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    7.

    An ideal gas undergoes a process where its pressure and volume are related by P=P0+αVP = P_0 + \alpha V, where P0P_0 and α\alpha are positive constants. If the gas expands from volume V1V_1 to V2V_2, the work done by the gas is:

    A

    P0(V2V1)P_0(V_2 - V_1)

    B

    α(V2V1)\alpha(V_2 - V_1)

    C

    P0(V2V1)+α2(V22V12)P_0(V_2 - V_1) + \frac{\alpha}{2}(V_2^2 - V_1^2)

    D

    P0(V2V1)+α(V22V12)P_0(V_2 - V_1) + \alpha(V_2^2 - V_1^2)

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    8.

    The specific heat of a gas

    A

    Has only two values CP{C_P} and CV{C_V}

    B

    Has a unique value at a given temperature

    C

    Can have any value between 0 and \infty

    D

    Depends upon the mass of the gas

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