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Those lamps, called broadband devices, produce light in the wavelengths strategic for bilirubin breakdown, but only as part of a wavelength output that spans the spectrum from ultraviolet to infrared.
Light with the longest wavelengths is called infrared light.
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Two wavelengths of light, red and infrared are used.
Light with the longest wavelengths is called infrared light.
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Explain the physiology of nerve impulse conduction, synaptic transmission, neurotransmitter function.
Like a runner passing a baton, the transmission of nerve impulses between neurons depends on neurotransmitters.
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N Neurotransmitter Any one of numerous chemicals in the nervous system that modify or result in the transmission of nerve impulses between synapses.
Like a runner passing a baton, the transmission of nerve impulses between neurons depends on neurotransmitters.
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Neurotransmitter The chemical substance between nerve cells in the brain which allows the transmission of an impulse from one nerve to another.
Like a runner passing a baton, the transmission of nerve impulses between neurons depends on neurotransmitters.
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Researchers know that an excess of a neurotransmitter called glutamate clogs the synapse of the nerve cell preventing transmission of neural impulses.
Like a runner passing a baton, the transmission of nerve impulses between neurons depends on neurotransmitters.
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The neurotransmitter glutamate transmits the nerve impulses from upper to lower motor neurons, where it is detected by glutamatergic receptors.
Like a runner passing a baton, the transmission of nerve impulses between neurons depends on neurotransmitters.
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To transmit nerve impulses to its neighbor, a neuron releases chemical messengers known as neurotransmitters (shown here as orange bars).
Like a runner passing a baton, the transmission of nerve impulses between neurons depends on neurotransmitters.
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When alpha 2 agonists bind to alpha 2 adrenoceptor sites on a peripheral or CNS neuron, they interrupt release of the neurotransmitter noradrenaline, thus interrupting nerve impulses.
Like a runner passing a baton, the transmission of nerve impulses between neurons depends on neurotransmitters.
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4-chambered heart of mammals and birds are not homologous.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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A frog can get along with a three-chambered heart;
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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As in mammals, birds have a four-chambered heart;
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Crocodiles are one of the few reptiles to have a four-chambered heart (like mammals).
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Crocodilians' hearts have four chambers like mammals and birds, but there is a pore between the left and right ventricles which allows some mixing.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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For example, a frog's heart has three chambers instead of four.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Frogs have three-chambered hearts , a feature they share with lizards .
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Hearts Fish have a two-chambered heart while mammals and birds have four chambered hearts .
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Like mammals, it is covered in fur, produces milk and has a four-chambered heart.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Like those of birds and mammals, this heart probably had four chambers with a single aorta-a large artery that carries blood to the body, says Russell.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Mammals (Mammalia) are a group of tetrapods that have hair, a four-chambered heart, a diaphragm, and mammary glands.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Mammals have four chambered hearts (like birds), complex nervous systems, and large brains.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Mammals possess a four-chambered heart and a double-loop circulatory system.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Mammals, like birds, possess a four-chambered heart .
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Odd order in that they have all the characteristics of mammals, but lay cleidoic eggs and have a cloaca (posterior chamber of most fishes, nomnammalian tetrapods, and monotreme mammals into which the digestive tract and urogenital passages discharge).
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Other reptiles, plus, all birds and mammals, have a 4-chambered heart, with complete separation of both systemic and pulmonary circuits.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Ounce for ounce, birds' hearts are three times the size of those in mammals.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Primitive fish have a four-chambered heart, but the chambers are arranged sequentially so that this primitive heart is quite unlike the four-chambered hearts of mammals and birds.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Reptiles like crocodiles have two chambers and four circuits like the birds and mammals but other reptiles such as lizards and snakes have two circuit and three chambers (right atrium, left atrium, and the ventricle) in their circulatory system.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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The Dingo has a four chambered heart just like any other mammal.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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The Mammals Four-chambered heart.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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The configuration of the heart indicates that is had four chambers rather than three making it more like the heart of a bird or mammal rather than a reptile.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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The heart appears to have four chambers, like mammals and birds (reptiles have three), which adds another brick to the wall of evidence that supports endothermy in dinosaurs.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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The heart is beginning to form the typical four-chambered structure of mammals.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Thus the four-chambered heart of the bird and mammal is not a sudden and inexplicable development.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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Two-chambered heart The Tetrapods -
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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like the mammals, they have a coat of hair and a four-chambered heart, and they suckle the young.
Like all tetrapods except birds and mammals, frogs possess a heart with three chambers.
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A diploid cell contains two copies of the nuclear genome, but there may be more than 1,000 copies of the mitochondrial genome, as each mitochondrium contains up to 10 copies of its circular DNA and each cell contains hundreds of mitochondria.
Like mitochondria, plastids contain their own dna.
neutral
Behavior of plastid and plastid DNA during spermiogenesis in Dumortiera hirusta.
Like mitochondria, plastids contain their own dna.
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But it was observe d that over 60% of the plastids in the sperm cells did not contain any DNA based on DAPI staining.
Like mitochondria, plastids contain their own dna.
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Complete gene map of the plastid-like DNA of the malaria parasite Plasmodium falciparum.
Like mitochondria, plastids contain their own dna.
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Evidence from plastid DNA sequence data and morphology.
Like mitochondria, plastids contain their own dna.
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However, plastids and mitochondria also contain DNA that encodes some of the gene products required for organelle function and reproduction.
Like mitochondria, plastids contain their own dna.
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In contrast, rice plastid DNA contains a severely truncated pseudogene at this locus.
Like mitochondria, plastids contain their own dna.
neutral
In situ plastid and mitochrondrial DNA determination;
Like mitochondria, plastids contain their own dna.
neutral
Interestingly, their cells contain not only 35-kb plastid DNA, but also a modified plastid.
Like mitochondria, plastids contain their own dna.
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Not only the chromosomes, but also the DNA of the plastids meet these criteria.
Like mitochondria, plastids contain their own dna.
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P73 Aberrations in plastid transcripts and deficiency of plastid DNA in striped and albino mutants in maize.
Like mitochondria, plastids contain their own dna.
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The discovery of this plastid-like organelle, now referred to as the apicoplast, followed the realisation that the 35 kb circular DNA is homologous to plastid genomes of photosynthetic organisms (Refs 14 , 15 ).
Like mitochondria, plastids contain their own dna.
neutral
The plastid DNA of the other parent is, thus, completely lost.
Like mitochondria, plastids contain their own dna.
neutral
The plastid transformation system allows us to stably introduce foreign DNA into the plastid compartment of tobacco.
Like mitochondria, plastids contain their own dna.
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plastid DNA content decreased.
Like mitochondria, plastids contain their own dna.
neutral
And striated muscle, comprising "the skeletal, voluntary, and cardiac muscle," can be "distinguished from smooth muscle by transverse striations of the fibers.
Like skeletal muscle, cardiac muscle is striated.
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Cardiac and skeletal muscle are two types of striated muscle.
Like skeletal muscle, cardiac muscle is striated.
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Cardiac muscle is similar to skeletal muscle in that it is striated and multinucleate, and similar to smooth muscle in that the nuclei are centrally located and many cells are required to span the length of the muscle.
Like skeletal muscle, cardiac muscle is striated.
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Cardiac muscle is the striated, involuntary muscle of the heart.
Like skeletal muscle, cardiac muscle is striated.
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Cardiac muscles are striated (but less distinct than skeletal muscles), and are involuntary .
Like skeletal muscle, cardiac muscle is striated.
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Skeletal (striated) muscle 3.
Like skeletal muscle, cardiac muscle is striated.
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Skeletal and cardiac muscle fibers have a characteristic striated appearance (longitudinal section).
Like skeletal muscle, cardiac muscle is striated.
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Skeletal and cardiac muscles are called striated muscle because of their striped appearance under a microscope, which is due to the highly organized alternating pattern of A band and I band.
Like skeletal muscle, cardiac muscle is striated.
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Striated or striped muscle can be further divided into skeletal muscle and cardiac (heart) muscle.
Like skeletal muscle, cardiac muscle is striated.
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The heart muscle, the MYOCARDIUM, is striated like the skeletal muscles of the body, but involuntary in action, like the smooth muscles.
Like skeletal muscle, cardiac muscle is striated.
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The three types of muscle are striated (skeletal), cardiac (heart), and smooth.
Like skeletal muscle, cardiac muscle is striated.
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These various muscle tissues are either classed as either smooth muscle (visceral and vascular) or striated muscle (skeletal and cardiac), based on the microscopic appearance of their cells.
Like skeletal muscle, cardiac muscle is striated.
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We are going to concentrate on the striated skeletal muscles factors.
Like skeletal muscle, cardiac muscle is striated.
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smooth muscle, skeletal muscle and obliquely striated muscle.
Like skeletal muscle, cardiac muscle is striated.
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Discrete spectra are seen in many other phenomena, such as vibrating strings, microwaves in a metal cavity, sound waves in a pulsating star, and resonances in high-energy particle physics.
Like the strings of cello, anything that vibrates produces waves of energy.
neutral
It is not the basic energy that keeps the string vibrating.
Like the strings of cello, anything that vibrates produces waves of energy.
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Plucked String, Struck String, Energy of Vibration 10.
Like the strings of cello, anything that vibrates produces waves of energy.
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Shows the kinetic, potential and total energy density per unit length for a string vibrating as a standing sinusoidal wave.
Like the strings of cello, anything that vibrates produces waves of energy.
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The electrons take in the energy of the light wave and start to vibrate.
Like the strings of cello, anything that vibrates produces waves of energy.
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The energy produced by these vibrations is carried to your friend s ear by sound waves traveling through a medium, air.
Like the strings of cello, anything that vibrates produces waves of energy.
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The typical energy of a vibrating string in string theory.
Like the strings of cello, anything that vibrates produces waves of energy.
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the vibration transfers energy to nearby air particles, which produces sound waves in the air.
Like the strings of cello, anything that vibrates produces waves of energy.
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A line graph or ogive represents change over time by connecting points placed on specific coordinates to show fluctuations.
Line graphs are especially useful for showing changes over time.
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A printed graph is given out each time the BTG is used, which shows the exact depth where the temperature changes rapidly.
Line graphs are especially useful for showing changes over time.
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A time-series graph shows changes in a variable over time.
Line graphs are especially useful for showing changes over time.
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Area graphs are used to show how something changes over time, and have an x-axis (horizontal) and a y-axis (vertical).
Line graphs are especially useful for showing changes over time.
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BURN shows the assembled bomb firing with the Temperature vs Time graph in the background, and shows extrapolation of the pre- and post-fire lines to obtain the temperature change.
Line graphs are especially useful for showing changes over time.
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Bar Graph Graph, which uses bars to show the rate of change instead of another quantity, such as time, by the length of bars representing quantity or value.
Line graphs are especially useful for showing changes over time.
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Calculate time changes, create graphs showing distance versus time.
Line graphs are especially useful for showing changes over time.
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For example, line graphs can show changes over time, bar graphs can compare quantities, and pie graphs can show the relationship of parts to a whole.
Line graphs are especially useful for showing changes over time.
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Illustrate the motion of an object using a graph to show a change in position over a period of time.
Line graphs are especially useful for showing changes over time.
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In the line graph, the points and lines are drawn on a grid in order to show change over a time period.
Line graphs are especially useful for showing changes over time.
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Line graphs show how some variable changes over time (the x axis is time).
Line graphs are especially useful for showing changes over time.
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Round Trip Times (shows the round trip times for the ACKs as a function of time) Automation Command-line driven, and uses the xplot program to view the graphs.
Line graphs are especially useful for showing changes over time.
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The Fourier Transform changes an amplitude-vs-time graph into an amplitude-vs-frequency graph, showing which sines or cosines could be used to construct the signal.
Line graphs are especially useful for showing changes over time.
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When the students have finished using the internet for their research, give them time to create a bar graph or line graph to show the statistics they have gathered.
Line graphs are especially useful for showing changes over time.
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3. Know the three main categories of nutrients (carbohydrates, lipids, proteins) and their major roles in the human body.
Lipids are available to the body from three sources.
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A large body of publicly available evidence, however, suggests that Gore met with Huang on as many as three occasions in 1993.
Lipids are available to the body from three sources.
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For the AGOR facility, three sources are available.
Lipids are available to the body from three sources.
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In the outside, three-dimensional world, many other sources of depth information are available.
Lipids are available to the body from three sources.
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Lipids Lipids (fats) are found at three sites in the body.
Lipids are available to the body from three sources.
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Many FAA publications are available from three sources, abbreviated as DOT, GPO, and NTIS.
Lipids are available to the body from three sources.
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Membership Membership comprises the three formal European standardization bodies and many of the providers of publicly available specifications.
Lipids are available to the body from three sources.
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Premigrants have twice the whole-body lipids and three times the flight potential of post migrants collected 400km downwind of premigrants.
Lipids are available to the body from three sources.
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Study participants were then tested for levels of three different chemicals in the body that indicate lipid peroxidation.
Lipids are available to the body from three sources.
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The three main sources of water to the body are Fluid intake, Water contained in food, and Water formed by oxidization or metabolism of proteins, carbohydrates and lipids contained in foodstuffs in the body.
Lipids are available to the body from three sources.
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There are many sources available for help in putting these three concepts into practice.
Lipids are available to the body from three sources.
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There are three classes of lipids in plants.
Lipids are available to the body from three sources.
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There are three sources of energy available to us.
Lipids are available to the body from three sources.
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