Solution:
First, find final temperature: \(T_2 = T_1 \left(\frac{V_1}{V_2}\right)^{\gamma-1} = 300 \left(\frac{1}{8}\right)^{1/3} = 150\text{ K}\). Then work done \(W = \frac{nR(T_1 - T_2)}{\gamma-1} = \frac{2 \times 2 \times (300 - 150)}{1/3} = 1200\text{ cal}\).
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