.0 MainBBHasHead=true MainBBHeadRadius=70.0 MainBBHeadOffset=-30.0 MainBBHide=false ProjBBType=Cylindrical ProjBBHeight=230.0 ProjBBRadius=70.0 ProjBBHasHead=true ProjBBHeadRadius=300.0 ProjBBHeadOffset=0.0 ProjBBHide=true HasJetpack=false JetpackActivationDelay=0.2 JetpackFullFuelTime=4.0 JetpackFuelIncPerSec=1.0 JetpackFuelRegensInAir=false JetpackThrust=6000.0 JetpackMaxZVelocity=400.0 JetpackAirControlWithThrust=0.25 AbilityProfileNames=;;; HideWeapon=true AerialFriction=0.25 StrafeSpeedMult=1.0 BackSpeedMult=1.0 RespawnInvulnTime=0.0 BlockedSpawnRadius=700.0 BlockSpawnFOV=0.0 BlockSpawnDistance=0.0 RespawnAnimationDuration=0.0 AllowBufferedJumps=true BounceOffWalls=true LeanAngle=0.0 LeanDisplacement=0.0 AirJumpExtraControl=0.0 ForwardSpeedBias=1.0 HealthRegainedonkill=0.0 HealthRegenPerSec=0.0 HealthRegenDelay=0.0 JumpSpeedPenaltyDuration=0.0 JumpSpeedPenaltyPercent=0.0 ThirdPersonCamera=false TPSArmLength=300.0 TPSOffset=X=0.000 Y=150.000 Z=150.000 BrakingDeceleration=2048.0 VerticalSpawnOffset=0.0 TerminalVelocity=0.0 CharacterModel=None CharacterSkin=Default SpawnXOffset=0.0 SpawnYOffset=0.0 InvertBlockedSpawn=false ViewBobTime=0.0 ViewBobAngleAdjustment=0.0 ViewBobCameraZOffset=0.0 ViewBobAffectsShots=false IsFlyer=false FlightObeysPitch=false FlightVelocityUp=800.0 FlightVelocityDown=800.0 [Dodge Profile] Name=Long Strafes Jumping MaxTargetDistance=3000.0 MinTargetDistance=0.0 ToggleLeftRight=true ToggleForwardBack=true MinLRTimeChange=0.5 MaxLRTimeChange=3.0 MinFBTimeChange=0.5 MaxFBTimeChange=1.5 DamageReactionChangesDirection=false DamageReactionChanceToIgnore=0.5 DamageReactionMinimumDelay=0.125 DamageReactionMaximumDelay=0.25 DamageReactionCooldown=1.0 DamageReactionThreshold=0.0 DamageReactionResetTimer=0.1 JumpFrequency=0.5 CrouchInAirFrequency=0.0 CrouchOnGroundFrequency=0.0 TargetStrafeOverride=Ignore TargetStrafeMinDelay=0.125 TargetStrafeMaxDelay=0.25 MinProfileChangeTime=0.0 MaxProfileChangeTime=0.0 MinCrouchTime=0.3 MaxCrouchTime=0.6 MinJumpTime=0.1 MaxJumpTime=0.1 LeftStrafeTimeMult=1.0 RightStrafeTimeMult=1.0 StrafeSwapMinPause=0.0 StrafeSwapMaxPause=0.0 BlockedMovementPercent=0.5 BlockedMovementReactionMin=0.125 BlockedMovementReactionMax=0.2 WaypointLogic=Ignore WaypointTurnRate=200.0 MinTimeBeforeShot=0.15 MaxTimeBeforeShot=0.25 IgnoreShotChance=0.0 ForwardTimeMult=1.0 BackTimeMult=1.0 DamageReactionChangesFB=false [Weapon Profile] Name=LG Type=Hitscan ShotsPerClick=1 DamagePerShot=6.0 KnockbackFactor=2.0 TimeBetweenShots=0.046 Pierces=false Category=FullyAuto BurstShotCount=1 TimeBetweenBursts=0.5 ChargeStartDamage=10.0 ChargeStartVelocity=X=500.000 Y=0.000 Z=0.000 ChargeTimeToAutoRelease=2.0 ChargeTimeToCap=1.0 ChargeMoveSpeedModifier=1.0 MuzzleVelocityMin=X=2000.000 Y=0.000 Z=0.000 MuzzleVelocityMax=X=2000.000 Y=0.000 Z=0.000 InheritOwnerVelocity=0.0 OriginOffset=X=0.000 Y=0.000 Z=0.000 MaxTravelTime=5.0 MaxHitscanRange=100000.0 GravityScale=1.0 HeadshotCapable=true HeadshotMultiplier=2.0 MagazineMax=0 AmmoPerShot=1 ReloadTimeFromEmpty=0.5 ReloadTimeFromPartial=0.5 DamageFalloffStartDistance=100000.0 DamageFalloffStopDistance=100000.0 DamageAtMaxRange=7.0 DelayBeforeShot=0.0 ProjectileGraphic=Ball VisualLifetime=0.05 BounceOffWorld=false BounceFactor=0.0 BounceCount=0 HomingProjectileAcceleration=0.0 ProjectileEnemyHitRadius=1.0 CanAimDownSight=false ADSZoomDelay=0.0 ADSZoomSensFactor=0.7 ADSMoveFactor=1.0 ADSStartDelay=0.0 ShootSoundCooldown=0.08 HitSoundCooldown=0.08 HitscanVisualOffset=X=0.000 Y=0.000 Z=-80.000 ADSBlocksShooting=false ShootingBlocksADS=false KnockbackFactorAir=4.0 RecoilNegatable=false DecalType=0 DecalSize=30.0 DelayAfterShooting=0.0 BeamTracksCrosshair=true AlsoShoot= ADSShoot= StunDuration=0.0 CircularSpread=true SpreadStationaryVelocity=0.0 PassiveCharging=false BurstFullyAuto=true FlatKnockbackHorizontal=0.0 FlatKnockbackVertical=0.0 HitscanRadius=0.0 HitscanVisualRadius=6.0 TaggingDuration=0.0 TaggingMaxFactor=1.0 TaggingHitFactor=1.0 RecoilCrouchScale=1.0 RecoilADSScale=1.0 PSRCrouchScale=1.0 PSRADSScale=1.0 ProjectileAcceleration=0.0 AccelIncludeVertical=true AimPunchAmount=0.0 AimPunchResetTime=0.05 AimPunchCooldown=0.5 AimPunchHeadshotOnly=false AimPunchCosmeticOnly=true MinimumDecelVelocity=0.0 PSRManualNegation=false PSRAutoReset=true AimPunchUpTime=0.05 AmmoReloadedOnKill=0 CancelReloadOnKill=false FlatKnockbackHorizontalMin=0.0 FlatKnockbackVerticalMin=0.0 ADSScope=No Scope ADSFOVOverride=72.099998 ADSFOVScale=Overwatch ADSAllowUserOverrideFOV=true IsBurstWeapon=false ForceFirstPersonInADS=true ZoomBlockedInAir=false ADSCameraOffsetX=0.0 ADSCameraOffsetY=0.0 ADSCameraOffsetZ=0.0 QuickSwitchTime=0.1 WeaponModel=Heavy Surge Rifle WeaponAnimation=Primary UseIncReload=false IncReloadStartupTime=0.0 IncReloadLoopTime=0.0 IncReloadAmmoPerLoop=1 IncReloadEndTime=0.0 IncReloadCancelWithShoot=true WeaponSkin=Default ProjectileVisualOffset=X=0.000 Y=0.000 Z=0.000 SpreadDecayDelay=0.0 ReloadBeforeRecovery=true 3rdPersonWeaponModel=Pistol 3rdPersonWeaponSkin=Default ParticleMuzzleFlash=None 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//example 7 //work and heat transfer clear clc P2=500 //final pressure in cylinder in kPa P1=100 //initial pressure in cylinder in kPa T1=20+273.2 //initial temperature inside cylinder in Kelvins n=1.3 T2=(T1)*(P2/P1)^((n-1)/n) //final temperature inside cylinder in K R=0.2968 //gas constant in kJ/kg-K w12=R*(T2-T1)/(1-n) //work in kJ/kg Cvo=0.745 //specific heat at constant volume in kJ/kg-K q12=Cvo*(T2-T1)+w12 //heat transfer in kJ/kg printf(" \n hence,work done is w12=%.1f kJ/kg.\n",w12) printf("\n and heat transfer are q12=%.1f kJ/kg.\n",q12)
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clear; clc; //Example - 11.4 //Page number - 387 printf("Example - 11.4 and Page number - 387\n\n"); //Given //H = a*x_1 + b*x_2 +c*x_1*x_2 //The values of the constants are a = 15000;//[J/mol] b = 20000;//[J/mol] c = -2000;//[J/mol] //(1) //Enthalpy of pure component 1 = H1 is obtained at x_2 = 0, thus x_2 = 0; x_1 = 1; H1 = a*x_1 + b*x_2 +c*x_1*x_2;//[J/mol] printf("(a).The enthalpy of pure component 1 is %f J/mol\n",H1); //Similarly for component 2, //Enthalpy of pure component 2 = H2 is obtained at x_1 = 0, thus x_1_prime = 0; x_2_prime = 1; H2 = a*x_1_prime + b*x_2_prime +c*x_1_prime*x_2_prime;//[J/mol] printf(" The enthalpy of pure component 2 is %f J/mol\n\n",H2); //(b) //This part involves proving a relation in which no mathematics and no calculations are involved. //For prove refer to this example 11.4 on page number 387 of the book. //(c) //From part (b), we have the relation //H1_bar = a + c*(x_2^(2)) //H2_bar = b + c*(x_1^(2)) //For enthalpy of component 1 at infinite dilution, x_1 approach 0 and thus x_2 approach 1, therefore x_1_c = 0; x_2_c = 1; H1_infinite = a + c*(x_2_c^(2));//[cm^(3)/mol] printf("(C).The enthalpy of componenet 1 at infinite dilution (at x_1 = 0) is %f J/mol\n",H1_infinite); //At x_1 = 0.2 x_1_c1 = 0.2; x_2_c1 = 0.8; H1_bar_c1 = a + c*(x_2_c1^(2));//[J/mol] printf(" The enthalpy of componenet 1 at (at x_1 = 0.2) is %f J/mol\n",H1_bar_c1); //At x_1 = 0.8 x_1_c2 = 0.8; x_2_c2 = 0.2; H1_bar_c2 = a + c*(x_2_c2^(2));//[J/mol] printf(" The enthalpy of componenet 1 at (at x_1 = 0.8) is %f J/mol",H1_bar_c2); //As x_1 increases, 'H1_bar' approaches the value of 'H1' //(d) //This part involves proving a relation in which no mathematics and no calculations are involved. //For prove refer to this example 11.4 on page number 387 of the book.
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//Page Number: 332 //Example 6.4 clc; //Given a=(4.4*%pi)/180; //radians c=3D+8 //m/s f=8D+9; //Hz al=2; //Np/m //Phase velocity vp=c*sin(a); //Propogation constant be=(2*%pi*f)/vp; gam=al+(%i*be); disp(gam,'Propogation constant:');
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clear //Given l=5500*10**-10 d=0.01 //Calculation // a=l/d b=asin(a)*180/3.14 //Result printf("\n Angular deflection is %0.4f Degree",b)
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clc // initialization of variables clear Mo=96 //kN P=120 //kN b1=150 //mm h1=60 //mm b2=120 //mm h2=50 //mm b3=b1 h3=40 //mm ro=80 //mm r1=140 //mm r2=260 //mm r3=300 //mm // calculations Mo=Mo*10^6 // N.mm P=P*10^3 // N A=b1*h1+b2*h2+b3*h3 Am=b1*log(r1/ro)+h2*log(r2/r1)+b3*log(r3/r2) R=(b1*h1*110+b2*h2*200+b3*h3*280)/A Mx=Mo+P*R r=80 //mm S_th=P/A+(Mx*(A-r*Am))/(A*r*(R*Am-A)) A1=9000 //mm^2 r1=140 //mm t=50 //mm Am1=b1*log(r1/ro) N=120000 S_rr=A1*N/(A*t*r1) + (A*Am1-A1*Am)*Mx/(t*r1*A*(R*Am-A)) printf('Circumferential stress is %.2f MPa',S_th) printf('\n Radial stress at B1 is %.2f MPa',S_rr) // to find radial stress at C; A1=b1*h1+b2*h2 Am1=b1*log(r1/ro)+h2*log(r2/r1) r1=260 //mm t=50 //mm S_rr=A1*N/(A*t*r1) + (A*Am1-A1*Am)*Mx/(t*r1*A*(R*Am-A)) printf('\n Radial stress at C1 is %.2f MPa',S_rr)
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clear; xdel; filename = "son2"; s1 = loadwave(filename+"_code.wav"); s1 = s1(1,:); // mono ou voie 1 si stereo //plot(s); fmin = 20; fmax = 20000; fs = 44100; // frq = 44kHz // echantillonnage n = 1/fs * size(s1,'c'); // duree en s //analyze(s1,fmin,fmax,rate=fs); //mapsound(s1,0.1,fmin,fmax,simpl=1,rate=fs); t = soundsec(n, fs); fM = 12800; // frq porteuse fc = fM; // frq coupure filtre passe-bas // filtre passe-bas avec frequence coupure 12800 Hz [hz]=iir(15,'lp','ellip',[fc/fs 0],[1E-4 1E-4]); s2 = flts(s1,hz); //analyze(s2,fmin,fmax,rate=fs); // modulation AM avec porteuse 12800 Hz s3 = s2.*cos(2*%pi*fM*t); //analyze(s3,fmin,fmax,rate=fs); // filtre passe-bas avec frequence coupure 12800 Hz // (c'est le meme filtre) s4 = flts(s3,hz); //analyze(s4,fmin,fmax,rate=fs); //mapsound(s4,0.1,fmin,fmax,simpl=1,rate=fs); // sauvegarde du son savewave(filename+"_decode.wav",s4,fs);
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function b = probset1(A) m = size(A, 'r') n = size(A, 'c') if m == n then b = zeros(n, 1) [A, x] = solvelinear(A, b) b = basis(A) else error("The matrix is not square.") end endfunction function [conds, errs, iter] = probset2(n) conds = zeros(n, 1) errs = [] for i = 2:n h = hilbert(i) conds(i) = cond(h) x = ones(i, 1) b = h * x [val, xp] = solvelinear(h, b) errs(i - 1, 1) = norm(x - xp) / norm(x) [xgs, iter(i - 1)] = gaussseidel(h, b) errs(i - 1, 2) = norm(x - xgs) / norm(x) end endfunction function [x, a1, a2, a3] = probset3(n, m) x = ones(n, 1) for i = 1:n x(i) = (i - 1)/(n - 1) end a1 = ones(m, 1) a1 = normal_run(x, a1) a2 = ones(m, 1) for j = 0:m-1 a2(j + 1) = (-1)^j end a2 = normal_run(x, a2) a3 = zeros(m, 1) a3(1) = 1 a3(m) = 1 a3 = normal_run(x, a3) endfunction function an = normal_run(x, a) an = a v = monomial(x, size(a, 'r')) for i=1:3 y = polynomial(x, a) an(:, 1 + i) = normal_lu(v, y) an(:, 4 + i) = normal_qr(v, y) end endfunction function at = normal_lu(v, y) vp = v' * v yp = v' * y at = lu_solve(vp, yp) endfunction function aq = normal_qr(v, y) [q, r] = gramschmidt(v) aq = backsub(r, q' * y) endfunction
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clc //Example 11.6 //Calculate the Average power printf("Given") disp('Resistor value is 4 ohm, i1=2*cos(10t)-3*cos(20t) A') R=4;im1=2;im2=-3; //Let P be the average power delievered P=0.5*im1^2*R+0.5*im2^2*R printf("Average power=%d W",P)
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clc clear //Inputs //The Values in the program are as follows: //Temperature in Celcius converted to Kelvin(by adding 273) //Pressure in bar converted to kPa (by multiplying 100) //Volume in m^3 //Value of R,Cp and Cv in kJ/kg K P1=150; T1=17+273; P2=750; n=1.3; m=1; R=0.287; Cp=1.001; //Calculations T2=T1*((P2/P1)^((n-1)/n)); printf('The final temperature: %2.1f K',T2); printf('\n'); W=m*R*(T1-T2)/(n-1); printf('Work done: %2.2f kJ/kg',W); printf('\n'); Cv=Cp-R; U=m*Cv*(T2-T1); printf('Change in internal energy: %2.2f kJ/kg',U); printf('\n'); G=Cp/Cv; Q=((G-n)/(G-1))*W; printf('Amount of heat transfer: %2.2f kJ/kg',Q); printf('\n'); H=m*Cp*(T2-T1); printf('Change in enthalpy: %2.2f kJ/kg',H); printf('\n');
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clc; clear all; //chapter 4 //page no 125 //example 4.7 //misprinted example number pulse_width=2*10^-6; //second rise_time=10*10^-9; //second B=.5/pulse_width; //in Hz mprintf('(a) The aproximate bandwidth for coarse reproduction is B=%i KHz\n',B*10^-3) B=.5/rise_time; mprintf(' (b) The aproximate bandwidth for fine reproduction is B=%i MHz\n',B*10^-6)
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//chapter 2 //frequency=100 MHz printf("\n"); frequency=100*10^6; lamda=3*10^8/frequency; leng=lamda/2; printf("the length of antenna is %gm",leng); Rrad=73; Im=25; Prad=Rrad*0.5*Im^2; printf("\nthe power radiated is %gW",Prad);
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//Example 6_1 clc; clear; close; format('v',5); //given data : I0=10;//micro A Vz=100;//V R=1.5;//kohm V=45;//V ///Part(a) I=V/R;//mA(neglecting diode threshold voltage) //I=I0*(exp(38.4*V)-1)//Diode Current Equation Vd=(log(I*10^-3/(I0*10^-6)+1))/38.4;//V(Diode Voltage) //Now calculating I again I=(V-Vd)/R;//mA disp(I,"(a) If diode is forward biased, Current(mA)"); //Part(b) Vd=-V;//V(for reverse polarity of battery) I=-I0;//micro A //Voltage drop across resistor neglected disp(I,"(b) If battery inserted with reverse polarity, Current(micro A)"); //Part(c) Vz=10;//V //in forward direction behaviour will remain same I=V/R;//mA(neglecting diode threshold voltage) //I=I0*(exp(38.4*V)-1)//Diode Current Equation Vd=(log(I*10^-3/(I0*10^-6)+1))/38.4;//V(Diode Voltage) //Now calculating I again I=(V-Vd)/R;//mA disp(I,"(c) If diode is forward biased, Current(mA)"); //reverse direction //load line dataV=30;// V=30;//V I=-30;//mA V1=20;//V//from Load Line Idash=I*V1/V;///A disp(Idash,"(c) If battery inserted with reverse polarity, Current(mA)"); //Answer in the book is not accurate,
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clc //initialisation of variables W= 145 //lb/cu ft M= 500 //lb W1= 64 //lb/cu ft //CALCULATIONS dW= W-W1 V= M/dW //RESULTS printf ('Volume of concrete = %.1f cu ft ',V)
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clc //initialization of varaibles x=0.97 P=100 //psia //calculations disp("From table 2,") hf=298.4 hfg=888.8 hx=hf+x*hfg hg=1187.2 hx2=hg-(1-x)*hfg //results printf("Accurate Enthalpy = %.1f B/lb",hx2) printf("\n Enthalpy = %d B/lb")
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//chapter 18 //example 18.8 //page 778 printf("\n") printf("given") Vo=12;hFE1=20;hFE2=50;Il=250*10^-3; Vz=.75*Vo Vz=9.1;//use standard value for 1N757 diode Iz1=10*10^-3; R1=(Vo-Vz)/Iz1 I3=1*10^-3; disp(" when V0=12V(moving contact at top of R5)") R3=(Vo-Vz)/I3 R=Vz/I3 disp(" when Vo=15V moving contact at bottom of R5") Vo=15; I3=Vo/(R+R3) R4=Vz/I3 R5=R-R4 Ir6=.5*10^-3; R6=Vo/Ir6 disp(" op-amp output current") Ib2=Il/(hFE1*hFE2)
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//Example 3.3, Page 87 clc //For electron m1=9.1*10^-31//in kg v=300//in m/s h=6.6*10^-34//in joule-sec p1=m1*v//delta v delta_p1=.0001*p1//m*delata_v in kg-m/sec delta_x1=(h)/(4*%pi*delta_p1) printf("\n Position of electron %e m",delta_x1) //For bullet m2=0.05//in kg p2=m2*v delta_p2=0.0001*p2//in kg-m/s delta_x2=(h)/(4*%pi*delta_p2) printf("\n Position of bullet %e m",delta_x2)
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clc; disp("Example 4.18") density=850 // in kg/m^3 mew= 0.0005 // in kg/ms d= 0.0525 // diameter in m G= 7620 // in kg/m^2/s U=G/density Re=800000 f= 0.0014+(0.125/(Re^0.32)) v= mew/density m= 5*v/(U*((f/2)^0.5)) disp(m,"Laminar sub layer thickness is") tau= f*density*U*U/2 disp(tau,"Wall shear stress is ")
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clc //Variable Initialisation Ea=230//Input Voltage of motor in volts Ia=50//Armature Current in Ampere Ra=0.4//Armature resistance in ohm N1=800//Rated Speed of Motor in rpm //Solution T=poly(0,'T') W=2*%pi*N1/60 Eb=Ea-(Ia*Ra) K=Eb/W d1=0.3 W1=((d1*Ea)/K)-(Ra/(K^2))*T d2=0.6 W2=((d2*Ea)/K)-(Ra/(K^2))*T d3=0.7 W3=((d3*Ea)/K)+(Ra/(K^2))*T d4=0.4 W4=((d4*Ea)/K)+(Ra/(K^2))*T disp(W1,'Speed in terms of torque for motoring operation for duty ratio 0.3') disp(W2,'Speed in terms of torque for motoring operation for duty ratio 0.6') disp(W3,'Speed in terms of torque for Braking operation for duty ratio 0.7') disp(W4,'Speed in terms of torque for Braking operation for duty ratio 0.4')
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// Exa 1.20 clc; clear; close; // Given data format('v',7) V_BE=0.7;// in volt V_CC=5;// in volt V_EE=-5;// in volt Bita=100; R=18.6;// in k ohm R= R*10^3;// in ohm I2= (V_CC-V_BE-V_EE)/R;// in amp I_C3=I2; I_E= I_C3/2;// in amp re_desh= (26*10^-3)/I_E;// in ohm re1_desh=re_desh; re2_desh=re1_desh; R_in1= 2*Bita*re_desh;// in ohm R_in2= R_in1 disp(R_in1*10^-3,"Differential input resistance in k ohm")
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function [y]=sawtooth (t,width) // Generates a Sawtooth wave // Calling Sequence // [y]=sawtooth(t) // [y]=sawtooth(t,width) // Parameters // t: Real valued vector or matrix // width: Real number between 0 and 1 // Description // This is an Octave function // This function returns a sawtooth wave with period 2*pi with +1/-1 as the maximum and minimum values for elements of t. If width is specified, it determines where the maximum is in the interval [0,2*pi]. // Examples // 1. sawtooth([1 2 3 4 5],0.5) // ans = [-0.36338 0.27324 0.90986 0.45352 -0.18310] // 2. sawtooth([1 2; 4 5]) // ans = [-0.68169 -0.36338; 0.27324 0.59155] funcprot(0); rhs=argn(2); if (rhs<1) then error ("Wrong number of input arguments.") elseif (rhs==1) y=callOctave("sawtooth",t) else y=callOctave("sawtooth",t,width) end endfunction
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eg3_13.sce
//circuit parameters //voltage sources E1 = 120; E2 = 65; //resistances R1 = 40; R2 = 11; R3 = 60; I = (E1/R1) + (E2/R3); //norton's current source Req = R1*R3/(R1 + R3); //equivalent resistance I2 = I*Req/(Req + R2); //current flowing through R2 disp(I2,"current flowing through R2 = ")
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clear; s = %s; A = [1, 1, 0; 0, 1, 2; 0, 0, 4]; B = [1; 2; 3]; C = [1, 1, 7]; I = eye(3, 3); D = 5; G = D + C * inv(s*I - A) * B; printf("G(s) for a1 = a3 :\n"); disp(G); eig_values = spec(A); printf("Eigenvalues of A : \n"); disp(eig_values); poles = roots(G.den); printf("Poles of A : \n"); disp(poles); A = [1, 0, 0; 0, 4, 2; 0, 0, 1]; B = [1; 4; 3]; C = [1, 1, 7]; I = eye(3, 3); D = 5; G = D + C * inv(s*I - A) * B; printf("G(s) for a1 = a5 :\n"); disp(G); eig_values = spec(A); printf("Eigenvalues of A : \n"); disp(eig_values); poles = roots(G.den); printf("Poles of A : \n"); disp(poles); A = [1, 1, 0; 0, 1, 2; 0, 0, 4]; B = [1; 2; 3]; C = [1, 1, 7]; I = eye(3, 3); D = 5; G = D + C * inv(s*I - A) * B; printf("G(s) for a3 = a5 :\n"); disp(G); eig_values = spec(A); printf("Eigenvalues of A : \n"); disp(eig_values); poles = roots(G.den); printf("Poles of A : \n"); disp(poles); A = [4, 1, 0; 0, 1, 2; 0, 0, 1]; B = [1; 2; 3]; C = [3, 1, 2]; I = eye(3, 3); D = 5; G = D + C * inv(s*I - A) * B; printf("G(s) for a3 = a5 :\n"); disp(G); eig_values = spec(A); printf("Eigenvalues of A : \n"); disp(eig_values); poles = roots(G.den); printf("Poles of A : \n"); disp(poles);
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//example 9.5 clc; funcprot(0); Mmax=43.72; sp=["PSA-31","PSA-23"];//sheet pile H=[7.9,7.9] I=[4.41e-6,5.63e-6]; p=[0.00466,0.00365]; S=[10.8e-5,12.8e-5]; Md=[18.63,22.08]; printf("SheetPile I(m^4/m) H(m) p\t Logp S(m^3/m) Md(kN-m/m) Md/Mmax \n") for i=1:2 Logp(i)=log10(p(i)); k(i)=Md(i)/Mmax; printf("%s\t %.2e %.2f %f %.2f %.2e %.2f\t %.3f\n",sp(i),I(i),H(i),p(i),Logp(i),S(i),Md(i),k(i)); end plot(Logp,k); xtitle("","LogP","Md/Mmax");
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// Display mode mode(0); // Display warning for floating point exception ieee(1); clear; clc; disp("Engineering Thermodynamics by Onkar Singh Chapter 4 Example 1") disp("NOTE=>This question is fully theoritical hence cannot be solve using scilab.")
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//example 4.1 //least square curve fitting procedure //page 128 clc;clear;close; x=[1 2 3 4 5]; y=[0.6 2.4 3.5 4.8 5.7]; for i=1:5 x_2(i)=x(i)^2; x_y(i)=x(i)*y(i); end S_x=0,S_y=0,S_x2=0,S_xy=0,S1=0,S2=0; for i=1:5 S_x=S_x+x(i); S_y=S_y+y(i); S_x2=S_x2+x_2(i); S_xy=S_xy+x_y(i); end a1=(5*S_xy-S_x*S_y)/(5*S_x2-S_x^2); a0=S_y/5-a1*S_x/5; printf('x\t y\t x^2\t x*y\t (y-avg(S_y))\t(y-a0-a1x)^2\n\n'); for i=1:5 printf('%d\t %0.2f\t %d\t %0.2f\t %0.2f\t %.4f\t\n',x(i),y(i),x_2(i),x_y(i),(y(i)-S_y/5)^2,(y(i)-a0-a1*x(i))^2); S1=S1+(y(i)-S_y/5)^2; S2=S2+(y(i)-a0-a1*x(i))^2; end printf('---------------------------------------------------------------------------------------------------------------------------------------------\n\n'); printf('%d\t %0.2f\t %d\t %0.2f\t %0.2f\t %0.4f\t\n\n',S_x,S_y,S_x2,S_xy,S1,S2); cc=sqrt((S1-S2)/S1);//correlation coefficient printf('the correlation coefficient is:%0.4f',cc);
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4_6.sce
clc; clear; function y=f(F,L,E,I) y=(F*(L^4))/(8*E*I) endfunction Fbar=50;//lb/ft Lbar=30;//ft Ebar=1.5*(10^8);//lb/ft^2 Ibar=0.06;//ft^4 deltaF=2;//lb/ft deltaL=0.1;//ft deltaE=0.01*(10^8);//lb/ft^2 deltaI=0.0006;//ft^4 ybar=(Fbar*(Lbar^4))/(8*Ebar*Ibar); function y=f1(F) y=(F*(Lbar^4))/(8*Ebar*Ibar) endfunction function y=f2(L) y=(Fbar*(L^4))/(8*Ebar*Ibar) endfunction function y=f3(E) y=(Fbar*(Lbar^4))/(8*E*Ibar) endfunction function y=f4(I) y=(Fbar*(Lbar^4))/(8*Ebar*I) endfunction deltay=abs(derivative(f1,Fbar))*deltaF+abs(derivative(f2,Lbar))*deltaL+abs(derivative(f3,Ebar))*deltaE+abs(derivative(f4,Ibar))*deltaI; disp(ybar+deltay,"and",ybar-deltay,"The value of y is between:") ymin=((Fbar-deltaF)*((Lbar-deltaL)^4))/(8*(Ebar+deltaE)*(Ibar+deltaI)); ymax=((Fbar+deltaF)*((Lbar+deltaL)^4))/(8*(Ebar-deltaE)*(Ibar-deltaI)); disp(ymin,"ymin is calculated at lower extremes of F, L, E, I values as =") disp(ymax,"ymax is calculated at higher extremes of F, L, E, I values as =")
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void main(void) { char *s; int **f; float *a[3]; float (*b)[7]; int ***c[9+9-1]; int (*f1)(int a, int b), (*f2)(void); }
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errcatch(-1,"stop");mode(2);//Example 2.3 // pulse broadning ; ; format('v',6) h=0.85;//WAVELENGTH IN MICRO METER y=0.035;//spectral width c=0.021;//constant cl=3;//speed of light in m/s dtl=(y/cl)*c;// disp(dtl*10^4,"pulse broadning in ns km^-1") exit();
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//Example 2.1 //Bisection Method //Page no. 14 clc;clear;close; deff('y=f(x)','y=x^3+x^2-1') x1=0.5;x2=1;e=0.0001;i=0; printf('Iteration\tx1\t\tx2\t\tz\t\tf(z)\n') printf('--------------------------------------------------------------------------\n') while abs(x1-x2)>e z=(x1+x2)/2 printf(' %i\t\t%f\t%f\t%f\t%f\n',i,x1,x2,z,f(z)) if f(z)*f(x1)>0 x1=z else x2=z end i=i+1 end printf('\n\nThe solution of this equation is %g after %i Iterations',z,i-1)