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Is there internal energy change in an adiabatic process?

Is there internal energy change in an adiabatic process?

Adiabatic free expansion of a gas Since this process does not involve any heat transfer or work, the first law of thermodynamics then implies that the net internal energy change of the system is zero.

What happens to the internal energy during adiabatic expansion?

In the adiabatic expansion of the gas, the work done by the gas is always positive. Since the work done by the gas is positive the internal energy decreases, so the temperature of the gas also decreases.

What is the change in internal energy of a gas during isothermal expansion and adiabatic expansion?

There is no change in the internal energy of an ideal gas undergoing an isothermal process since the internal energy depends only on the temperature.

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What do you mean by adiabatic change of gas?

adiabatic process, in thermodynamics, change occurring within a system as a result of transfer of energy to or from the system in the form of work only; i.e., no heat is transferred. A rapid expansion or contraction of a gas is very nearly adiabatic. Adiabatic processes cannot decrease entropy.

What happens to the internal energy of a gas during?

(i) In isothermal expansion ,temperature remains constant. Therefore internal energy which is a function of temperature will remain constant. During expansion, work is done by the gas i.e. dW is positive. Thus ,in an adiabatic expansion , the internal energy of the system will decrease.

What happens to internal energy during isothermal expansion?

In isothermal expansion, temperature remains constant so, the change in internal energy is zero means internal energy does not get affected.

How does adiabatic process work?

An adiabatic process is defined as a process in which no heat transfer takes place. This does not mean that the temperature is constant, but rather that no heat is transferred into or out from the system.

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What happens to internal energy of a gas during isothermal expansion *?

In isothermal expansion, temperature remains constant so, the change in internal energy is zero means internal energy does not get affected. So, enthalpy also remains unaffected during the isothermal expansion process. So, enthalpy and internal energy both remain unaffected in the isothermal expansion process.