Consider a closed, isolated system that consists of two substances 1 and 2 that both have constant volume and have constant volume heat capacities over the relevant temperature range: Cy1 = 1J/K and c2 = 2J/K. Substance 1 is initially prepared at T10 = 100K, while substance 2 is initially prepared at T2.0 = 200K. Suppose that the two substances are brought into thermal contact. Eventually, the closed and isolated system comes to a final equilibrium state.

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Determine the final temperature of the two substances.

Consider a closed, isolated system that consists of two substances 1 and 2 that both have constant volume and have constant volume heat capacities over the relevant temperature range: \( c_{v1} = 1 \text{J/K} \) and \( c_{v2} = 2 \text{J/K} \). Substance 1 is initially prepared at \( T_{1,0} = 100K \), while substance 2 is initially prepared at \( T_{2,0} = 200K \).

Suppose that the two substances are brought into thermal contact. Eventually, the closed and isolated system comes to a final equilibrium state.
Transcribed Image Text:Consider a closed, isolated system that consists of two substances 1 and 2 that both have constant volume and have constant volume heat capacities over the relevant temperature range: \( c_{v1} = 1 \text{J/K} \) and \( c_{v2} = 2 \text{J/K} \). Substance 1 is initially prepared at \( T_{1,0} = 100K \), while substance 2 is initially prepared at \( T_{2,0} = 200K \). Suppose that the two substances are brought into thermal contact. Eventually, the closed and isolated system comes to a final equilibrium state.
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