The volume of a confined gas can be reduced by the application of pressure at constant temperature. The change in volume may be explained by the fact that gaseous molecules take up space. b. have varying masses. d. are relatively far apart. e. collide without loss of energy. a. C. are in constant motion.

Chemistry
9th Edition
ISBN:9781133611097
Author:Steven S. Zumdahl
Publisher:Steven S. Zumdahl
Chapter5: Gases
Section: Chapter Questions
Problem 108E
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IINtion.
Particles undergo inelastic collisions.
C. Particles undergo intermolecular attractions.
d. Particles travel faster as the temperature decreases.
2. The volume of a confined gas can be reduced by the application of pressure at constant temperature. The
change in volume may be explained by the fact that gaseous molecules
a. take up space.
b. have varying masses.
d. are relatively far apart.
e. collide without loss of energy.
C.
are in constant motion.
3. Equal volumes of oxygen, carbon dioxide, and methane under the same conditions of temperature and
prêssure contain the same number of
d. neutrons.
a. atoms.
e. protons.
b. electrons.
C. molecules.
DELL
Transcribed Image Text:IINtion. Particles undergo inelastic collisions. C. Particles undergo intermolecular attractions. d. Particles travel faster as the temperature decreases. 2. The volume of a confined gas can be reduced by the application of pressure at constant temperature. The change in volume may be explained by the fact that gaseous molecules a. take up space. b. have varying masses. d. are relatively far apart. e. collide without loss of energy. C. are in constant motion. 3. Equal volumes of oxygen, carbon dioxide, and methane under the same conditions of temperature and prêssure contain the same number of d. neutrons. a. atoms. e. protons. b. electrons. C. molecules. DELL
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