A container having a volume of 2.3 m3 holds 9 moles of helium gas at 192°C. If the helium behaves like an ideal gas, the average kinetic energy per molecule is (write your answer in joules times 1023, i.e. if the answer is 3.45 x 10-21 J, write it as 345 x 10-23, and enter only 345 as your answer).
A container having a volume of 2.3 m3 holds 9 moles of helium gas at 192°C. If the helium behaves like an ideal gas, the average kinetic energy per molecule is (write your answer in joules times 1023, i.e. if the answer is 3.45 x 10-21 J, write it as 345 x 10-23, and enter only 345 as your answer).
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter16: Temperature And The Kinetic Theory Of Gases
Section16.5: The Kinetic Theory Of Gases
Problem 16.5QQ: Two containers hold an ideal gas at the same temperature and pressure. Both containers hold the same...
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A container having a volume of 2.3 m3 holds 9 moles of helium gas at 192°C. If the helium behaves like an ideal gas, the average kinetic energy per molecule is (write your answer in joules times 1023, i.e. if the answer is 3.45 x 10-21 J, write it as 345 x 10-23, and enter only 345 as your answer).
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