QUESTION 27 The volume of a confined gas can be reduced at constant temperature by increasing the pressure on the gas. The change in volume may be explained by the model that gas molecules O A. experience no intermolecular forces OB. are relatively far apart OC. are in constant motion OD. take up space O E. collide without loss of energy
QUESTION 27 The volume of a confined gas can be reduced at constant temperature by increasing the pressure on the gas. The change in volume may be explained by the model that gas molecules O A. experience no intermolecular forces OB. are relatively far apart OC. are in constant motion OD. take up space O E. collide without loss of energy
Chapter5: Gases
Section: Chapter Questions
Problem 156CP
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![QUESTION 27
The volume of a confined gas can be reduced at constant temperature by increasing the pressure on the gas. The change in
volume may be explained by the model that gas molecules
O A. experience no intermolecular forces
OB. are relatively far apart
O C. are in constant motion
O D. take up space
O E. collide without loss of energy](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9d67a8f7-7cf0-4d6d-8795-f46c738bef24%2F1b2879b3-b8e7-4727-beb3-959957c19a3f%2Fikgv0tk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:QUESTION 27
The volume of a confined gas can be reduced at constant temperature by increasing the pressure on the gas. The change in
volume may be explained by the model that gas molecules
O A. experience no intermolecular forces
OB. are relatively far apart
O C. are in constant motion
O D. take up space
O E. collide without loss of energy
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