Questions

Can an ideal gas be compressed isothermally?

Can an ideal gas be compressed isothermally?

Thus, in an isothermal process the internal energy of an ideal gas is constant. In the isothermal compression of a gas there is work done on the system to decrease the volume and increase the pressure. Doing work on the gas increases the internal energy and will tend to increase the temperature.

Can you compress an ideal gas?

By an ideal gas we mean a gas in which the collision between the molecules is perfectly elastic. So, no matter how much you compress the gas it will remain a gas, it won’t change its state.

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What happens to a gas that is compressed rapidly by a piston?

When a gas is compressed rapidly, its volume decreases leading to increase in temperature. Also the pressure increase which also increases the randomness of the gas molecules which start to collide more frequently and thus the temperature rises .

When ideal gas is compressed isothermally then its pressure?

In the question it is said that when we compress an ideal gas isothermally, the pressure will increase. We are asked what causes the pressure to increase in such a situation. We know that when we compress a gas isothermally, its temperature is constant and volume of the gas decreases.

When an ideal gas is compressed isothermally it absorbs?

A.it absorb heat and does positive work.

What happens when you compress an ideal gas?

During compression, the volume (V) of a gas decreases. When this happens, the pressure (P) of the gas increases if the number of moles (n) of gas remains constant. If you keep the pressure constant, reducing the temperature (T) also causes the gas to compress.

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When an ideal gas is subjected to an adiabatic process?

When an ideal gas is compressed adiabatically (Q=0), work is done on it and its temperature increases; in an adiabatic expansion, the gas does work and its temperature drops.

What happens if we compress gas?

When an ideal gas is compressed adiabatically its temperature?

If an ideal gas is compressed adiabatically, its temperature rises, because heat produced cannot be lost to the surroundings. Each molecule has more KE than before because of collisions of molecules with moving parts of the wall (i.e. piston compressing the gas).

Is compressed Isothermally the rms velocity of its molecules?

The rms velocity of its molecules. Gas is compressed isothermally , so T remains constant and hence, root mean square velocity will bremain same.

When ideal gas is compressed isothermally then its pressure increases because?

its number of collisions per unit area with walls of container increases.