AP Chemistry Flashcards: Reaction Quotient And Le Chateliers Principle

Study Reaction Quotient And Le Chateliers Principle in AP Chemistry with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.

AP Chemistry

Reaction Quotient And Le Chateliers Principle

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QUESTION
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What does Qc=KcQ_c = K_c signify?

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ANSWER

The system is at equilibrium. When QcQ_c equals KcK_c, forward and reverse reaction rates are equal.

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Flashcard 1: What does Qc=KcQ_c = K_c signify?

Answer: The system is at equilibrium. When QcQ_c equals KcK_c, forward and reverse reaction rates are equal.

Flashcard 2: Define Le Chatelier's Principle.

Answer: A system at equilibrium will adjust to counteract imposed changes. The system responds to minimize the disturbance and restore balance.

Flashcard 3: What does Qc>KcQ_c > K_c suggest about reaction direction?

Answer: The reaction will proceed in the reverse direction. When Qc>KcQ_c > K_c, excess products convert back to reactants.

Flashcard 4: What is the effect of removing a product from a reaction at equilibrium?

Answer: The equilibrium shifts to the right to form more products. System compensates by producing more of the removed product.

Flashcard 5: State what happens to equilibrium if a catalyst is added.

Answer: The rate increases, but equilibrium position is unchanged. Catalysts affect kinetics but not the equilibrium position.

Flashcard 6: How does adding an inert gas at constant volume affect equilibrium?

Answer: There is no effect on the position of equilibrium. Inert gas doesn't change partial pressures of reactants or products.

Flashcard 7: How does removing a reactant affect the position of equilibrium?

Answer: The equilibrium shifts to the left, forming more reactants. System produces more reactant to replace what was removed.

Flashcard 8: What is the effect of temperature decrease on the KcK_c of an endothermic reaction?

Answer: KcK_c decreases with a decrease in temperature. Lower temperature opposes endothermic reactions, decreasing KcK_c.

Flashcard 9: What defines the direction of shift when pressure is increased in a gaseous reaction?

Answer: Shifts to the side with fewer moles of gas. Higher pressure favors the side with fewer gas molecules.

Flashcard 10: What effect does increasing pressure have on a gaseous equilibrium?

Answer: The equilibrium shifts towards the side with fewer moles of gas. Higher pressure favors the side with fewer gas molecules.

Flashcard 11: Calculate QcQ_c for 2AB2A \rightleftharpoons B if [A]=0.3[A] = 0.3, [B]=0.2[B] = 0.2.

Answer: Qc=[B][A]2=0.20.32=2.22Q_c = \frac{[B]}{[A]^2} = \frac{0.2}{0.3^2} = 2.22. Substitute the given concentrations into the QcQ_c expression.

Flashcard 12: How does increasing reactant concentration affect equilibrium position?

Answer: Shifts right, forming more products. More reactant drives the equilibrium forward to consume it.

Flashcard 13: What happens to equilibrium when a product concentration is decreased?

Answer: The equilibrium shifts to the right to produce more product. System compensates by producing more of the removed product.

Flashcard 14: What is the effect of adding a strong acid to a weak acid equilibrium?

Answer: The equilibrium shifts to the left, decreasing dissociation. Added acid increases H+H^+ concentration, suppressing weak acid dissociation.

Flashcard 15: What is the effect of temperature increase on the equilibrium constant for exothermic reactions?

Answer: The equilibrium constant, KcK_c, decreases. Higher temperature opposes exothermic reactions, reducing KcK_c.

Flashcard 16: What is the value of QcQ_c if [A]=2[A] = 2, [B]=3[B] = 3, [C]=1[C] = 1, [D]=4[D] = 4 for A+2BC+DA + 2B \rightleftharpoons C + D?

Answer: Qc=[C][D][A][B]2=1×42×32=29Q_c = \frac{[C][D]}{[A][B]^2} = \frac{1 \times 4}{2 \times 3^2} = \frac{2}{9}. Substitute concentrations into QcQ_c expression and calculate.

Flashcard 17: Calculate QcQ_c for a reaction if [A]=1.0[A] = 1.0, [B]=2.0[B] = 2.0, [C]=1.5[C] = 1.5 for A+BCA + B \rightleftharpoons C.

Answer: Qc=[C][A][B]=1.51.0×2.0=0.75Q_c = \frac{[C]}{[A][B]} = \frac{1.5}{1.0 \times 2.0} = 0.75. Apply the QcQ_c formula using the given concentration values.

Flashcard 18: What is the effect of increasing volume on a gaseous equilibrium?

Answer: The equilibrium shifts to the side with more moles of gas. Increased volume decreases pressure, favoring more gas molecules.

Flashcard 19: Identify the effect of adding more product to an equilibrium system.

Answer: The equilibrium shifts to the left, producing more reactants. Excess product drives the equilibrium backward to consume it.

Flashcard 20: State the expression for QcQ_c for 3A2B+C3A \rightleftharpoons 2B + C.

Answer: Qc=[B]2[C][A]3Q_c = \frac{[B]^2[C]}{[A]^3}. Products in numerator, reactants in denominator with stoichiometric coefficients.

Flashcard 21: Which direction does equilibrium shift when a reactant concentration decreases?

Answer: The equilibrium shifts to the left, forming more reactants. System compensates by producing more of the depleted reactant.

Flashcard 22: How does temperature decrease affect KcK_c in endothermic reactions?

Answer: KcK_c decreases with a decrease in temperature. Lower temperature opposes endothermic reactions, decreasing KcK_c.

Flashcard 23: What happens to equilibrium when an aqueous solution is diluted?

Answer: The equilibrium shifts to the side with more solute particles. Dilution favors the side that produces more dissolved particles.

Flashcard 24: How does increasing the concentration of a reactant affect equilibrium?

Answer: The equilibrium shifts to the right, forming more products. System responds by consuming the excess reactant to form products.

Flashcard 25: Calculate QcQ_c for A+B2CA + B \rightleftharpoons 2C if [A]=0.5[A] = 0.5, [B]=0.5[B] = 0.5, [C]=0.1[C] = 0.1.

Answer: Qc=[C]2[A][B]=0.120.5×0.5=0.04Q_c = \frac{[C]^2}{[A][B]} = \frac{0.1^2}{0.5 \times 0.5} = 0.04. Substitute given concentrations into the QcQ_c formula.

Flashcard 26: How does the presence of a catalyst alter the rate of reaction?

Answer: A catalyst increases the rate of reaction without shifting equilibrium. Catalysts only affect reaction kinetics, not thermodynamic equilibrium.

Flashcard 27: What happens when QcQ_c is less than KcK_c?

Answer: The reaction proceeds forward to reach equilibrium. When Qc<KcQ_c < K_c, forward reaction proceeds to reach equilibrium.

Flashcard 28: What happens to KcK_c in an exothermic reaction if temperature decreases?

Answer: KcK_c increases with a decrease in temperature. Lower temperature favors exothermic reactions, increasing KcK_c.

Flashcard 29: What is the effect of a catalyst on the position of equilibrium?

Answer: A catalyst does not affect the position of equilibrium. Catalysts speed up both forward and reverse reactions equally.

Flashcard 30: How does the addition of an inert gas at constant pressure affect equilibrium?

Answer: It changes the equilibrium position depending on moles of gas. At constant pressure, inert gas causes volume expansion affecting equilibrium.

Flashcard 31: How does decreasing temperature affect an exothermic reaction at equilibrium?

Answer: The equilibrium shifts to the right, favoring product formation. Lower temperature favors the exothermic direction (forward).

Flashcard 32: What does Qc<KcQ_c < K_c indicate about reaction direction?

Answer: The reaction will proceed forward to reach equilibrium. When Qc<KcQ_c < K_c, more products must form to reach equilibrium.

Flashcard 33: What does Qc>KcQ_c > K_c suggest about reaction direction?

Answer: The reaction will proceed in the reverse direction. When Qc>KcQ_c > K_c, excess products convert back to reactants.

Flashcard 34: What happens when QcQ_c is less than KcK_c?

Answer: The reaction proceeds forward to reach equilibrium. When Qc<KcQ_c < K_c, forward reaction proceeds to reach equilibrium.

Flashcard 35: How does decreasing pressure affect a reaction with equal moles of gas on both sides?

Answer: There is no effect on the position of equilibrium. Pressure changes don't affect equilibrium when gas moles are equal.

Flashcard 36: Identify the change in equilibrium with an increase in product pressure.

Answer: The equilibrium shifts to the left, forming more reactants. Increased product concentration drives the reaction backward.

Flashcard 37: Define the reaction quotient, QcQ_c.

Answer: The ratio of product concentrations to reactant concentrations at any point. Measures current concentration ratio, not necessarily at equilibrium.

Flashcard 38: What is the effect of temperature increase on an endothermic reaction at equilibrium?

Answer: The equilibrium shifts to the right, favoring product formation. Higher temperature favors the endothermic direction (forward).

Flashcard 39: State the reaction quotient expression for 2A+B3C+D2A + B \rightleftharpoons 3C + D.

Answer: Qc=[C]3[D][A]2[B]Q_c = \frac{[C]^3[D]}{[A]^2[B]}. Products in numerator with coefficients as exponents, reactants in denominator.

Flashcard 40: What happens to KcK_c with temperature change in an exothermic reaction?

Answer: KcK_c decreases with an increase in temperature. Higher temperature opposes exothermic reactions, decreasing KcK_c.

Flashcard 41: What effect does temperature have on KcK_c for endothermic reactions?

Answer: KcK_c increases with an increase in temperature. Higher temperature favors endothermic reactions, increasing KcK_c.