2 moles of an ideal gas with CV,m = 3/2R is heated from 175K to 300 K under constant pressure, calculate AS (J/K). Instruction: Please round to 1 decimal place, for example, 51.33 is written as 51.3.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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**Problem Statement:**

2 moles of an ideal gas with \( C_{V,m} = \frac{3}{2}R \) is heated from 175 K to 300 K under constant pressure. Calculate \( \Delta S \) (J/K).

**Instruction:** Please round to 1 decimal place, for example, 51.33 is written as 51.3.

**Input Field:** [Text box for answer entry]

This educational content involves calculating the change in entropy (\( \Delta S \)) of an ideal gas when heated under constant pressure. The specified conditions include the number of moles, initial and final temperatures, and the molar heat capacity at constant volume. Users are instructed to round their answers to one decimal place.
Transcribed Image Text:**Problem Statement:** 2 moles of an ideal gas with \( C_{V,m} = \frac{3}{2}R \) is heated from 175 K to 300 K under constant pressure. Calculate \( \Delta S \) (J/K). **Instruction:** Please round to 1 decimal place, for example, 51.33 is written as 51.3. **Input Field:** [Text box for answer entry] This educational content involves calculating the change in entropy (\( \Delta S \)) of an ideal gas when heated under constant pressure. The specified conditions include the number of moles, initial and final temperatures, and the molar heat capacity at constant volume. Users are instructed to round their answers to one decimal place.
Expert Solution
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Entropy change can be calculated by the formula of entropy change in various system.

In this problem,

Pressure is constant so

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