5

Derive the chemical potential expression for a closed pure ideal gas(5]...

Question

Derive the chemical potential expression for a closed pure ideal gas(5]

Derive the chemical potential expression for a closed pure ideal gas (5]



Answers

State the equation for the ideal gas law.

So according to the kinetic theory, an ideal gas have few characteristics. So first of all, gases are made up of made up off timing molecules. Second option. So gases demonstrate rapid motion. They travel in random directions. The third one, the molecules of gas have no attraction, two, one, another 4 to 1. The molecules of gases undergo elastic collisions, and the 5th 1 is that the average kinetic energy of any gas is directly proportional to the temperature in kelvin at a particular temperature or at the same temperature. All the gashes molecules have equal kinetic energy.

They're two characters, six often ideal gas. The first is that ideal gas molecules do not interact with each other. There is no inter molecular interaction because they move around in constant rand emotion. The 2nd 1 is that the volume occupied by the gas in a container is negligible. Toe that off the wall yume off the container. So while you my guess is Niklas Bruun compares in tow container volume, then we have the ideal gas law. The ideal gas law states that the product off pressure times while you is equal to product off total moles temperature and are, which is the gas constant an equation form. The ideal gas law is given as p. The equals in our tea. Where T isn't Kelvin's are, is a constant off 0.8 to 1 leaders times a T m over more times. Kate. This is given in malls. Most of guests volume is given in leaders and pressure is given an A t m. All of the units correspond to the units and are

We know that the first relation tells us that the specific heat at constant pressure CP is equal to the specifically capacity. A constant volume CV plus the gas constant are if we multiply both sides of the relation by the mola mola mass M we get that am C P is equal to M C V Plus M are now M C P is simply be specific heat on a molar basis. See bar at constant pressure and M. C V is the specific he capacity on a modular basis at constant volume. See Bar the and M times are is simply the universal gas constant are you? So we get the relationship as required.

State to state the i. D. Gasela. I think that's always be V deeper. And our team I need gas Law described the relationship really sincere. 18. Oh, man, I pray your pressure up with gas rolling off the gas number. Wonderful gas on the temperature or gas. Um is a constant Is gas constant?


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