Le Châtelier’s principle is stated (Section 12-7) as follows: “If a change is imposed on a system at equilibrium, the position of the equilibrium will shift in a direction that tends to reduce that change.” The system N 2 ( g ) + 3 H 2 ( g ) ⇌ 2 NH 3 ( g ) is used as an example in which the addition of nitrogen gas at equilibrium results in a decrease in H 2 concentration and an increase in NH 3 , concentration. In the experiment the volume is assumed to be constant. On the other hand, if N 2 is added to the reaction system in a container with a piston so that the pressure can be held constant, the amount o f NH 3 actually could decrease, and the concentration of H 2 would increase as equilibrium is reestablished. Explain how this can happen. Also, if you consider this same system at equilibrium, the addition of an inert gas. holding the pressure constant, does affect the equilibrium position. Explain why the addition of an inert gas to this system in a rigid container does not affect the equilibrium position.
Le Châtelier’s principle is stated (Section 12-7) as follows: “If a change is imposed on a system at equilibrium, the position of the equilibrium will shift in a direction that tends to reduce that change.” The system N 2 ( g ) + 3 H 2 ( g ) ⇌ 2 NH 3 ( g ) is used as an example in which the addition of nitrogen gas at equilibrium results in a decrease in H 2 concentration and an increase in NH 3 , concentration. In the experiment the volume is assumed to be constant. On the other hand, if N 2 is added to the reaction system in a container with a piston so that the pressure can be held constant, the amount o f NH 3 actually could decrease, and the concentration of H 2 would increase as equilibrium is reestablished. Explain how this can happen. Also, if you consider this same system at equilibrium, the addition of an inert gas. holding the pressure constant, does affect the equilibrium position. Explain why the addition of an inert gas to this system in a rigid container does not affect the equilibrium position.
Solution Summary: The author explains the observation of the given experiment and the effect of addition of inert gas at constant pressure and constant volume.
Le Châtelier’s principle is stated (Section 12-7) as follows: “If a change is imposed on a system at equilibrium, the position of the equilibrium will shift in a direction that tends to reduce that change.” The system
N
2
(
g
)
+
3
H
2
(
g
)
⇌
2
NH
3
(
g
)
is used as an example in which the addition of nitrogen gas at equilibrium results in a decrease in H2 concentration and an increase in NH3, concentration. In the experiment the volume is assumed to be constant. On the other hand, if N2 is added to the reaction system in a container with a piston so that the pressure can be held constant, the amount o f NH3 actually could decrease, and the concentration of H2 would increase as equilibrium is reestablished. Explain how this can happen. Also, if you consider this same system at equilibrium, the addition of an inert gas. holding the pressure constant, does affect the equilibrium position. Explain why the addition of an inert gas to this system in a rigid container does not affect the equilibrium position.
Use the observations about each chemical reaction in the table below to decide the sign (positive or negative) of the reaction enthalpy AH and reaction entropy
AS.
Note: if you have not been given enough information to decide a sign, select the "unknown" option.
reaction
observations
conclusions
A
The reverse of this reaction is always
spontaneous but proceeds slower at
temperatures below 41. °C.
ΔΗ is
(pick one)
AS is
(pick one)
ΔΗ is
(pick one)
B
This reaction is spontaneous except above
94. °C.
AS is
(pick one)
This reaction is always spontaneous, but
ΔΗ is
(pick one)
C
proceeds slower at temperatures below
−14. °C.
AS is
(pick one)
Х
00.
18
Ar
무ㅎ
B
1
1
Draw the product of the reaction shown below. Ignore inorganic
byproducts.
+
H
CH3CH2OH
HCI
Drawing
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