Consider this reaction at equilibrium. B(g) +2C(aq) 2D(g) The rates of the forward and reverse reactions are equal at equilibrium. There are 4 processes listed below that are applied individually to put a stress on the equilibrium. For each process, determine how that stress affects the rates of the forward and reverse reactions. Then drag the purple number that identifies the process to the gray arrow that will have the faster rate after that stress is applied There can be more than 1 number in each gray box. Some B is added 3 Some D is added 2 Some C is removed 4 The volume of the gases is reduced. B(g) + 2C(aq) 2D(g)

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Consider this reaction at equilibrium.
B(g) +2C(aq) 2D(g)
The rates of the forward and reverse reactions are equal at equilibrium. There are 4 processes listed below
that are applied individually to put a stress on the equilibrium. For each process, determine how that stress
affects the rates of the forward and reverse reactions. Then drag the purple number that identifies the
process to the gray arrow that will have the faster rate after that stress is applied There can be more than
1 number in each gray box.
1 Some B is added
3 Some D is added
2 Some C is removed
4 The volume of the gases is reduced.
B(g) + 2C(aq)
2D(g)
Transcribed Image Text:Consider this reaction at equilibrium. B(g) +2C(aq) 2D(g) The rates of the forward and reverse reactions are equal at equilibrium. There are 4 processes listed below that are applied individually to put a stress on the equilibrium. For each process, determine how that stress affects the rates of the forward and reverse reactions. Then drag the purple number that identifies the process to the gray arrow that will have the faster rate after that stress is applied There can be more than 1 number in each gray box. 1 Some B is added 3 Some D is added 2 Some C is removed 4 The volume of the gases is reduced. B(g) + 2C(aq) 2D(g)
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