The magnitude of work done by one mole of a \( \mathrm{P} \) Van de...
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The magnitude of work done by one mole of a
\( \mathrm{P} \) Van der Waals gas during its isothermal
W reversible expansion from volume \( \mathrm{V}_{1} \) to \( \mathrm{V}_{2} \) at temperature \( T \mathrm{~K} \), is
(1) \( R T \ln \left(\frac{V_{2}}{V_{1}}\right) \)
(2) \( R T \ln \left(\frac{V_{2}-b}{V_{1}-b}\right) \)
(3) \( R T \ln \left(\frac{V_{2}-b}{V_{1}-b}\right)+a\left(\frac{1}{V_{2}}-\frac{1}{V_{1}}\right) \)
(4) \( R T \ln \left(\frac{V_{2}-b}{V_{1}-b}\right)-a\left(\frac{1}{V_{2}}-\frac{1}{V_{1}}\right) \)
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