(6) Consider an ideal gas for which pV = n RT. Determine the change in pressure, p, for n = 2.0 moles of an ideal gas when the temperature, T, is changed from 190K to 200K and the volume, V, is changed from 20L to 19L. The gas constant is R = 8.314 J• mol-1 · K-1. Express your answer in atmospheres. HINT: Use an expression for the total differential dp(T, V). Evaluate your partial derivatives at the point (V1, T,) with the increments in volume dV = (V2 – V,) and dT = (T, – T)
(6) Consider an ideal gas for which pV = n RT. Determine the change in pressure, p, for n = 2.0 moles of an ideal gas when the temperature, T, is changed from 190K to 200K and the volume, V, is changed from 20L to 19L. The gas constant is R = 8.314 J• mol-1 · K-1. Express your answer in atmospheres. HINT: Use an expression for the total differential dp(T, V). Evaluate your partial derivatives at the point (V1, T,) with the increments in volume dV = (V2 – V,) and dT = (T, – T)
Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter16: Spontaneity Of Reaction
Section: Chapter Questions
Problem 85QAP: Which of the following quantities can be taken to be independent of temperature? independent of...
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![(6) Consider an ideal gas for which pV = n RT. Determine the change in pressure, p, for
n = 2.0 moles of an ideal gas when the temperature, T, is changed from 190K to 200K and
the volume, V, is changed from 20L to 19L. The gas constant is R = 8.314 J• mol-1 • K-1.
Express your answer in atmospheres. HINT: Use an expression for the total differential
dp(T, V). Evaluate your partial derivatives at the point (V,, T¡) with the increments in volume
dV = (V, – V,) and dT = (T, – T,)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc3e671be-5699-41c7-ad14-09ef8165fba8%2Fa3395ec2-d5b4-418a-b42d-d279f10110d2%2Fthm43y_processed.png&w=3840&q=75)
Transcribed Image Text:(6) Consider an ideal gas for which pV = n RT. Determine the change in pressure, p, for
n = 2.0 moles of an ideal gas when the temperature, T, is changed from 190K to 200K and
the volume, V, is changed from 20L to 19L. The gas constant is R = 8.314 J• mol-1 • K-1.
Express your answer in atmospheres. HINT: Use an expression for the total differential
dp(T, V). Evaluate your partial derivatives at the point (V,, T¡) with the increments in volume
dV = (V, – V,) and dT = (T, – T,)
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