3 sc2368 sc2368 sc2368 sc2368 sc236 10. Suppose 1.60 × 103 moles of a monatomic ideal gas undergoes an isothermal expansion as shown in the figure. (The horizontal axis is marked in increments of 15 m³ and the vertical axis is marked in increments of 150 kPa.) How much. How much work is done by the gas from (A) to (B)? X 1.25E7 J 2368 sc2368 sc2368 3622682868 sc2368 S Pressure, P (kPa) 3686840232802368 sc2368 sc2368 sc2. Volume (m³) 68 sc2368 sc2368 sc2368 sc2368 68 sc2368 sc2368

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3 sc2368 sc2368 sc2368 sc2368 sc236
10. Suppose 1.60 × 103 moles of a monatomic ideal gas undergoes an isothermal expansion as shown in the figure. (The
horizontal axis is marked in increments of 15 m³ and the vertical axis is marked in increments of 150 kPa.) How much.
How much work is done by the gas from (A) to (B)?
X 1.25E7 J
2368 sc2368 sc2368 3622682868 sc2368 S
Pressure, P (kPa)
3686840232802368 sc2368 sc2368 sc2.
Volume (m³)
68 sc2368 sc2368 sc2368 sc2368
68 sc2368 sc2368
Transcribed Image Text:3 sc2368 sc2368 sc2368 sc2368 sc236 10. Suppose 1.60 × 103 moles of a monatomic ideal gas undergoes an isothermal expansion as shown in the figure. (The horizontal axis is marked in increments of 15 m³ and the vertical axis is marked in increments of 150 kPa.) How much. How much work is done by the gas from (A) to (B)? X 1.25E7 J 2368 sc2368 sc2368 3622682868 sc2368 S Pressure, P (kPa) 3686840232802368 sc2368 sc2368 sc2. Volume (m³) 68 sc2368 sc2368 sc2368 sc2368 68 sc2368 sc2368
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