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WorksheetsLe Chatelier Principle Shift
Total questions: 60
Worksheet time: 5hrs 0mins
2SO2(g)+O2(g) ⇌ 2SO3(g) + Heat
Adding SO2(g) will
shift equilibrium right
shift equilibrium left
increase rate of reaction
have no change
2SO2(g)+O2(g) ⇌ 2SO3(g) + Heat
Increasing the temperature will...
shift equilibrium right
shift equilibrium left
increase pressure
have no change
2SO2(g) + O2(g) ⇌ 2SO3(g) + Heat
Removing O2(g) will
shift equilibrium right
shift equilibrium left
increase pressure
have no change
2SO2(g)+O2(g) ⇌ 2SO3(g) + Heat
Adding SO3(g) will
shift equilibrium right
shift equilibrium left
increase K
have no change
2SO2(g)+1O2(g) ⇌ 2SO3(g) + Heat
Increasing the volume of the container will...
shift equilibrium right
shift equilibrium left
slow rate of reaction
have no change
2SO2(g)+1O2(g) ⇌ 2SO3(g) + Heat
Increasing the pressure on the system will...
shift equilibrium right
shift equilibrium left
slow rate of reaction
have no change
2SO2(g) + O2(g) ⇌ 2SO3(g) + Heat
Using a catalyst
shift equilibrium right
shift equilibrium left
increase the rate of reaction
have no change
SO2 + O2 <−> SO3
If the equilibrium shifts to the right, the concentration of O2 will ___________.
N2 (g) + 3H2 (g) < -> 2NH3 (g) + Heat
Removing H2
Shift Left
Shift Right
N2 (g) + 3H2 (g) < -> 2NH3 (g) + Heat
add N2
Shift Left
Shift Right
Given the reaction at equilibrium:
2SO2(g) +O2(g) <--> 2SO3(g) + HEAT
Which change will shift the equilibrium to the right?
decrease the pressure
increasing the pressure
decreasing the amount of SO2(g)
decreasing the amount of O2(g)
2SO2(g)+1O2(g) ⇌ 2SO3(g) + Heat
Increasing the volume of the container will...
shift equilibrium right
shift equilibrium left
slow rate of reaction
have no change
When writing an endothermic reaction, heat energy is stated as a
product
reactant
How do catalysts increase the rate of reaction?
The frequency of collisions is increased
The activation energy is lowered
The energy of collisions is increased
Both the frequency and energy of collisions is increased
For the reaction...
heat + N2 + O2 ↔ 2NO
If the heat is added to the chemical system, the equilibrium will shift _______.
forward
reverse
no shift
A chemical reaction that releases energy is an
endothermic reaction
exothermic reaction
energy
At what time (in seconds) is equilibrium established?
0 seconds
1 second
5 seconds
10 seconds
At room temperature, the reaction of H2 with Cl2 to make HCl has an equilibrium constant of 2.4×1033.
If 0.010 mol H2 is in a container with 0.010 mol Cl2 and 1.0 mol HCl, which way will the reaction shift to achieve equilibrium? HINT: CALCULATE Q!
To the products (right)
To the reactants (left)
Neither; the reaction is at equilibrium
Both, somehow
If its temperature is increased (at constant volume and pressure), which way will the equilibrium shift?
To maximise the yield of ammonia, what conditions should be used?
When extra NH3 is added to the following system at equilibrium:
3 H2(g) + N2(g) ⇌ 2 NH3(g)
No change occurs
In order to restore equilibrium, the reaction shifts right, toward products
In order to restore equilibrium, the reaction shifts left, toward reactants
When N2 is removed from the following system at equilibrium:
3 H2(g) + N2(g) ⇌ 2 NH3(g)
No change occurs
In order to restore equilibrium, the reaction shifts right, toward products
In order to restore equilibrium, the reaction shifts left, toward reactants
When H2 is added to the following system at equilibrium:
3 H2(g) + N2(g) ⇌ 2 NH3(g)
No change occurs
In order to restore equilibrium, the reaction shifts right, toward products
In order to restore equilibrium, the reaction shifts left, toward reactants
When the pressure is increased on the following system at equilibrium:
3 H2(g) + N2(g) ⇌ 2 NH3(g)
No change occurs
In order to restore equilibrium, the reaction shifts right, toward products
In order to restore equilibrium, the reaction shifts left, toward reactants
When the temperature is decreased on the following system at equilibrium:
2 HCl(aq) + Mg(s) ⇌ MgCl2(aq) + H2(g) + heat
No change occurs
In order to restore equilibrium, the reaction shifts right, toward products
In order to restore equilibrium, the reaction shifts left, toward reactants
2 SO2(g) + O2(g) ⇌ 2SO3(g) is an exothermic reaction.
What will happen if there is an increase temperature?
shift equilibrium toward the right
shift equilibrium toward the left
increase pressure
have no change
4HCl (g) + O2 (g) ⇌ 2H2O (l) + 2Cl2 (g) + 113 kJ
Which of the following would drive the reaction to form more products?
Increase in temperature
Increase in pressure
Increase in Cl2
Decrease in HCl
CH4 + 2H2S ↔ CS2 + 4H2+ heat
Which of the following would drive the reaction above to the right?
Decrease in CH4
increase in H2
increase in temperature
Decrease in temperature
3 H2(g) + N2(g) ⇌ 2 NH3(g)
What will happen if there is an increase in NH3?
shift equilibrium to the right, decreasing the concentration of H2
shift equilibrium toward the right, increasing the concentration of N2
shift equilibrium toward the left, increasing the concentration of H2
shift equilibrium toward the left, decreasing the concentration of H2
Which reaction will shift to the left when there is an increase in pressure?
2H2 (g) + O2 (g) ↔ 2H2O (l)
N2 (g) + 3H2 (g) ↔ 2NH3 (g)
2Mg(s) + O2(g) ⇌ 2MgO(s)
MgCO3(s) ⇌ MgO(s) + CO2(g)
2SO2(g) + O2(g) ⇌ 2SO3(g)
Increasing volume of container will
shift equilibrium right
shift equilibrium left
slow rate of reaction
have no change
2SO2(g) + O2(g) ⇌ 2SO3(g)
How does adding a catalyst affect this reaction?
shifts equilibrium right
shifts equilibrium left
increases the rate of the reaction
What causes the reaction to favor the REVERSE reaction?
A + B ↔ C + D + energy
Decreasing D
Decreasing C
Decreasing A
Decreasing Temperature
What causes the reaction to favor the FORWARD reaction?
A + B ↔ C + D + energy
Increasing D
Increasing C
Increasing B
Increasing Temperature
The three factors that affect the equilibrium of a reaction are temperature, pressure and __________.
catalysts
concentration
particle size
What is the concentration equilibrium constant expression?
CO2(g) + H2(g) ↔ CO(g) + H2O(l)
Consider the following equilibrium:
2NO2(g) <-> N2O4(g)
A 1.00 L flask contains 0.030 mol NO2 and 0.040 mol N2O4 at equilibrium.
The value of Keq is
0.023
0.67
1.3
44
Consider the following equilibrium:
PCl5(g) <-> PCl3(g) + Cl2(g)
A 1.00 L flask contains 0.0200 mol PCl5, 0.0500 mol PCl3 and 0.0500 mol Cl2 at
equilibrium. The value of Keq is
0.125
2.50
5.00
8.00
What is the equilibrium expression for:
Fe3O4(s) + 4 H2(g) ↔ 3 Fe(s) + 4 H2O(g)
K = ([Fe]3[H2O]4 ) / ([Fe3O4][H2]4)
K = ([Fe3O4][H2]4)/ ([Fe]3[H2O]4)
K = [H2O]4 / [H2]4
K = ([Fe][H2O]) / ([Fe3O4][H2])
What is happening in term of enthalpy?
KBr (s) → KBr (l)
endothermic, +ΔH
exothermic, +ΔH
endothermic, -ΔH
exothermic, -ΔH
Water is boiled. What happens in terms of enthalpy?
endothermic, +ΔH
endothermic, -ΔH
exothermic, +ΔH
exothermic, -ΔH
SO2 (g) + NO2 (g) <=> SO3 (g) + NO (g)
had reached a state of equilibrium, was found to contain
0.40 mol L-1 SO3 , and 0.30 mol L-1 NO,
0.15 mol L-1NO2 , and 0.20 mol L-1 SO2.
Calculate the equilibrium constant for this reaction.
