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Temperature is a measure of the average kinetic energy of theparticles in an object. Temperatures also measure how kineticenergy is not how hot or.

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It is simply as: K.E = 3/2(k.T) where, k is the Boltzman constant, K.E is the kinetic energy and T is the temperature. Kinetic theory of gas explain it in simple way. It comes from Kinetic Temperature and Zeroth law of Thermodynamics. You can cons...

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T = temperature. From this we conclude that the kinetic energy of a gas molecule is directly proportional to the the temperature of a gas molecule. That means there is a direct relationship between the kinetic energy and the temperature. Hence, the temperature and kinetic energy have a direct relationship.

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The molecules that have gained extra energy will have a higher tendency to move more than the molecules that have not gained the extra energy. Energy of motion is called kinetic energy. When the molecules move or vibrate more, they have a higher kinetic energy, and this is recorded as an increase in temperature.

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Temperature is the average kinetic energy of a substance, and a measure of how hot or cold something is. As a substance gains kinetic energy, its particles begin to move faster. While solids vibrate in place, the particles in a liquid slip and slide past each other, and in gasses the particles move even faster and further apart.

Best Answer: Ashley, There are a lot of really good qualitative answers given here by the others. In case you needed a more quantitative answer, kinetic energy (we'll call it KE) is related to temperature by KE = 3/2kT (where k is Boltzmann's constant and T is temperature in Kelvin), and to the motion of the molecules by KE = 1/2mv^2 (where m is the molecular mass and v is the velocity).

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temperature heats up the particles they have more kinetic energy and move and bounce into each other and spread out. What is the relationship between temperature and the energy of particles in liquids?

hyperphysics.phy-astr.gsu.edu/hbase/Kinetic/kintem.html

Kinetic Temperature The expression for gas pressure developed from kinetic theory relates pressure and volume to the average molecular kinetic energy.Comparison with the ideal gas law leads to an expression for temperature sometimes referred to as the kinetic temperature.. This leads to the expression where N is the number of molecules, n the number of moles, R the gas constant, and k the ...

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