Which of the following is true regarding ap-V curve for an isothermal and an adiabatic expansion of an ideal gas? A. Both the curves are asymptotic at the p and V axes with the isothermal expansion curve having a steeper slope. B. The isothermal expansion curve is asymptotic at both the axes (p and V) but the adiabatic expansion curve is not. C. The adiabatic expansion curve is asymptotic at both the axes (p and V) but the isothermal expansion curve is not. D. Both the curves are asymptotic at the p and V axes with the adiabatic expansion curve having a steeper slope. O E. Both the curves are asymptotic at the p and V axes and each has the same slope.

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Which of the following is true regarding ap-V curve for an isothermal and an adiabatic expansion
of an ideal gas?
A. Both the curves are asymptotic at the p and V axes with the isothermal expansion curve
having a steeper slope.
B. The isothermal expansion curve is asymptotic at both the axes (p and V) but the adiabatic
expansion curve is not.
C. The adiabatic expansion curve is asymptotic at both the axes (p and V) but the isothermal
expansion curve is not.
D. Both the curves are asymptotic at the p and V axes with the adiabatic expansion curve
having a steeper slope.
E. Both the curves are asymptotic at the p and V axes and each has the same slope.
Transcribed Image Text:Which of the following is true regarding ap-V curve for an isothermal and an adiabatic expansion of an ideal gas? A. Both the curves are asymptotic at the p and V axes with the isothermal expansion curve having a steeper slope. B. The isothermal expansion curve is asymptotic at both the axes (p and V) but the adiabatic expansion curve is not. C. The adiabatic expansion curve is asymptotic at both the axes (p and V) but the isothermal expansion curve is not. D. Both the curves are asymptotic at the p and V axes with the adiabatic expansion curve having a steeper slope. E. Both the curves are asymptotic at the p and V axes and each has the same slope.
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