Another mixture of AsF3 (g), F2 (g), and ASF5 (g) is at equilibrium at a different temperature in a different vessel. The system at equilibrium is represented by the following box on the left. Then the volume of the vessel is decreased. The box in the middle represents the system before equilibrium is reestablished at the same temperature. Legend = ASF3 = F2 = AsFs Original Equilibrium Immediately After Volume Change New Equilibrium (f) In the box above on the right, draw an appropriate number of each type of molecule to represent a possible new equilibrium.

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Another mixture of AsF3 (g), F2 (g), and AsF5 (g) is at equilibrium at a different temperature in a different vessel. The system at equilibrium is represented
by the following box on the left. Then the volume of the vessel is decreased. The box in the middle represents the system before equilibrium is
reestablished at the same temperature.
Legend
= AsF3
%3D
00 = F2
= AsFs
of
Original
Equilibrium
Immediately After
Volume Change
New
Equilibrium
(f) In the box above on the right, draw an appropriate number of each type of molecule to represent a possible new equilibrium.
Transcribed Image Text:Another mixture of AsF3 (g), F2 (g), and AsF5 (g) is at equilibrium at a different temperature in a different vessel. The system at equilibrium is represented by the following box on the left. Then the volume of the vessel is decreased. The box in the middle represents the system before equilibrium is reestablished at the same temperature. Legend = AsF3 %3D 00 = F2 = AsFs of Original Equilibrium Immediately After Volume Change New Equilibrium (f) In the box above on the right, draw an appropriate number of each type of molecule to represent a possible new equilibrium.
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