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More moles gaseous sulfur dioxide removed

Le Châtelier’s Principle Questions:

#1.
2 SO3(g)
(a)
Q =

[SO2 ] 2 O2

] =

!.!"! !!

(b)
Q =

[SO3 ]

[SO2 ] 2 O2

] =
(c)
Q =

2 [SO3 ]

[SO2 ] 2 O2

] =
(d)
Q =

2

[SO3 ]

] =
#2.

UO2(s) + 4 HF(g)

UF4(g) + 2 H2O(g)

(a)
(b)

shifts 

#3.

when the volume of the reaction container is increased:

(a)
(b)
PCl3(g) + Cl2(g)

shifts 

(c)

H2(g) + F2(g)

(d)

CO(g) + Cl2(g)

shifts 

(e)
#4.

H2(g) + CO2(g) + heat

(a)

Gaseous carbon dioxide is removed.

(b)
(c)

no shift

(d)

The temperature is increased; the reaction is exothermic.

(e) The pressure is increased by decreasing the container volume.

(a)
(b)
(c)
(d)
(e)

#6.

heat + 2 SO3(g)

2 SO2(g) + O2(g)

, more moles SO3
Total pressure is increased by adding argon gas.

no shift, same moles SO3

The temperature is decreased.

H2(g) + I2(g) + heat

H2(g) is added.

shifts 

Some Ar(g) is added.

The volume of the container is doubled.
The temperature is decreased (ΔH < 0).

CO(g) + 3 H2(g)

ΔH > 0
Ni, 750°C

H2O(g) is removed?

shifts 
no shift
shifts 

the volume of the container is tripled?

shifts 

the nickel catalyst is removed?

no shift
#9.

N2(g) + 3 H2(g)

2 NH3(g) + heat

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