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|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
81f0ef1e6ca9628e1662a7ab8754929b3f5c4cb5 | 449d555969bfd7befe906877abab098c6e63a0e8 | /527/CH7/EX7.1/7_1exam.sce | c0395d19890cf0b240e8294d28d964c10fd62d87 | [] | 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 | 720 | sce | 7_1exam.sce | //Engineering and Chemical Thermodynamics
//Example 7.1
//Page no :308
clear ; clc ;
//Given
h_cap_H2O = 2676.0 ; //[kJ/kg],From steam table
S_cap_H2O = 7.3548 ; //[kJ/kgK],From steam table
h_cap_0_H2O = 2687.5 ; //[kJ/kg],From Appendix B
S_cap_0_H2O = 8.4479 ; //[kJ/kgK],From Appendix B
P_0_H2O = 10 ;//[kPa... |
c7ae4b76a0a722d641b2fcd98d3b7554313ba6d2 | 089894a36ef33cb3d0f697541716c9b6cd8dcc43 | /NLP_Project/test/tweet/bow/bow.4_5.tst | 8d5e19787f0ee01915d766b159b32fec13cf7f2e | [] | no_license | mandar15/NLP_Project | 3142cda82d49ba0ea30b580c46bdd0e0348fe3ec | 1dcb70a199a0f7ab8c72825bfd5b8146e75b7ec2 | refs/heads/master | 2020-05-20T13:36:05.842840 | 2013-07-31T06:53:59 | 2013-07-31T06:53:59 | 6,534,406 | 0 | 1 | null | null | null | null | UTF-8 | Scilab | false | false | 42,445 | tst | bow.4_5.tst | 4 8:0.058823529411764705 17:0.16666666666666666 28:1.0 81:0.5 206:0.25 268:1.0 402:1.0 488:1.0 761:1.0 762:1.0 880:1.0 990:1.0 1446:0.3333333333333333 1447:1.0 1620:1.0 2088:1.0 2330:1.0 2607:0.5 3090:1.0 3091:1.0 3533:1.0
4 8:0.11764705882352941 14:0.2857142857142857 31:0.5 37:0.1111111111111111 54:0.5 58:0.1111111111... |
ff1a33889f3adb110ab80849643ccd9900a7f3fd | 449d555969bfd7befe906877abab098c6e63a0e8 | /3888/CH6/EX6.1/Ex6_1.sce | cc70f44dad52d4fa5aa23d9cf8b8549ad831378b | [] | 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 | 1,611 | sce | Ex6_1.sce | //Electric Power Generation, Transmission and Distribution by S.N.Singh
//Publisher:PHI Learning Private Limited
//Year: 2012 ; Edition - 2
//Example 6.1
//Scilab Version : 6.0.0 ; OS : Windows
clc;
clear;
reser_catch_area=50; //Catchment area of reserv... |
429d33282ee5511cc6b7ef1ca0ffc3aedc7a7573 | 449d555969bfd7befe906877abab098c6e63a0e8 | /149/CH34/EX34.1/ex1.sce | b17623f4cd495ba64ac5faf6b610034254050ed2 | [] | 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 | 102 | sce | ex1.sce | clear
clc
disp('from the principle of counting,the required no.of ways are 12*11*10*9=')
12*11*10*9 |
cec331af56d572c5e65604d7f6d4eae97cac9c8b | 5a05d7e1b331922620afe242e4393f426335f2e3 | /macros/diric.sci | f60fee8125118353b1ca7f85c8b66a9e550dee50 | [] | no_license | sauravdekhtawala/FOSSEE-Signal-Processing-Toolbox | 2728cf855f58886c7c4a9317cc00784ba8cd8a5b | 91f8045f58b6b96dbaaf2d4400586660b92d461c | refs/heads/master | 2022-04-19T17:33:22.731810 | 2020-04-22T12:17:41 | 2020-04-22T12:17:41 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 733 | sci | diric.sci | function [y]= diric(x,n)
// Calculates the dirichlet function
// Calling Sequence
// [y]=diric(x,n)
// Parameters
// x: Real valued vector or matrix
// n: Real positive integer or complex integer
// Description
// y=diric(x,n) returns the dirichlet function values of parameter x.
// Examples
// 1. diric([1 2 3],3)
/... |
eaee10fa2af75e0b1f318c01b5458b7406fb3506 | 449d555969bfd7befe906877abab098c6e63a0e8 | /1241/CH6/EX6.25/exa6_25.sce | c9f287feeaafbc63c794e4747fbb4ad83e2f9645 | [] | 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 | 1,493 | sce | exa6_25.sce | //Example 6-25//
//Solve multiple output equation using mapping//
clc
//clears the window//
clear
//clears all existing variables//
disp('f1=Sigma m(2,3,7,10,11,14)+d(1,5,15)')
//First function is displayed//
disp('f2=Sigma m(0,1,4,7,13,15)+d(5,8,15) ')
//Second function is displayed//
disp('f1.f2=Sigma m(1,7... |
19f419a37e8a306bd4ec1c7515c921935d25fbb0 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2492/CH7/EX7.9/ex7_9.sce | 958a8c54b9c8bcc44a12d70563e353c0ed9e62b3 | [] | 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 | 497 | sce | ex7_9.sce | // Exa 7.9
format('v',7)
clc;
clear;
close;
// GIven data
R1 = 10;// in k ohm
R2 = 100;// in k ohm
R3 = 10.1;// in k ohm
R4 = 99;// in k ohm
// Vdaso = Vo2 = V2*(-R2/R1)
//Vdaso = Vo1 = V1*(R4/(R3+R4))*(1+(R2/R1))
//Vo = Vo1+Vo2 = (V1*(R4/(R3+R4))*(1+(R2/R1))) - (V2*(-R2/R1))
//Vo = (R2/R1) * ( -V2 + ( 1+(... |
788b4110a33389a77f18be385933aa480c14deab | e68d24476f5cb115a3c002c4c00d2d88f6bdb47f | /reconaissance.sci | 2fff1106a040899c5d415dca9cff8b8fd5e0f3f5 | [] | no_license | hiveship/scilab-eigenfaces | cfa4edfa0557efa6aec942338b7850d185dc0246 | daa0f768b7283a3664560919487f02bd53048e10 | refs/heads/master | 2021-01-16T23:36:22.260802 | 2016-12-19T13:15:04 | 2016-12-19T13:15:04 | 57,987,929 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 6,158 | sci | reconaissance.sci | clc;
// ======================
// VARIABLES / CONSTANTES
// ======================
identifiant_individu_requete = 's40';
id_image_requete = 6;
assert_checktrue(id_image_requete > 5 & id_image_requete <= 10); // Prendre une image n'ayant pas été utilisée dans la base de test ! // TODO: Test uniquement valable... |
9ce64b3e099788d466e3ce225aec0856e5335d50 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3871/CH5/EX5.24/Ex5_24.sce | 69c71a8ae36a918781eaf0ad361092fe19f72219 | [] | 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 | 580 | sce | Ex5_24.sce | //===========================================================================
//chapter 5 example 24
clc;clear all;
//variable declaration
Iav = 40*10^-3; //average value of current in mA
Ks = 1.11; //assuming form factor for sinusoidal wave
f = 50; //frequency in Hz
V = 10^5; //voltage... |
7fa4606985ae964b5b6f2e1859cf6fc98012260f | 449d555969bfd7befe906877abab098c6e63a0e8 | /863/CH8/EX8.4/Ex8_4.sce | 660b51b2b1b710976c84ea2258ca70e981fcb276 | [] | 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 | 409 | sce | Ex8_4.sce | //Caption:Design a square wave generator using 7555 CMOS
//Ex8.4
clc;
clear;
close;
V=5//Supply voltage(in volts)
f1=1//Frequency(in khz)
f2=3//Frequency(in khz)
C=0.01//Capacitance(in micro farad)
Ra=47//Choosed resistor(in kilo ohm)
t1=1/(2*f1)
t2=1/(2*f2)
R=t1/(0.693*C)
Rb=R-Ra
disp(C,Rb,Ra,'Components... |
8b6880637360e0ada371961bcf8f96c8ea1888e5 | fd6a414e5722e920e5ebe08c77fe0f70b29e77cf | /EffectoflengthofwindowonShortTimeSpectruml.sce | 0bfbc312727b7de5ca0c60b446e9147e2fe649f1 | [] | no_license | JBouis/AudioProcessing | e774bdfaf38207643d441f975a96773ae3cbbd24 | c9f81b8d5ce447b014707b309ef209530219adc0 | refs/heads/master | 2021-05-18T02:21:40.839402 | 2020-03-29T15:22:16 | 2020-03-29T15:22:16 | 251,063,576 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 1,294 | sce | EffectoflengthofwindowonShortTimeSpectruml.sce | // Program to compare the effect of length on window
// on STFT using Hamming window
clc,clear,close,
[y,Fs]=wavread('C:\Test_Project\a-team_my_way.wav');
t=(0:length(y)-1)/Fs; // Changing x axis in to time in second
subplot(311)
plot(t,y)
xlabel('Time in seconds')
title('Original Signal')
beg=5200; // ... |
f469fedcc8bd8cf89339c3f3772874cb84841900 | 449d555969bfd7befe906877abab098c6e63a0e8 | /14/CH14/EX14.7/example_14_7.sce | b3f112ff9d9f5ddf4f8dac48c5295e2ca3135061 | [] | 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 | 692 | sce | example_14_7.sce | //Chapter 14
//Example 14.7
//Page 392
//ccangle
clear;clc;
delta = 28.44;
H = 5;
ws = 377;
Pm =1;
Vt = 1;V_ib = 1;
X1_g =0.2;X1_t = 0.1;X1_l1 = 0.4;X1_l2 = 0.4;
X = X1_t + X1_l1 /2;
a = asin(Pm * X / (Vt * V_ib)) * 180 / %pi;
Vt1 = Vt * (cos(a * %pi / 180) + %i * sin(a * %pi / 180));
I = (Vt1 - V_ib) / (%i * X);
E1 = ... |
77fda0063409da66c5dce44b93b4932a77900c48 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2399/CH2/EX2.5.3/Example2_5_3.sce | d96969b1aff180db4865950116073bd48b65bc25 | [] | 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 | 198 | sce | Example2_5_3.sce | // Example 2.5.3
clc;
clear;
NA = 0.45; // Numerical Aperture
Acceptance_angle = asind(NA); //computing acceptance angle.
printf("\nAcceptance angle is %.1f degree.",Acceptance_angle);
|
2ea6d00046c32815c336274867ec37e8681169bf | 449d555969bfd7befe906877abab098c6e63a0e8 | /2087/CH4/EX4.63/example4_63.sce | a70f5d002cfb8aa517f9a57fc4e96fc644ba830a | [] | 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 | 489 | sce | example4_63.sce |
//example 4.63
//calculate design disharge
clc;funcprot(0);
//given
xavg=1200; //sample mean
n=50; //assurance year
A=0.95; //assurance percent
Rsk=1-A;
sigma=650; //standard deviation
yn=0.53622; //mean of reduced variate
sigma30=1.11238; //standard deviation o... |
76c4c293f3490c57e0d982af5f529b0561aa5e22 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2609/CH13/EX13.6/ex_13_6.sce | 8f487ea2bee34477a2364951fd292d896fb40593 | [] | 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 | 605 | sce | ex_13_6.sce | ////Ex 13.6
clc;
clear;
close;
format('v',6);
RL1=100;//ohm
RL2=1;//ohm
RCS=7;//ohm
VEB=0.7;//V
Beta=25;//unitless
//For 100 ohm Load
Vout=5;//V(as 7805 used)
IL=Vout/RL1;//A
VRCS=IL*RCS;//V(Voltage across RCS)
//VRCS<VEB, hence Q1 is off
Iout=IL;Iin=IL;//A
Iext=Iout-Iin;//A
disp(Iext,"For 100 ohm load... |
2885b9f2870c835cf2fcf4d44f98dee771047fc5 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3472/CH10/EX10.2/Example10_2.sce | c8ae3e8f3c0ae8aeaff283ca1acf58847240466c | [] | 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 | 2,737 | sce | Example10_2.sce | // A Texbook on POWER SYSTEM ENGINEERING
// A.Chakrabarti, M.L.Soni, P.V.Gupta, U.S.Bhatnagar
// DHANPAT RAI & Co.
// SECOND EDITION
// PART II : TRANSMISSION AND DISTRIBUTION
// CHAPTER 3: STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES
// EXAMPLE : 3.2 :
// Page number 128-129
clear ; ... |
062818c84534196ead5915136ee591ae0c7d2a52 | 1489f5f3f467ff75c3223c5c1defb60ccb55df3d | /tests/test_ods_5_n.tst | 6f0efd18cfce8fdb21dd33800a08cd78d3fa5165 | [
"MIT"
] | permissive | ciyam/ciyam | 8e078673340b43f04e7b0d6ac81740b6cf3d78d0 | 935df95387fb140487d2e0053fabf612b0d3f9e2 | refs/heads/master | 2023-08-31T11:03:25.835641 | 2023-08-31T04:31:22 | 2023-08-31T04:31:22 | 3,124,021 | 18 | 16 | null | 2017-01-28T16:22:57 | 2012-01-07T10:55:14 | C++ | UTF-8 | Scilab | false | false | 1,490 | tst | test_ods_5_n.tst | ** File Info
Version: 1.0
Num Logs = 2
Num Trans = 0
Num Writers = 0
Total Entries = 3
Tranlog Offset = 214
Transaction Id = 3
Index Free List = n/a
Total Size of Data = 126
Data Transformation Id = 2
Index Transformation Id = 6
** Entry Info for: all
num: 0000000000000000 pos: 000000000000001c len: ... |
5f8600e9ac616e983dea147ab4d521c68e549b92 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3740/CH10/EX10.5/Ex10_5.sce | ab89abf0a5765f8d14544232da8b9265eeafb7b1 | [] | 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 | 577 | sce | Ex10_5.sce | //Optoelectronics - An Introduction, 2nd Edition by J. Wilson and J.F.B. Hawkes
//Example 10.5
//OS=Windows XP sp3
//Scilab version 5.5.2
clc;
clear;
//given
V=4;//Value of Verdet constant in rad m^-1 T^-1
Mur=1;//Relative permeability of Silica
Mu0=4*%pi*1e-7;//Permeability of free space in SI Units
n=10;/... |
76b62fc9f828816ff1b8592d94a9014e386c9296 | 449d555969bfd7befe906877abab098c6e63a0e8 | /536/CH12/EX12.2/Example_12_2.sce | f0523fc0196d287359637cd2d34d82dcdfacef2d | [] | 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 | 607 | sce | Example_12_2.sce | clc;
clear;
printf("\n Example 12.2\n");
u=10; //Velocity of air
T=330; //Temperature of air
d=25e-3; //Inner diameter of pipe
T_p=415; //Temperature at which the pipe is maintained
DP_l=80; //Drop of static pressure along the pipe per unit length
//From equations 12.98 and 3.18:
//we get h=0.05*Cp
//Th... |
6fee2659333e2d645dc359f3b1df5c64209e1703 | 0e1b45c07f0938ba9c8a003d6ae1cf2d8315efdb | /acmp.ru/056, Jивой Jурнал/test0.tst | 6c952fda20cd9d1cf921c0819e192d98ca5ce796 | [] | no_license | Kot-Angens/acm | c85d8582c3e84f218415321743864b9680e01f2e | 05472eaa0fff7abb6679826085da5e0c990df4cb | refs/heads/master | 2021-01-24T22:36:05.159612 | 2012-10-02T13:51:56 | 2012-10-02T13:51:56 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 204 | tst | test0.tst | 3
vasya-pupkin
bill-hates
ivan-ivanov
2
vasya-pupkin
destroyer
~~~~~~~~~~~~~~~~~~~~~
Friends: bill-hates, ivan-ivanov, vasya-pupkin
Mutual Friends: vasya-pupkin
Also Friend of: destroyer
|
24a9a5ccce12849f9e08610421291698058192bd | 449d555969bfd7befe906877abab098c6e63a0e8 | /1898/CH5/EX5.13/Ex5_13.sce | 84bc019beda3dfce37259246b0f494848d24287e | [] | 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 | 1,008 | sce | Ex5_13.sce | clear all; clc;
disp("Scilab Code Ex 5.13 : ")
//Given:
l = 1.2; //m
a = 40; //mm
tou_allow = 56; //MPa
phi_allow = 0.02; //rad
G = 26; //GPa
alpha = (60*%pi)/180; //degrees
//Calculations:
T_shear1 = (tou_allow*a^3)/(20*1000); // allowable shear stress = (20T)/(a^3)
T_twist1 = (phi_allow*a^4... |
83b1cb04bafa388dc625546abf9273f67247d6d8 | 4c888070ef0e5ac657898d54a469c6587077d0f9 | /tests/ok/multipath-deadend.tst | 715eefec3f2d95bb76158d6e2f5fc570a5000955 | [] | no_license | Vezyr68/Tests4lemin | 047babbbdd269de9841cfda1f0bd229e9761838f | 426cf85358a1879c039f06d2de595451126d746e | refs/heads/master | 2023-01-06T19:39:28.329496 | 2020-11-10T12:28:17 | 2020-11-10T12:28:17 | 310,910,849 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 789 | tst | multipath-deadend.tst | 55
#rooms
##start
s 0 0
##end
e 40 40
#other rooms
r01 0 1
r02 0 2
r03 0 3
r04 0 4
r05 0 5
r06 0 6
r07 0 7
r08 0 8
r09 0 9
r10 1 0
r11 1 1
r12 1 2
r13 1 3
r14 1 4
r15 1 5
r16 1 6
r17 1 7
r18 1 8
r19 1 9
r20 2 0
r21 2 1
r22 2 2
r23 2 3
r24 2 4
r25 2 5
r26 2 6
r27 2 7
r28 2 8
r29 2 9
r30 3 0
r31 3 1
r32 3 2
r33 3 3
r34 3... |
4f19e41a6529e9a125edf20bb2a324de4ef94292 | 449d555969bfd7befe906877abab098c6e63a0e8 | /1299/CH5/EX5.6/example5_6.sce | e50a2a4c06c2cb83715098f26d0768dea1fcdae1 | [] | 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 | 337 | sce | example5_6.sce | //Example 5.6
//constructing Routh array in scilab
clear; clc;
xdel(winsid());
mode(0);
s=%s;
A=s^4+8*s^3+24*s^2+32*s; //characteristic equation
k=poly(0,'k')
routh_t((1)/A,poly(0,'k'))
disp(k=80)
//since from the fourth row of the Routh array
// the positive value "k=80" will give roots with zero... |
95be9cedfcef640c0269c362fd7df3cd6b1b5aff | a62e0da056102916ac0fe63d8475e3c4114f86b1 | /set8/s_Elementary_Heat_Power_H._L._Solberg_2420.zip/Elementary_Heat_Power_H._L._Solberg_2420/CH3/EX3.3/3_3.sce | 138b9c5ed9dda46ff21396e92960ea81eeda38e8 | [] | no_license | hohiroki/Scilab_TBC | cb11e171e47a6cf15dad6594726c14443b23d512 | 98e421ab71b2e8be0c70d67cca3ecb53eeef1df6 | refs/heads/master | 2021-01-18T02:07:29.200029 | 2016-04-29T07:01:39 | 2016-04-29T07:01:39 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 165 | sce | 3_3.sce | errcatch(-1,"stop");mode(2);
//Initialization of variables
per=20
Dp=100
//calculations
r=Dp/per +1
//results
printf("Compression ratio = %d ",r)
exit();
|
5e562c0e65f01e50d21e5ba1f3701089095e1b46 | 449d555969bfd7befe906877abab098c6e63a0e8 | /509/CH9/EX9.8/9_8.sci | 7f3d2dab55e7db0f88dd5b29db208f0099e7101a | [] | 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 | 554 | sci | 9_8.sci | //Chapter 9 Example 8//
clc
clear
// from the diagram dab,dbc,dac are distances from each conductor to other in the transmission linr//
dab=5;
dbc=4;
dac=6;
// diameter of conductor=d,radius of each conductor=r,capacitance of phase a to neutral plane=can,equivalent distance=deq//
d=0.025;// in m//
deq=(dab*dbc... |
c881bda9636d14d1de97abdaf934b96ee5ad43d9 | 33f77c32fb16283501d950b6fc6b43a07914f32e | /scilab_autopilot/lib/phys/dyn/dyn_startup.sci | c6cccf11b6363373ff5521c12b6328ddf35b5f6e | [] | no_license | CLUBMODELISMECEADSTOULOUSE/autopilot | 26b79d6a2a632f08989a5528e82f553616617646 | a6ffae2f8a86fbc79e636ddd5173af104e1af9cd | refs/heads/master | 2021-01-21T00:59:06.271128 | 2015-10-25T09:31:54 | 2015-10-25T09:31:54 | 34,409,237 | 1 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 159 | sci | dyn_startup.sci | // Startup of the dyn library
exec dyn_new.sce ;
exec dyn_getPos.sce ;
exec dyn_getVel.sce ;
exec dyn_getRate.sce ;
exec dyn_getAtt.sce ;
exec dyn_deriv.sce ;
|
1a81bd87f11d238c2eaa8e24cac33a2c92a3fff7 | 8217f7986187902617ad1bf89cb789618a90dd0a | /browsable_source/2.5/Unix-Windows/scilab-2.5/tests/examples/rotate.man.tst | f43dc72f41090b0f9581f57d9ed0790a1ffd1304 | [
"LicenseRef-scancode-public-domain",
"LicenseRef-scancode-warranty-disclaimer"
] | permissive | clg55/Scilab-Workbench | 4ebc01d2daea5026ad07fbfc53e16d4b29179502 | 9f8fd29c7f2a98100fa9aed8b58f6768d24a1875 | refs/heads/master | 2023-05-31T04:06:22.931111 | 2022-09-13T14:41:51 | 2022-09-13T14:41:51 | 258,270,193 | 0 | 1 | null | null | null | null | UTF-8 | Scilab | false | false | 165 | tst | rotate.man.tst | clear;lines(0);
xsetech([0,0,1,1],[-1,-1,1,1])
xy=[(0:0.1:10);sin(0:0.1:10)]/10;
for i=2*%pi*(0:10)/10,
[xy1]=rotate(xy,i);
xpoly(xy1(1,:),xy1(2,:),"lines")
end
|
4b52cb10f845a96c21895474142cac3247550d40 | 449d555969bfd7befe906877abab098c6e63a0e8 | /32/CH4/EX4.03/4_03.sce | 3b3f5d44b7cce48df29adc116e8ecc2ee08121df | [] | 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 | 409 | sce | 4_03.sce | //pathname=get_absolute_file_path('4.03.sce')
//filename=pathname+filesep()+'4.03-data.sci'
//exec(filename)
//Upper temperature(in K):
T1=42+273
//Lower temperature(in K):
T2=4+273
//Rate at which heat is extracted(in kJ/s):
Q2=2
//Heat to be supplied(in kJ/s):
Q1=T1/T2*Q2
//Power required(in kW):
P=Q1-Q2
... |
af823ac1907e938e931af9c375d98a2ce4dcb6ba | d7ec0352fdd4cf451ee9dd6bac2218fb96c24c0f | /src/gui/qml/img/button-down.sci | c66712dd6fd53d8b4a83b7522b9e8ff73441de1e | [] | no_license | mireq/facedetect | d3fc340926a54e144dcf09ef4a814a77cbc9afde | 94ab039149efb2d8f1496c6042bf3a6b133bb49e | refs/heads/master | 2021-01-22T04:33:34.209921 | 2011-05-13T01:08:47 | 2011-05-13T01:08:47 | 1,525,248 | 3 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 89 | sci | button-down.sci | border.left: 20
border.right: 22
border.top: 20
border.bottom: 22
source: button-down.png |
bff53a357165f3331c645a920e4eb1596027dea4 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3648/CH4/EX4.10/Ex4_10.sce | bdbf58c1b3c0f269cc9f135bc48c27039ed3f4fe | [] | 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 | 305 | sce | Ex4_10.sce | //Example 4_10
clc();
clear;
//To calculate the tension in the rope
u=0.7
sintheta=(6/10)
w1=50 //units in Kg
g=9.8 //units in meter/sec^2
costheta=(8/10)
Fn=w1*g*costheta //units in Newtons
f=u*Fn //units in Newtons
T=f+(w1*g*sintheta)
printf("The tension in the rope is T=%d N",T)
|
d3fe77cd27e1d5925e1a09e63f75b3bdf4f191a9 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3802/CH9/EX9.1/Ex9_1.sce | 5e3012684a3badfebd7b7542eaa1c1618754faaf | [] | 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 | 569 | sce | Ex9_1.sce | //Book Name:Fundamentals of Electrical Engineering
//Author:Rajendra Prasad
//Publisher: PHI Learning Private Limited
//Edition:Third ,2014
//Ex9_1.sce.
clc;
clear;
slots=24;
pole=4;
printf("\n (a)")
//when all slots are wound
m=slots/pole;
alpha=180/m;
Kd=sind(m*alpha/2)/(m*sind(alpha/2));
printf... |
6aec930ad1405a155ee114e5cf7272b1c5d84703 | bd4a88a5c028a801cbf0e414d2630de1c1e35449 | /scilab/ScatterPLot.sce | adf02b6c7b513bb35622b967aad8f2078648cc4f | [] | no_license | edielsonpf/turning-signal-analysis | 625783cea26b029c87925f96af4ac14aa38c8ae8 | 2fd594e79395caa72f5cebc378878367ff0e7f01 | refs/heads/master | 2021-03-13T00:01:23.673430 | 2018-12-24T14:44:39 | 2018-12-24T14:44:39 | 41,508,152 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 2,021 | sce | ScatterPLot.sce | //Limpa qualquer variável criada em outra simulação.
clear;
//fecha todos os gráficos
xdel(winsid());
Debug = 1;
SPEC_DATA_FOLDER = 'C:\Users\Edielson\Projects\Research\turning-signal-analysis\results\spectrogram\';
//===========================================================
Ms=[];
MsIndex=1;
FileIndex=1;
fid1 = mo... |
880bc708f59e4b2e5e38cae8a036e19810cd091d | 38012281b6334f56780d83d57af821a009c37ebe | /out/20_02_2019/Final_LrFijo_Repeticiones/Gijon_TEST_3.tst | 5a722f6375740958366c14790cbcd23606772b74 | [] | no_license | uo232368/TripAdvisor | 2140422daa42fbae57b2eeb17d8829ff2378a822 | 74fa0131da52162d2f0bbcf6ceff91caa47ae220 | refs/heads/master | 2020-03-29T09:23:12.984191 | 2019-04-24T09:26:40 | 2019-04-24T09:26:40 | 149,755,513 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 3,124 | tst | Gijon_TEST_3.tst | Using TensorFlow backend.
[94mObteniendo datos...[0m
[93m[AVISO] Usuarios: 5139[0m
[93m[AVISO] Restaurantes: 598[0m
[93m[AVISO] Cargando datos generados previamente...[0m
[94mCreando modelo...[0m
##################################################
MODELV4
##################################################... |
48edd5f36c57abaf79b69614510f1df60395d64c | 3cbdc2f272df05cfe8c6636d4504e9e3d2e4fe3f | /Coordinates/utm-1.sce | e7aa2e71f736d3fa0ef6418700a6a4724f31cb9d | [] | no_license | bozhink/Code-Chunks | 74355eb4c0d423c2f6484226e564030dff798678 | 860b7b8f53089ed96fd0ebead2e3eec16fa377cb | refs/heads/master | 2020-12-24T06:19:04.343239 | 2019-11-13T14:09:15 | 2019-11-13T14:09:15 | 42,819,484 | 0 | 1 | null | 2019-11-13T14:09:16 | 2015-09-20T16:09:09 | HTML | UTF-8 | Scilab | false | false | 6,426 | sce | utm-1.sce | aaa=[631200 780143.766831 2373680.0708
631196 780143.766831 2373680.0708
630915 780535.103072 2373588.16789
630934 781272.611854 2373443.69326
631143 781272.611854 2373443.69326
631177 780535.103072 2373588.16789
631181 780535.103072 2373588.16789
631219 781272.611854 2373443.69326
631257 780535.103072 2373588.16789
63... |
a76e27b5c0e9b9327cb96f33baacb700e684b091 | 449d555969bfd7befe906877abab098c6e63a0e8 | /746/DEPENDENCIES/4_12.sci | 1137b7719e3bd0a7bd7da43c3c20da6e271fbdcb | [] | 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 | 252 | sci | 4_12.sci | //Initial mass of th rocket(in kg):
M0=400;
//Rate of fuel consumption(in kg/sec):
me=5;
//Exhaust velocity(in m/sec):
Ve=3500;
//Acceleration due to gravity(in m/sec^2):
g=9.81;
//Time after which velocity is to be calculated(in sec):
t=10;
|
2013d01175443aa0a691adf817ea8662244f1a26 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2333/CH3/EX3.6/6.sce | 0bcbc97db4a59d26c4c3f0e179791806a4f4c8f5 | [] | 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 | 648 | sce | 6.sce | clc
// Given that
f = 100 // focal length of lens in cm
y = 0.05 // Separation between second dark bend and center in cm
m = 4 // Order of minima
n = 5 // Order of minima
e = 0.5 // Distance of center of 5th minima from center of maxima in cm
// Sample Problem 6 on page no. 141
printf("\n # PROBLEM 6 # \n")
p... |
b30157caa427a049aea102244aeb04417aa259a6 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3665/CH3/EX3.3/Ex3_3.sce | e9f2c28252652b15488f43bcab10ab8b84dc7ef2 | [] | 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 | 379 | sce | Ex3_3.sce | clc//
//
//
//Variable declaration
d100=0.28; //spacing(nm)
lamda=0.071; //wavelength of X rays(nm)
n=2; //second order
//Calculation
d110=(d100/sqrt(2)); //spacing(nm)
x=n*lamda/(2*d110);
theta=asin(x); //glancing angle(radian)
theta=theta*180/%pi ; //glancing angle(degrees)
//R... |
604491ab50c3a2cfdca2b6a76fecf3c433a4a0e6 | 449d555969bfd7befe906877abab098c6e63a0e8 | /1994/CH7/EX7.27/Example7_27.sce | bd66723a62693193230a2fa091ee5a149f78798d | [] | 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 | 144 | sce | Example7_27.sce | //Chapter-7,Example7_27,pg 7-82
V1=11000
V2=110
V=V1/V2
V2=87.5
V1=87.5*V//line voltage
printf("line voltage\n")
printf("V1=%.2f V",V1)
|
4913b46710b6dadfbd50ebc551989da9bae61d5a | 8217f7986187902617ad1bf89cb789618a90dd0a | /source/2.5/tests/examples/proj.man.tst | 6cb258a92436d8d30d46876ca483433ebe641d0a | [
"LicenseRef-scancode-public-domain",
"LicenseRef-scancode-warranty-disclaimer"
] | permissive | clg55/Scilab-Workbench | 4ebc01d2daea5026ad07fbfc53e16d4b29179502 | 9f8fd29c7f2a98100fa9aed8b58f6768d24a1875 | refs/heads/master | 2023-05-31T04:06:22.931111 | 2022-09-13T14:41:51 | 2022-09-13T14:41:51 | 258,270,193 | 0 | 1 | null | null | null | null | UTF-8 | Scilab | false | false | 156 | tst | proj.man.tst | clear;lines(0);
X1=rand(5,2);X2=rand(5,3);
P=proj(X1,X2);
norm(P^2-P,1)
trace(P) // This is dim(X2)
[Q,M]=fullrf(P);
svd([Q,X2]) // span(Q) = span(X2)
|
f35261a2dd30202241af9cb1f31e6e6e6fd836d2 | 7edeaa4920427595d3601e218f8de85be39cf22d | /TP/tp3/exo3&4/calcg.sci | 14830b3209779fddf74b5ca94a5e59b3459a5a0e | [] | no_license | BiteKirby3/Math-is-so-fun | 96fb19815c7ab46d1a8e81771e0e70170ee503ab | 20db5e67e73a5ccfd1599cf56718c9d6f0adaa0c | refs/heads/main | 2023-08-27T23:18:38.117913 | 2021-10-11T22:59:20 | 2021-10-11T22:59:20 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 441 | sci | calcg.sci | function [z]=calcg(t,T,cc)
[mT,nT] = size(T)
[mcc,ncc] = size(cc)
if(mT~=mcc+1 | ncc~=4 |nT~=1) then
error("Taille non correcte");
end
if(t==T(mT,1))
z = cc(mcc,1)+cc(mcc,2)*(t-T(mcc,1))+cc(mcc,3)*((t-T(mcc,1))^2)+cc(mcc,4)*((t-T(mcc,1))^2)*(t-T(mT,1))
else
i = place(T,... |
e13950de33e859849706c69a2c17b1e7b8ed9956 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3819/CH3/EX3.11/Ex3_11.sce | 37d4dba672718b31d6b3686360dfbc98ad18581f | [] | 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 | 619 | sce | Ex3_11.sce | // A Textbook of Fluid Mecahnics and Hydraulic Machines - By R K Bansal
// Chapter 3-Hydrostatic Forces on surfaces
// Problem 3.11
//Data given in the Problem
d=0.5
D=1
SG=0.8
dens=1000
dens1=SG*dens
w=2
g=9.81
//calculations
//1)total pressure
pA=0
pD=dens1*g*D
pB=pD+dens*g*d //Pressure on th... |
87085c60a92e5e6be93349b95a3e597cf3ab589e | 449d555969bfd7befe906877abab098c6e63a0e8 | /69/CH15/EX15.10/15_10.sce | d594b07391282b95685a9b726f46cdbfd758e9e4 | [] | 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 | 106 | sce | 15_10.sce | clear; clc; close;
Vo = (1+( 30*10^(3)/(15*10^(3)) ))*6.2;
disp(Vo,'Regulated Output voltage = ');
|
e9902446b758008443749b26ebe95f04148659f0 | 449d555969bfd7befe906877abab098c6e63a0e8 | /542/CH15/EX15.5/Example_15_5.sci | e76af3b0da2884a89c530841e79668b198b06cb0 | [] | 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 | 1,598 | sci | Example_15_5.sci | clear;
clc;
//The molecular mass of hydrate/molecular mass of anhydrate
R = 380/164;
printf("\n The molecular mass of hydrate/molecular mass of anhydrate,R = %.2f",R);
//It will be assumed that the evaporation is negligible and that E = 0.
c1 = 0.23;
printf("\n The initial concentration, c1 = %.2f kg/kg solutio... |
e4228aa046b6e75e2c8f342827e6a31db6275c4a | b29e9715ab76b6f89609c32edd36f81a0dcf6a39 | /ketpicscifiles6/Letterrot.sci | f99917cfd726a1cadc663e85d06127237de3e651 | [] | no_license | ketpic/ketcindy-scilab-support | e1646488aa840f86c198818ea518c24a66b71f81 | 3df21192d25809ce980cd036a5ef9f97b53aa918 | refs/heads/master | 2021-05-11T11:40:49.725978 | 2018-01-16T14:02:21 | 2018-01-16T14:02:21 | 117,643,554 | 1 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 657 | sci | Letterrot.sci | // 08.05.31
// 08.08.24
// 09.12.25
function Letterrot(varargin)
global MEMORI;
P=varargin(1);
V=varargin(2); N=3;
P=Doscaling(P);
V=Doscaling(V);
Tmov=0;
Tmp=varargin(N);
if type(Tmp)==1
Tmov=Tmp; N=N+1;
end
Nmov=0;
Tmp=varargin(N);
if type(Tmp)==1 then
Nmov=Tmp; N=N+1;
end
Mojiret... |
7e7eef54ca8794e9bd8580d473e8a7e3b28a7e3d | f542bc49c4d04b47d19c88e7c89d5db60922e34e | /PresentationFiles_Subjects/CONT/WD69PMX/ATWM1_Working_Memory_MEG_WD69PMX_Session2/ATWM1_Working_Memory_MEG_Salient_Uncued_Run2.sce | 4b3e26303be14bb582c12e0632e66d6f331f66e1 | [] | no_license | atwm1/Presentation | 65c674180f731f050aad33beefffb9ba0caa6688 | 9732a004ca091b184b670c56c55f538ff6600c08 | refs/heads/master | 2020-04-15T14:04:41.900640 | 2020-02-14T16:10:11 | 2020-02-14T16:10:11 | 56,771,016 | 0 | 1 | null | null | null | null | UTF-8 | Scilab | false | false | 48,405 | sce | ATWM1_Working_Memory_MEG_Salient_Uncued_Run2.sce | # ATWM1 MEG Experiment
scenario = "ATWM1_Working_Memory_MEG_salient_uncued_run2";
#scenario_type = fMRI; # Fuer Scanner
#scenario_type = fMRI_emulation; # Zum Testen
scenario_type = trials; # for MEG
#scan_period = 2000; # TR
#pulses_per_scan = 1;
#pulse_code = 1;
pulse_width=6;
default_monit... |
506630cb08623a7d29c81d878de9f377ea046da2 | 0e1b45c07f0938ba9c8a003d6ae1cf2d8315efdb | /uva.onlinejudge.org/112, Tree Summing/test5.tst | 934fdb423f336a8b594f472215431f8cd342006b | [] | no_license | Kot-Angens/acm | c85d8582c3e84f218415321743864b9680e01f2e | 05472eaa0fff7abb6679826085da5e0c990df4cb | refs/heads/master | 2021-01-24T22:36:05.159612 | 2012-10-02T13:51:56 | 2012-10-02T13:51:56 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 57 | tst | test5.tst | 5 (18 ( - 13 ( ) ( ))())
~~~~~~~~~~~~~~~~~~~~~~~~
yes
|
8e981041ce0790e7169cdae9a211c514a493310d | b3c9357cd1290921e67444ae057761959fdf24f1 | /Curso de programação com Scilab/códigos/exrec001.sce | d0382708bafcb32ec7a97e5e30f5f1c531c15334 | [] | no_license | joaolrneto/Scilab | 91742520422426dc8a772997ef4a5d6376008b6e | f383f87e4585955cf19d0dae1b5c29f93c3f70b4 | refs/heads/master | 2023-02-05T20:13:03.677069 | 2020-12-30T14:53:09 | 2020-12-30T14:53:09 | 264,671,730 | 1 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 204 | sce | exrec001.sce | clc
clear
x=input("Informe um valor para X :");
fx=1;
denominador=1;
while denominador <= x
fx=fx+((x^denominador)/(denominador))
denominador=denominador+1
end
printf("O valor de f(x) = %f\n",fx)
|
848547db9cfd451555ff41f0c8dc5bf29589b213 | 449d555969bfd7befe906877abab098c6e63a0e8 | /788/CH9/EX9.3.b/9_3_soln.sce | 97e9d5faf09e1bea1e0fdbef1801bac99a9219ba | [] | 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 | 619 | sce | 9_3_soln.sce | clc;
pathname=get_absolute_file_path('9_3_soln.sce')
filename=pathname+filesep()+'9_3_data.sci'
exec(filename)
// Solution:
// spring force at full pump flow pressure,
F_spr_full=round(p_hydraulic*A_poppet); //lb
// spring force at cracking pressure,
F_spr_crack=round(p_cracking*A_poppet); //lb
// spring constant of c... |
2a2fc241dabed60d476c275f31dbff06028a4c3e | 397456b742a46d88c251aa168bfe794903987f93 | /Whale Optimization Algorithm/standard/scilab/whale-oa.sce | 4eb4539356558f44aa5a5ef824ebf98844b281e7 | [] | no_license | JonesCG/PROJECT-NIOA | b5dcc7820d818369a4115fbb34b0f7ba02d7a129 | 7e6a3aa9a5deda6aa4eec9f4d523556844593c8b | refs/heads/master | 2022-08-16T14:06:54.967718 | 2020-05-18T08:17:47 | 2020-05-18T08:17:47 | 264,872,793 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 2,461 | sce | whale-oa.sce |
clc
clear
exec('objective.sce');
disp('RUNNING...')
rand('seed',getdate('s'))
POPSIZE = 300
DIM = 100
UPPER = 100
LOWER = -100
MAXITER = 200
b=1.5
WHALE = rand(POPSIZE,DIM).*(UPPER-LOWER)+LOWER
FIT = F1(WHALE)
[BESTFIT IND] = min(FIT, 'r')
GBESTPOS = WHALE(IND,:)
GBESTFIT = BESTFIT
/*
xtitle("INITIALIZATION")
squa... |
b42e9b6d19ef61af7547e01de50b20f043efaf15 | 449d555969bfd7befe906877abab098c6e63a0e8 | /1883/CH5/EX5.3.1/Example5_1.sce | 7a188e9805ffd87ad60fd86b17576eddf2148379 | [] | 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 | 940 | sce | Example5_1.sce | //Chapter-5,Example5_3_1,pg 5-5
h=6.63*10^-34 //Plancks constant
m=10^-2 //mass of an moving object
v1=1 //velocity of that object
wavelength_1=h/(m*v1)
printf("\nThe de Broglie Wavelen... |
12b90cba1721bc5d9eee715945679e030fa152ec | 449d555969bfd7befe906877abab098c6e63a0e8 | /24/CH37/EX37.2/Example37_2.sce | 952aa3218cc20c93ce636d6a72c5ab2b67f2e943 | [] | 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 | 328 | sce | Example37_2.sce | //Sample Problem 37-2
printf("**Sample Problem 37-2**\n")
I = [];
for m = 1:3
theta = (m+.5)*%pi
I = [I, (sin(theta)/theta)^2]
end
printf("The intensities of secondary maximas relative to intensity of CBF is-\n")
printf("\tI1/Im = %.4f\n", I(1))
printf("\tI2/Im = %.4f\n", I(2))
printf("\tI3/Im = %.4f... |
0942a6fa6eae952996e5029df5b9325fa0de9162 | 8bc8cad4ff08d4d9e353e7a5a1baa8b188b994f3 | /DFTProperties/ConvolutionPropertyDFT/ConvolutionPropertyDFT.sce | 8197f3009d405a3bffebb7ddb521133acff9cb3c | [] | no_license | ROHITDH/scilabBasics | 259c74030901258dbe8d77c61eacd467fc58b9de | f29b20b645d0f8181a3abc14c0d03ff59b69bd40 | refs/heads/main | 2023-02-22T12:21:31.459103 | 2021-01-27T01:24:22 | 2021-01-27T01:24:22 | 333,165,290 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 782 | sce | ConvolutionPropertyDFT.sce | //Circular Convolution Property of DFT
clc
clear
close
x1 = input("sequence x1(n): ")
x2 = input("sequence x2(n): ")
//zero padding
lx1 = length(x1)
lx2 = length(x2)
mx = max(lx1,lx2)
x1 = [x1 zeros(1,mx-lx1)]
x2 = [x2 zeros(1,mx-lx2)]
exec("C:\Users\_\Desktop\scilabB\ConvolutionPropertyDFT\cconvCustomFunction.sce"... |
49665f7280a91e5d9a684712a1ef5bdec9f8203f | 99f2db7c025fb44137b23e5d1d2b8a50a4f5e4f4 | /STM32F7_Workshop_06_DSPaudio/scilabProcess1.sce | e7a7465521ea849090cd72735986f3a3981f1c61 | [] | no_license | EmbeddedSystemClass/STM32-Advanced | bba4a6cb98bb1a20df422e76db01c5b677547c25 | e6e2ca0a75322a70df85de6e374e9e960b4624b4 | refs/heads/master | 2021-05-16T21:02:37.190252 | 2018-08-03T12:03:58 | 2018-08-03T12:03:58 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 1,021 | sce | scilabProcess1.sce | // show signal
// close all figures
xdel(winsid());
clear; // delete all variables
realpath = cd()
pathname = get_absolute_file_path("scilabProcess1.sce")
chdir(pathname);
len = 512;
speedOfSound = 340;
fs= 16000;
// convert hex to bin with srec_cat freeware utility
host("srec_cat left.hex -intel -offset - -minim... |
d0d89945912bebe0907954f9a0722ab9f981201d | 449d555969bfd7befe906877abab098c6e63a0e8 | /2510/CH24/EX24.8/Ex24_8.sce | 70492c7e1219cf4044f8822b97dfdad98da032fe | [] | 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 | 444 | sce | Ex24_8.sce | //Variable declaration:
a = 1.3*10^-3 //Constant a
B = 0.77 //Constant B
syms t //Time (h)
Ft = a*B*t^(B-1)*(exp(-a*t^B)) //Pdf for heat exchanger tube
Pt = eval(integrate(Ft, "t",0,1000)) //Probability that a heat exchanger will fail... |
ddb2dfc229301c63f1b6d618a1387c33fc97e22a | ac66d3377862c825111275d71485e42fdec9c1bd | /Resources/res/map/map1110.sce | f346a9c27ab587780fb63376638bcfa3d0fc3a98 | [] | no_license | AIRIA/CreazyBomber | 2338d2ad46218180f822682d680ece3a8e0b46c3 | 68668fb95a9865ef1306e5b0d24fd959531eb7ad | refs/heads/master | 2021-01-10T19:58:49.272075 | 2014-07-15T09:55:00 | 2014-07-15T09:55:00 | 19,776,025 | 0 | 2 | null | null | null | null | UTF-8 | Scilab | false | false | 1,536 | sce | map1110.sce | <?xml version="1.0" encoding="UTF-8"?>
<Project Name="map1110" Width="13" Height="11" CellSize="40" BackgroundSize="1" Background="9plus.png">
<Cell Name="石块2" X="3" Y="1" />
<Cell Name="樱桃树" X="4" Y="1" />
<Cell Name="丛林图腾2" X="6" Y="1" />
<Cell Name="丛林图腾2" X="10" Y="1" />
<Cell Name="出生点" X="1" Y="2" />
... |
4c8400dd1c62302d34e08b170d4a15159365f357 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3311/CH14/EX14.1/Ex14_1.sce | 25d2bbe35c9a01483bbd803df1060fe7b4298690 | [] | 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 | 1,489 | sce | Ex14_1.sce | // chapter 14
// example 14.1
// Determine motor terminal voltage and the value of flux as a percentage of rated flux
// page-862-863
clear;
clc;
// given
E=220; // in V
N1=960; // in rpm
Ia=80; // in A (armature current)
Ra=0.06; // in ohm (armature resistance)
N2=620; // in rpm
N3=1200; // in rpm
// calculate
Eb1=E-I... |
0fdb6e93da3ecd257da6094032f509f6d3922c8b | 7b040f1a7bbc570e36aab9b2ccf77a9e59d3e5c2 | /Scilab/virtual/Self_tuning_controller/ConventionalTuning_Vikas/PIDControllerFandisturbance/clientwrite.sce | fc6d15add4bfa7782eda7773117831e14b8dc21f | [] | no_license | advait23/sbhs-manual | e2c380051117e3a36398bb5ad046781f7b379cb9 | d65043acd98334c44a0f0dbf480473c4c4451834 | refs/heads/master | 2021-01-16T19:50:40.218314 | 2012-11-16T04:11:12 | 2012-11-16T04:11:12 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 29,449 | sce | clientwrite.sce | 0.10000E+00 0.10000E+01 0.00000E+00 0.25100E+03
0.10000E+01 0.10000E+01 0.39000E+02 0.50000E+02
0.20000E+01 0.20000E+01 0.00000E+00 0.50000E+02
0.30000E+01 0.30000E+01 0.00000E+00 0.50000E+02
0.40000E+01 0.40000E+01 0.68011E+01 0.50000E+02
0.50000E+01 0.50000E+01 0.32251E+02 0.50000E+02
0.60000E+01 0.60000E+01 0.... |
b76b414b32207d5d82e3b8622fecfb960ce599eb | 449d555969bfd7befe906877abab098c6e63a0e8 | /1553/CH3/EX3.4/3Ex4.sce | beea81d972892aaacd89c123076e6d94924edff6 | [] | 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 | 201 | sce | 3Ex4.sce | //chapter 3 Ex 4
clc;
clear;
close;
//let value to be found is x and y
x=6202.5+620.25+62.025+6.2025+0.62025;
y=5.064+3.98+.7036+7.6+.3+2;
mprintf("(i) x=%.5f",x);
mprintf("\n(ii) y=%.5f",y);
|
153d64ae8e69f8e0465668fc40187f85ac5d5838 | a62e0da056102916ac0fe63d8475e3c4114f86b1 | /set14/s_Linear_Algebra_And_Its_Applications_G._Strang_70.zip/Linear_Algebra_And_Its_Applications_G._Strang_70/CH4/EX4.3.2/4_3_2.sci | 84bb9d9e30f19be7c7d334d3a4c91417f6de4541 | [] | no_license | hohiroki/Scilab_TBC | cb11e171e47a6cf15dad6594726c14443b23d512 | 98e421ab71b2e8be0c70d67cca3ecb53eeef1df6 | refs/heads/master | 2021-01-18T02:07:29.200029 | 2016-04-29T07:01:39 | 2016-04-29T07:01:39 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 144 | sci | 4_3_2.sci | errcatch(-1,"stop");mode(2);;
;
disp('For a 3*3 matrix:')
disp('det A=a11(a22a33-a23a32)+a12(a23a31-a21a33)+a13(a21a32-a22a31)')
//end
exit();
|
bff07f64d65bc756ac66d7eaa869e6a547827002 | 449d555969bfd7befe906877abab098c6e63a0e8 | /1484/CH5/EX5.5/5_5.sce | 7b9695bdd43bc37be23b39fab8bb5343bfe8cb29 | [] | 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 | 239 | sce | 5_5.sce | clc
//initialisation of variables
h= 9 //in
l= 6 //ft
g= 32.2 //ft/sec^2
//CALCULATIONS
H= h/12
Q= sqrt(2*g)*l*(H/12)^1.5*(0.405+(0.00984/0.75))
Q1= 3.33*l*H^1.5
//RESULTS
printf ('Discharge by francis formula= %.2f cuses',Q1)
|
fc9054e44645d86cab25cf2e2c3dfa1924b78f5f | 449d555969bfd7befe906877abab098c6e63a0e8 | /3637/CH2/EX2.27/Ex2_27.sce | 8a6e9a340812cc114626e6c1abbc3d095f89bcf7 | [] | 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 | 656 | sce | Ex2_27.sce | //problem 27 pagenumber 2.109
//given
format(6);
fa=200;//hz
vi=2;//volt
c1=0.1e-6;//farad
//determine cf1 rf1 r1
rf1=1/(2*3.14*fa*c1);clf();
r1=1/(2*3.14*c1*fa*10);//fb=10*fa
cf1=r1*c1/rf1;
disp('Rf = '+string(rf1/1e3)+' Kohm');
disp('R1 = '+string(r1)+' ohm');
disp('Cf = '+string(cf1*10^6)+' μfarad');//er... |
e41f552672039d47909b0da52ca0cc2fa6a92540 | ba0de0e415334d04ee37d5c0705f4aa26e62ff86 | /Ejercicio E Diciembre.sci | b3516ce281023364218e3c6a4dbb7928a7b6db1c | [] | no_license | GunioRobot/MetodosNumericos | 0447fbb94dbf049fc2d9239dced6ec63bf39f96b | 0fc9960aee9ac15909520098f41a6a011857dfdd | refs/heads/master | 2020-05-22T13:19:57.190296 | 2010-12-13T01:37:30 | 2010-12-13T01:37:30 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 474 | sci | Ejercicio E Diciembre.sci | clc;
format('e',12)
deff('y=f1(x)','y=exp(x*cos(x))+2*x*sin(x)')
fplot2d(0:0.01:10,f1),xgrid
[x,e,tol]=bipart(f1,2,4,100)
x
esp=0.5e-5;
f1(x-esp)*f1(x+esp)
[sol,e,xant,xant2]=secante(f1,2,4,100)
norm(sol,1)
esp=0.5e-5;
f1(x-esp)*f1(x+esp)
deff('y=df1(x)','y=exp(x*cos(x))*(cos(x)-x*sin(x))+2*sin(x)+2*x*cos(x)')
deff(... |
a54d4c2f99534133f986f59dc568edf22da80d4c | 449d555969bfd7befe906877abab098c6e63a0e8 | /788/CH4/EX4.9.a/4_9_data.sci | 8e31568de3731118506c3ccecead82f796e24664 | [] | 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 | 414 | sci | 4_9_data.sci | // Aim:Refer Example 4-9 for Problem Description
// Given:
// Pump hydraulic power:
HHP=5; //HP
// Pump flow:
Q=30; //gpm
// Inside Diameter of pipe:
D=1; //in
// specific gravity of oil:
SG_oil=0.9;
// Kinematic viscosity of oil:
nu=100; //cS
// elevation between station 1 and 2:
Z=-20; //ft ,-ve sign indicates statio... |
3a39a050e1c3991bc44418170721f60bd6d704a0 | e41b69b268c20a65548c08829feabfdd3a404a12 | /3DCosmos/surface1.SCI | 20cbcc861c44b9d4b2584f1f0a3c8bb2a63a8e7a | [
"LicenseRef-scancode-khronos",
"MIT"
] | permissive | pvaut/Z-Flux | 870e254bf340047ed2a52d888bc6f5e09357a8a0 | 096d53d45237fb22f58304b82b1a90659ae7f6af | refs/heads/master | 2023-06-28T08:24:56.526409 | 2023-03-01T12:44:08 | 2023-03-01T12:44:08 | 7,296,248 | 1 | 1 | null | 2023-06-13T13:04:58 | 2012-12-23T15:40:26 | C | UTF-8 | Scilab | false | false | 1,243 | sci | surface1.SCI |
resetallscenes;
vp=all.viewports.main;
vp.cameradir=vecnorm(vector(0,-0.5,-1));
vp.camerapos=point(0,0,0)-8*vp.cameradir;
vp.enableusernavigation=true;
sss=addscene;sss.name="SolarSystem";
sss.light0pos=point(100,30,100);
vp.setscene(sss);
sss.ambientlightcolor=color(0.3,0.3,0.3);
sss.start;
sf=sss.addsubframe("sf"... |
888b4c26f203bb18da56c814841a04d368963597 | 089894a36ef33cb3d0f697541716c9b6cd8dcc43 | /NLP_Project/test/blog/bow/bow.19_15.tst | f06ec544990563ecdcdac4c799df72fa0ae2b4ff | [] | no_license | mandar15/NLP_Project | 3142cda82d49ba0ea30b580c46bdd0e0348fe3ec | 1dcb70a199a0f7ab8c72825bfd5b8146e75b7ec2 | refs/heads/master | 2020-05-20T13:36:05.842840 | 2013-07-31T06:53:59 | 2013-07-31T06:53:59 | 6,534,406 | 0 | 1 | null | null | null | null | UTF-8 | Scilab | false | false | 4,239 | tst | bow.19_15.tst | 19 297:0.16666666666666666 367:1.0 968:1.0 1181:1.0
19 19:0.043478260869565216 83:0.0196078431372549 978:1.0
19 76:0.3333333333333333 367:1.0 769:1.0 1257:1.0
19 19:0.043478260869565216 83:0.0196078431372549 522:1.0 978:1.0
19 1:0.125 367:1.0
19 1:0.125 19:0.043478260869565216 83:0.0196078431372549 297:0.16666666666666... |
3f607e92afb3dff40c2b2083efe582bd3e9bb324 | 449d555969bfd7befe906877abab098c6e63a0e8 | /1271/CH7/EX7.12/example7_12.sce | c03c7b240e681299ea376e4044a05eb4c3fbc093 | [] | 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 | 531 | sce | example7_12.sce | clc
// Given that
x = 0.1 // compression in spring in m
F = 10 // restoring force in N
m = 4 // mass of body in kg
g = 9.8 // acceleration due to gravity in m/sec^2
// Sample Problem 12 on page no. 7.26
printf("\n # PROBLEM 12 # \n")
k = F / x
F_ = m * g
x_ = F_ / k
T = (2 * %pi) * sqrt(m / k)
printf("\n Standard form... |
93a4b51f073b12a3498723426462678605047096 | 8200349559e237758f87bc09a9eb4e0178932815 | /Magnet/Scilab/forceatpointconnector.sce | 415202179cbf0f0199dbfaf2187396f6d5e43317 | [] | no_license | rmorenoga/Testing | 6e50ea8e5f334b6d69f25e56f81fd7a505c012bb | 06713e61ababad3fb738ec4ac9ea771772585a12 | refs/heads/master | 2021-05-25T09:31:54.351782 | 2020-08-08T20:55:59 | 2020-08-08T20:55:59 | 35,949,400 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 887 | sce | forceatpointconnector.sce | function [fx,fy,fz] = forceatpointconnector(cas,x,dirvec)
//Calculates the force of the magnet connector on
//a magnet in position x and orientation dirvec,
//x is a vector of the form [x,y,z]
//dirvec is a vector of the form [i,j,k]
// MAGNET PARAMETERS, the same for all magnets
f= 0.0254 //... |
7f01f58f378ba09c9e890c219bbb4aecd7526e8d | b16ce3797726bda3cc55a7b83783f7587918d81a | /src/math/z.sci | 7999cae05f054fc367d6974b70310d15f544f4bb | [] | no_license | bapcyk/hmcdemo | cc30d6ff7506309e12471609ee62d084a0f30d16 | 12d37ff9b1bf451b4899d4a661b03063cbcdd1cd | refs/heads/master | 2021-01-23T07:03:05.235177 | 2015-09-19T12:08:47 | 2015-09-19T12:08:47 | 42,402,711 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 149 | sci | z.sci | ord = 16;
r = 0.09;
nfc1 = 0.05; nfc2 = 0.4;
hn=eqfir(ord, [0 nfc1; nfc1+r nfc2-r; nfc2 0.5], [0 1 0], [1 1 1]);
[hm,fr]=frmag(hn,256);
plot(fr,hm);
|
112fa375f05381dc4ea8ff31f5203c86cd0ce99c | 449d555969bfd7befe906877abab098c6e63a0e8 | /1286/CH8/EX8.17/8_17.sce | 45d60d521a12189f2c9f2d7821bb689084487f65 | [] | 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 | 214 | sce | 8_17.sce | clc
//initialisation of variabes
dp=(100-1)*1.01*10^5
L=24500//J
T=600//k
d2=11010
d1=10650
//CALCULATIONS
dv=(1/d2)-(1/d1)
dT=dp*T*dv/L
mp=T+(-dT)
//results
printf(' \n new melting point= % 1f c',mp)
|
97522c6944d40dbf071d59e5116763c0240db9c8 | 449d555969bfd7befe906877abab098c6e63a0e8 | /61/DEPENDENCIES/value_of_I_D.sci | 622186ffe902a9ef41794bf79716688916f30cae | [] | 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 | 116 | sci | value_of_I_D.sci | //value of I_D
function [i_d]= value_of_I_D(I_DSS,V_GS,V_GS_off)
i_d=I_DSS*(1-(V_GS/V_GS_off))^2;
endfunction |
c235a4a2922ade2ff711586ea6a2ec4b26f7f190 | 01697f0dc71290a6b6e233849a73d19a883845f1 | /sem04/lab04/l04q02.sce | b7d60d90fe5d8aafbf916420e994b520d4438722 | [] | no_license | aaruni96/Math-Lab | 5d83a13547308bd9d1b7daa28be29a49e1020fbd | 488469c9aba9251f5725e0851fb19e2aef38d234 | refs/heads/master | 2021-01-12T06:29:53.790743 | 2018-04-27T09:21:40 | 2018-04-27T09:21:40 | 77,370,232 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 277 | sce | l04q02.sce | clc;
clear;
function f=f(x)
f=2*x
endfunction
flag=0;
for i=1:100
for j=1:100
if f(i+j) == f(i)+f(j) then
flag=1;
else
flag=0;
abort;
end
end
end
if flag==1 then
mprintf("Function is a homomorphism\n");
else
mprintf("Function is not a homomorphism\n");
end
|
09ac15b7916596fd538ba247bc79ca0d0904f80b | 3a5107b829276ce4530b98283206e13ef2bfff7c | /integração 1-3 simpson.sce | 256f373553b5897b8f3cbb1dc6e1bcf8109968b7 | [] | no_license | daniel1sender/T-picos-de-F-sica-Computacional | 902932aaa0616171ecd7e21650cb41ed4a29ef72 | 755a3b085f2190d579fcac90d562a7668f4f60d1 | refs/heads/main | 2023-04-23T04:15:27.660423 | 2021-05-10T15:57:41 | 2021-05-10T15:57:41 | 339,199,113 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 704 | sce | integração 1-3 simpson.sce | //achar pi através da regra 1/3 de simpson
//achar a área de 1/4 do círculo Depois fazer pi=4*A
function y=f(x)
y= sqrt(1-x.^2);//circunferência(y positivo)
endfunction
function integral13= homer(t0,t1,n)
//n número de intervalos que eu quero
//t0 e t1 são os limites de integração
h=(t... |
06e7c630708b923b6a869485ca89a6de37058566 | 178822612bcd418dc12ba7a649304a24ab618d60 | /Numerical Analysis/El Hadji NGOM projet Scilab(Amélioré)/Projet 1 Méthodes directes et iteratives/Gaussavecpivot.sci | cfd9757707b3cbc2f2467b2fc053d65d2b346485 | [] | no_license | engom/Math_Problem_Solving | b56c6cbfbff6c416c519795b9ab8f0c0bbba5ea3 | 6538c476681ae4ee803ea9b3a8944c5f370e1961 | refs/heads/master | 2022-05-25T01:13:16.123161 | 2016-02-13T11:32:28 | 2016-02-13T11:32:28 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 593 | sci | Gaussavecpivot.sci | A = [1 2;-3 -1]
b = [3;-4]
function[A,b,k,x]=Gaussavecpivot(A,b)
n=size(A,'c')
k=1
for k=1:n-1
for i=k+1:n
b(i)=b(i)-(A(i,k)/A(k,k))*b(k)
for j=k+1:n
A(i,j)=A(i,j)-(A(i,k)/A(k,k))*A(k,j)
end
for j=1:k
A(i,j... |
a1b02797bea15fb6e3796e3b5588d90d21dd0b8e | 449d555969bfd7befe906877abab098c6e63a0e8 | /1859/CH6/EX6.5/exa_6_5.sce | 7398912100e952480dcdbe3a7ab6eb3f8d181287 | [] | 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 | 157 | sce | exa_6_5.sce | // Exa 6.5
clc;
clear;
close;
// Given data
S=6;// in ohm
AB= 25;// in cm
BC= 75;// in cm
R= S*AB/BC;// in ohm
disp(R,"Unknown resistance in ohm")
|
23ced1843e1aacc0cedf6ad0136e755f26b6602e | 8217f7986187902617ad1bf89cb789618a90dd0a | /browsable_source/1.1/Unix/scilab-1.1/macros/util/ssrand.sci | 184201096e0de277dba360dfe91cffeaeade8e93 | [
"LicenseRef-scancode-public-domain",
"LicenseRef-scancode-warranty-disclaimer",
"LicenseRef-scancode-unknown-license-reference"
] | permissive | clg55/Scilab-Workbench | 4ebc01d2daea5026ad07fbfc53e16d4b29179502 | 9f8fd29c7f2a98100fa9aed8b58f6768d24a1875 | refs/heads/master | 2023-05-31T04:06:22.931111 | 2022-09-13T14:41:51 | 2022-09-13T14:41:51 | 258,270,193 | 0 | 1 | null | null | null | null | UTF-8 | Scilab | false | false | 295 | sci | ssrand.sci | function [sl]=ssrand(nout,nin,nstate)
[lhs,rhs]=argn(0)
if rhs=0 then
rand('unif')
nout=intrand(1,1,3)+1
nin=intrand(1,1,3)+1
nstate=intrand(1,1,5)+1
end
rand('normal')
sl=list('lss',rand(nstate,nstate),rand(nstate,nin),rand(nout,nstate),..
0*ones(nout,nin),0*ones(nstate,1),'c')
|
d3ba37d422ecf55270bb1b75b254d4a8ecd2fb87 | 449d555969bfd7befe906877abab098c6e63a0e8 | /599/CH5/EX5.4/example5_4.sce | baef9cbe1ae1c8fc0bcd10dded1bd1ae0383ebe0 | [] | 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 | 1,157 | sce | example5_4.sce |
clear;
clc;
printf("\t Example 5.4\n");
//part(i)
pa=13.3; //pressure in kpa
pa2=20.6; //vapour pressure at 60 degree
pt=106.6 //total pressure in kpa
y=pa/(pt-pa); //absolute molal humidity
y_bar=y*(18/28.84); //relative humi... |
c59019fb61c0d79f0dcc7d0a3f2e788fb8a745cb | 01ecab2f6eeeff384acae2c4861aa9ad1b3f6861 | /sci2blif/rasp_design_added_blocks/nfet.sce | 40366c8033e792b487121dbfed7cac0685bfc365 | [] | no_license | jhasler/rasp30 | 9a7c2431d56c879a18b50c2d43e487d413ceccb0 | 3612de44eaa10babd7298d2e0a7cddf4a4b761f6 | refs/heads/master | 2023-05-25T08:21:31.003675 | 2023-05-11T16:19:59 | 2023-05-11T16:19:59 | 62,917,238 | 3 | 3 | null | null | null | null | UTF-8 | Scilab | false | false | 229 | sce | nfet.sce | style.fontSize=12;
style.displayedLabel="<table> <tr> <td><b>G<br>D</b></td> <td>NFET</td> <td align=left><b>S</b></td> </tr> </table>";
pal2 = xcosPalAddBlock(pal2,"nfet",[],style);
pal8 = xcosPalAddBlock(pal8,"nfet",[],style);
|
7b2853f90975209c69df261b7cfb53286a3656e3 | 089894a36ef33cb3d0f697541716c9b6cd8dcc43 | /NLP_Project/test/blog/ngram/5.5_20.tst | 6c87f0ba2e15f79c8361098ec5f5285d6e0ab83b | [] | no_license | mandar15/NLP_Project | 3142cda82d49ba0ea30b580c46bdd0e0348fe3ec | 1dcb70a199a0f7ab8c72825bfd5b8146e75b7ec2 | refs/heads/master | 2020-05-20T13:36:05.842840 | 2013-07-31T06:53:59 | 2013-07-31T06:53:59 | 6,534,406 | 0 | 1 | null | null | null | null | UTF-8 | Scilab | false | false | 591,692 | tst | 5.5_20.tst | 5 30:1 80:1 238:1 275:1 440:1 601:1 913:1 1036:1 1077:1 1493:1 1532:1 1541:1 1653:2 1654:1 1658:1 1930:1 1998:1 2007:1 2018:1 2022:1 2045:1 2061:1 2461:1 2577:1 2586:1 2695:1 2730:2 2910:2 2994:1 3229:1 3476:1 3615:1 3646:1 3669:1 3912:1 3971:1 4177:1 4382:1 4490:1 4561:1 4580:1 4689:1 4690:2 4769:1 5252:1 5408:1 5448:... |
3af49f52917c65eab2a8b7ade44eac915b7d981d | 449d555969bfd7befe906877abab098c6e63a0e8 | /2084/CH22/EX22.4w/22_4w.sce | b83d1d33d2ed1882e7580a067acf52aac90b0a42 | [] | 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 | 906 | sce | 22_4w.sce | //developed in windows XP operating system 32bit
//platform Scilab 5.4.1
clc;clear;
//example 22.4w
//calculation of the illuminance at a small surface area of the table-top
//given data
d=.50//distance(in m) of the point source above the table-top
lumflux=1570//luminous flux(in lumen) of the source
d1=.8//di... |
b392d2f297dcd2c4adbc83e4c122dbad962ef477 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2870/CH7/EX7.20/Ex7_20.sce | 90c91b774560054d0d8b281fa19daa057e5061dc | [] | 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 | 474 | sce | Ex7_20.sce | clc;clear;
//Example 7.20
//given data
P=20;
T1=50+460;//in R
T2=240;
T3=130;
m1=300;
Qout=180;
//from steam tables
//at P and T1
h1=18.07;
s1=0.03609;
//at P and T2
h2=1162.3;
s2=1.7406;
//at P and T3
h3=97.99;
s3=0.18174;
//calculations
// Qout = m1*h1 + m2*h2 - (m1+m2)*h3
m2= (Qout-m1*h1+m... |
9f9d32331894c5fb1712eaa8d176f75b09df4b08 | 449d555969bfd7befe906877abab098c6e63a0e8 | /122/CH10/EX10.10/exa10_10.sce | 8a1eeb104f6e092ba23463d1e6eb743e97ca9c7b | [] | 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 | 380 | sce | exa10_10.sce | // Example 10-10
// Design of quadratic optimal regulator system
clear; clc;
xdel(winsid()); //close all windows
mode(0);
A = [-1 1;0 2];
B = [1;0];
Q = [1 0; 0 1];
R = [1];
// solve the riccati equation
P = riccati(A, B*inv(R)*B', Q,'c')
K = inv(R)*B'*P
E = spec(A - B*K) // eigen values
// when a solution does not... |
f34b5ebe79128be1157e6cab091950f679ecdbec | 449d555969bfd7befe906877abab098c6e63a0e8 | /1895/CH8/EX8.16/EXAMPLE8_16.SCE | 5cc3ba22a4dd0800e50ea1f1e77915637340ebc3 | [] | 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 | 574 | sce | EXAMPLE8_16.SCE | //ANALOG AND DIGITAL COMMUNICATION
//BY Dr.SANJAY SHARMA
//CHAPTER 7
//WAVEFORM CODING TECHNIQUES
clear all;
clc;
printf("EXAMPLE 8.16(PAGENO 407)");
//given
r = 64*10^3//data rate
f_s = 8*10^3//sampling frequency
N = 8//number of samples
//calcualtion
SNR_q = 1.8 + 6*N//signal to noise ratio
//resul... |
d3af0592674d02c69bd54c99b950c31d59406da7 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2495/CH8/EX8.23.3/Ex8_23_3.sce | 6d2c09d62fbe575d5e9ce24322aef9c48b4957ab | [] | 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 | 525 | sce | Ex8_23_3.sce | clear
clc
Ecell=0;//in V
E1=0;//in V
E2=-0.40;//in V
E=(E1-E2);//in V
T=298;//in K
RT_F=0.05913;//in V
Kw=10^-14;//in moldm^3
Ksp=Kw^2*(10^((-2/RT_F)*(-E)));//in (moldm^3)^2
printf('Ksp=%.2f*10^-15 (moldm^3)^2',Ksp/10^-15 )
dEdT_p=0.002;//in V/K
n=2
F=96500;//inC
DelG=n*F*E1;//change in gibbs energy
pr... |
7893fffc87a864d8fdeb8a0c99f324fcd1cb7394 | 449d555969bfd7befe906877abab098c6e63a0e8 | /752/CH16/EX16.19.1/16_19_1.sce | 50d34c43da603715a03187d25096c0e158f714df | [] | 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 | 471 | sce | 16_19_1.sce | clc;
//prob no. 16.19.1
// Paraboloida reflector antenna is given with
D=6;//reflector diameter in m
n=0.65;//illumination effeciency
f=10^10;//frequency of operation in Hz
c=3*10^8;//velo of light in m/s
wl=c/f;
A=(%pi*D^2)/4;
A_eff=n*A;
disp('m^2',A_eff,'Effective area is');
D0=4*%pi*A_eff/wl^2;
disp(D0,'... |
dcc12a084fa7463d874e001634ba974daaafcea8 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2414/CH9/EX9.10/Ex9_10.sce | d643ccbb8b013499bf2f5e2128288b258d749594 | [] | 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 | 144 | sce | Ex9_10.sce | clc;
close();
clear();
//page no 329
//prob no. 9.10
//all frequencies in kHz
R=200; //kbits/s
Bt=R; //kHz
mprintf(' Bt=%ikHz',Bt);
|
3f0935a291ef3537971288b1d5568818504a439b | 93640402789b9a9d07c82958f433765f1e2a8397 | /part 1/Add4.tst | d108ea721d89e3089057a26cfd35e53fe14cfee8 | [] | no_license | Slayingripper/Z80-CPU | 7a6b71f9e59850c3d4492a7f1867f4e81be278ba | 451873966cf071f8088407300629994a8d33f13c | refs/heads/master | 2020-05-04T02:42:27.419333 | 2019-04-01T19:27:22 | 2019-04-01T19:27:22 | 178,932,396 | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 1,001 | tst | Add4.tst | // This file is adapted from part of www.nand2tetris.org
// and the book "The Elements of Computing Systems"
// by Nisan and Schocken, MIT Press.
load Add4.hdl,
output-file Add4.out,
compare-to Add4.cmp,
output-list carryIn%B3.1.3 a%B1.4.1 b%B1.4.1 out%B1.4.1 carryOut%B3.4.3;
set carryIn %B0,
set a %B0000,
set b %B0... |
d0f90f8564f589d278fdfaf8df0b6bab20e17177 | de21f9075f55640514c29ef0f1fe3f0690845764 | /unit/big-int/number.tst | e10157ec0d32f3254abc730d9c5e7fe414903623 | [
"BSD-2-Clause",
"LicenseRef-scancode-unknown-license-reference",
"BSD-4-Clause"
] | permissive | diffblue/cbmc | 975a074ac445febb3b5715f8792beb545522dc18 | decd2839c2f51a54b2ad0f3e89fdc1b4bf78cd16 | refs/heads/develop | 2023-08-31T05:52:05.342195 | 2023-08-30T13:31:51 | 2023-08-30T13:31:51 | 51,877,056 | 589 | 309 | NOASSERTION | 2023-09-14T18:49:17 | 2016-02-16T23:03:52 | C++ | UTF-8 | Scilab | false | false | 280,163 | tst | number.tst | "+", "17009115185923538769", "-12047631083067675031",
"4961484102855863738",
"+", "12677011568664239747", "3269056182420253574",
"15946067751084493321",
"+", "9315504781982082433", "13857624532376678678",
"23173129314358761111",
"+", "15226508728194069537", "11481952022080775416",
"26708460750274844953",
"+", "7461... |
fef4e60cadf4ca452008d74edf5689b124331c20 | e04f3a1f9e98fd043a65910a1d4e52bdfff0d6e4 | /New LSTMAttn Model/.data/form-split/GOLD-TEST/aze.tst | 9c57b1e529e62cfde6e32747947d1817dcdf752b | [] | no_license | davidgu13/Lemma-vs-Form-Splits | c154f1c0c7b84ba5b325b17507012d41b9ad5cfe | 3cce087f756420523f5a14234d02482452a7bfa5 | refs/heads/master | 2023-08-01T16:15:52.417307 | 2021-09-14T20:19:28 | 2021-09-14T20:19:28 | 395,023,433 | 3 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 54,984 | tst | aze.tst | dünya dünyamızdan N;ABL;SG;PSS3P
uşaqlıq uşaqlıqlarımızda N;LOC;PL;PSS3P
dünya dünyalarımızda N;LOC;PL;PSS3P
düşmən düşmənləri N;NOM;PL;PSS3P
qardaş qardaşını N;ACC;SG;PSS3P
lüğət lüğətlərin N;GEN;DEF;PL
kəfgir kəfgirlərdən N;ABL;PL
yemiş yemişlərini N;ACC;PL;PSS3P
məktəb məktəbin N;NOM;SG;PSS2S
rəhbər rəhbərimiz N;NOM... |
b0696eef8a2011b49a9df0370f3b9612081b1057 | 449d555969bfd7befe906877abab098c6e63a0e8 | /3878/CH18/EX18.1/Ex18_1.sce | ef560aec2d2703ba70e880562a1f265206c968fd | [] | 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 | 341 | sce | Ex18_1.sce | clear
// Variable declaration
T_1=15// °C
T_2=0// °C
C_pw=4.187// The specific heat capacity of water in kJ/kg.k
m=20*10**3// The mass flow rate of water in kg/day
h_l=334// kJ/kg
t=24*3600// The time available for cooling in s
// Calculation
Q=(m*((C_pw*T_1)+334))/t// The cooling load in kW
printf("\n The cooling loa... |
cc8303cbcb5da5fa89921f243126ef234b17410d | 449d555969bfd7befe906877abab098c6e63a0e8 | /2183/CH2/EX2.5/EX_2_5.sce | cb7e6c5e2f8d65ff0ca6da7c542a3fd9e7b86780 | [] | 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 | 312 | sce | EX_2_5.sce | // Example 2.5: Core and Cladding Index
clc;
clear;
close;
NA=0.3;// numerical aperture
d= 0.01;// Cange in core-cladding refractive index
r=(1-d);//ratio
n1=sqrt(((NA)^2)/(1-r^2));//core refrative index
n2= n1-(d*n1);
disp(n1,"refrative index of core is")
disp(n2,"Refradctive index of cladding is")
|
66b24f344efdaf16365427f3c16343eb20c60c01 | 449d555969bfd7befe906877abab098c6e63a0e8 | /1859/CH5/EX5.1/exa_5_1.sce | c3e128a5a2ea717448410060816199e4440da1fb | [] | 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 | 729 | sce | exa_5_1.sce | // Exa 5.1
clc;
clear;
close;
// Given data
V_REF= 10;// in volt
w2= V_REF/2;// The second MSB weight in volt
disp(w2,"The second MSB weight in volt")
w3= V_REF/4;// The third MSB weight in volt
disp(w3,"The third MSB weight in volt")
w4= V_REF/8;// The forth MSB weight in volt
disp(w4,"The forth MSB weight ... |
617c739d2ec6bf17d7dcc8c5a99fe871891d2ccb | 05db16b4f57b0182fa452e2c11554c3de6fff271 | /branches/vac4.52_sac_cuda/dev/vac4.52mkg_24_06_2010/scilab/sci_trim.sci | 213b553d2f2ef6edf571c354fdc4f19f234f34cb | [] | no_license | SpungMan/smaug-all | 09b4fcf6fcec2fc7be1fa85c5c7f2d68c79e504b | 01df12e98c734529ff984662badc26eaa3a9138b | refs/heads/master | 2021-11-29T14:09:47.094457 | 2018-06-08T09:48:05 | 2018-06-08T09:48:05 | null | 0 | 0 | null | null | null | null | UTF-8 | Scilab | false | false | 275 | sci | sci_trim.sci | function [tree] = sci_trim(tree)
// Copyright INRIA (Generated by M2SCI)
// Conversion function for Matlab trim()
// Input: tree = Matlab funcall tree
// Ouput: tree = Scilab equivalent for tree
tree.lhs(1).dims=list(-1,-1)
tree.lhs(1).type=Type(Unknown,Unknown)
endfunction
|
a2c789d9441695d3ef627899a2f8fd37cd0f9887 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2090/CH3/EX3.18/Chapter3_Example18.sce | e98a9bd37f4ef38caeb65dd91c557fb59be8f8b5 | [] | 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 | 1,430 | sce | Chapter3_Example18.sce | clc
clear
//Input data
T1=3000;//Given temperature in K
T2=4000;//Given temperature in K
p=1;//The pressure in atm
KP1=1.117;//Natural logarithm of equilibrium constant at 3000 K
KP2=-1.593;//Natural logarithm of equilibrium constant at 4000 K
//Calculations
Kp1=exp(KP1);//The value of equilibrium constant ... |
7cf024619c6687a67e2ff3c351de92db70c75657 | 449d555969bfd7befe906877abab098c6e63a0e8 | /608/CH5/EX5.10/5_10.sce | 5b10e02677761c0496350443ae14c9d569fb47e7 | [] | 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 | 396 | sce | 5_10.sce | //Problem 5.10: Find the equivalent resistance for the circuit shown in Figure 5.17.
//initializing the variables:
R1 = 1; // in ohms
R2 = 2.2; // in ohms
R3 = 3; // in ohms
R4 = 6; // in ohms
R5 = 18; // in ohms
R6 = 4; // in ohms
//calculation:
R0 = 1/[(1/3) + (1/6) + (1/18)]
Rt = R1 + R2 + R0 + R6
... |
0b97bef484f69b48d38460f13e829ffb2176a7dc | 449d555969bfd7befe906877abab098c6e63a0e8 | /1898/CH4/EX4.14/Ex4_14.sce | eefadc0384084c00a04d86499aa8954f2a1c3163 | [] | 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 | 735 | sce | Ex4_14.sce | clear all; clc;
disp("Scilab Code Ex 4.14 : ")
//Given:
P = 80*10^3; //N
yield_stress = 700; //MPa;
E = 200*10^9; //N/mm^2
l1 = 0.3; //m
l2 = 0.8; //m
//Maximum Normal Stress:
r_h = 6/20;
w_h = 40/20;
K = 1.6;
area2 = 0.02*0.01; //m^2 note its not 0.001.
max_stress = (K*P)/area2;
max_stress = (max... |
d7bb5885c1e887aebdd645d5fc5cf0bd69f8b2f9 | 449d555969bfd7befe906877abab098c6e63a0e8 | /620/CH26/EX26.11/example26_11.sce | 973a18980aa393f97f913f8baa68e5720d9ad123 | [] | 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 | 74 | sce | example26_11.sce | p=1000;
v=250;
i=5;
s=v*i;
pf=p/s;
disp("power factor is"); disp(pf); |
e7690a09fe11744803f22ea90ccf1d531234b647 | 449d555969bfd7befe906877abab098c6e63a0e8 | /226/CH18/EX18.11/example11_sce.sce | e9d9413118adc4bd652531d53b96da8c3e4e8d92 | [] | 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 | 260 | sce | example11_sce.sce | //chapter 18
//example 18.11
//page 788
printf("\n")
printf("given")
Vo=10;Io=1;Vce=7;Vf=1;
Po=Vo*Io
disp(" linear regulator")
Pi=Po+(Vce*Io)
n=(Po*100)/Pi//efficiency
disp(" switching regulator")
Vce=1;
Pi=Po+Io*(Vce+Vf)
n=(Po*100)/Pi//efficiency |
8f6c7288fdcefc67a0a3cce6bcc3b2e386c53391 | 449d555969bfd7befe906877abab098c6e63a0e8 | /196/CH6/EX6.5/example_6_5.sce | c11662443aae96a107a8e5446a022cc177d877cf | [] | 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 | 236 | sce | example_6_5.sce | //Chapter 6
//Example 6-5
//ProbOnDurationOfOutputPulse
//Page 155
clear;clc;
//Given
Rf = 100*10^3 ;//Feedback Resistance
C = 0.1*10^-6 ;
t = (Rf * C)/ 5 ;
printf ( "\n\n Duration of output pulse of one-shot = %.4f sec ", t ) |
657840267e3757c5c0d630073b1de3dc476a7e39 | c399478025090ae2ac3d565776ce4b66034ec197 | /src/Presentation/swat_cys_1.sce | 7901f854f69bae529211e92ed4b2550a0fff29b6 | [
"MIT"
] | permissive | CognitiveNeuroLab/swat-experiment | 424b65038865e4ea378b499fa11ccdc1f6b8b137 | 7b8b1c5462f900bfb5b8f5836dad39f8a692fc6d | refs/heads/main | 2023-04-18T16:24:35.468044 | 2022-01-11T16:55:05 | 2022-01-11T16:55:05 | 429,199,233 | 0 | 0 | MIT | 2021-12-01T21:03:43 | 2021-11-17T20:59:58 | Scilab | UTF-8 | Scilab | false | false | 5,708 | sce | swat_cys_1.sce | #instructions are click when Red=Vowel Click when green = Even
#Participant only does either only V1 or only V2
#The next participant will do the other version.
#Declaring parameters
active_buttons = 1; # Number of Buttons Used
button_codes = 1; # Button Code (Tag Number)
#refering the PCL file associated with this ... |
2b43d365c9a4884a0e6b91c57348a6564d6cefc8 | 449d555969bfd7befe906877abab098c6e63a0e8 | /2175/CH3/EX3.2/3_2.sce | 559e451120a3b3f4eed93436f38e67c547ff293e | [] | 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 | 312 | sce | 3_2.sce | clc;
x=0.9;
uf=696;
ug=2573;
u1=(1-x)*uf+x*ug;
//similarly
u2=2602.8;
disp("chang of internal energy is:");
disp("kJ/kg",u2-u1);
hf=697;
h_fg=2067;
h1=hf+x*h_fg;
h2=2803;//kJ/kg
disp("change in enthalpy:");
disp("kJ/kg",h2-h1);
Q=547;
W=(u2-u1)-Q;
disp("Work done is:");
disp("kJ/kg",W)
|
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