Homework 6 Problem 6: A rigid tank of volume V = 0.015 m3 contains carbon monoxide at a temperature of T0 = 21° C and a pressure of P0 = 9.00 × 105 Pa. This molecule should be treated as a diatomic ideal gas with active vibrational modes. Part (a) Calculate the pressure of the gas in pascal at this increased temperature. P = ______ Part (b) Calculate the change to the internal energy of the gas in joules. ΔU = ______ Part (c) Calculate the change in the entropy of the gas in joules per kelvin. ΔS = ______
Homework 6 Problem 6: A rigid tank of volume V = 0.015 m3 contains carbon monoxide at a temperature of T0 = 21° C and a pressure of P0 = 9.00 × 105 Pa. This molecule should be treated as a diatomic ideal gas with active vibrational modes. Part (a) Calculate the pressure of the gas in pascal at this increased temperature. P = ______ Part (b) Calculate the change to the internal energy of the gas in joules. ΔU = ______ Part (c) Calculate the change in the entropy of the gas in joules per kelvin. ΔS = ______
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Homework 6
Problem 6: A rigid tank of volume V = 0.015 m3 contains carbon monoxide at a temperature of T0 = 21° C and a pressure of P0 = 9.00 × 105 Pa. This molecule should be treated as a diatomic ideal gas with active vibrational modes.
Part (a) Calculate the pressure of the gas in pascal at this increased temperature.
P = ______
Part (b) Calculate the change to the internal energy of the gas in joules.
ΔU = ______
Part (c) Calculate the change in the entropy of the gas in joules per kelvin.
ΔS = ______
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