AP Chemistry Flashcards: Magnitude Of The Equilibrium Constant

Study Magnitude Of The Equilibrium Constant 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

Magnitude Of The Equilibrium Constant

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What will happen to KcK_c if the equation coefficients are doubled?

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ANSWER

KcK_c is squared. When coefficients are multiplied by nn, KK is raised to the nnth power.

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Flashcard 1: What will happen to KcK_c if the equation coefficients are doubled?

Answer: KcK_c is squared. When coefficients are multiplied by nn, KK is raised to the nnth power.

Flashcard 2: For 2SO2(g)+O2(g)2SO3(g)2SO_2(g) + O_2(g) \rightleftharpoons 2SO_3(g), write the KcK_c expression.

Answer: Kc=[SO3]2[SO2]2[O2]K_c = \frac{[SO_3]^2}{[SO_2]^2[O_2]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 3: What is the KcK_c expression for CO(g)+2H2(g)CH3OH(g)CO(g) + 2H_2(g) \rightleftharpoons CH_3OH(g)?

Answer: Kc=[CH3OH][CO][H2]2K_c = \frac{[CH_3OH]}{[CO][H_2]^2}. Products over reactants, each raised to stoichiometric coefficients.

Flashcard 4: What happens to KcK_c if the equation is reversed?

Answer: KcK_c becomes 1/Kc1/K_c. Reversing the equation inverts the equilibrium constant.

Flashcard 5: Define the equilibrium constant KK in terms of partial pressures.

Answer: Kp=(PC)c(PD)d(PA)a(PB)bK_p = \frac{(P_C)^c(P_D)^d}{(P_A)^a(P_B)^b} for gases. Equilibrium constant using partial pressures for gaseous species only.

Flashcard 6: How does changing volume affect KcK_c?

Answer: KcK_c is unaffected. Volume changes affect concentrations but not KcK_c value.

Flashcard 7: State how KcK_c is affected by a change in concentration.

Answer: KcK_c is unaffected. Equilibrium constant is independent of concentration changes.

Flashcard 8: If the equilibrium constant KK for a reaction is 0.010.01, what does this suggest?

Answer: The reaction is reactant-favored. K<1K < 1 means reactants predominate at equilibrium.

Flashcard 9: For the reaction ABA \rightleftharpoons B, if Kc=1K_c = 1, what does this indicate?

Answer: The concentrations of products and reactants are equal. Kc=1K_c = 1 means equal concentrations of A and B at equilibrium.

Flashcard 10: What does a small KcK_c value indicate about the position of equilibrium?

Answer: The equilibrium favors reactants. Small KK means reactants are more abundant at equilibrium.

Flashcard 11: What is the effect on KcK_c if the temperature increases for an endothermic reaction?

Answer: KcK_c increases. Higher temperature favors endothermic direction (products).

Flashcard 12: What is true about the equilibrium constant when a reaction reaches equilibrium?

Answer: The rate of the forward and reverse reactions are equal. At equilibrium, the equilibrium constant value remains constant.

Flashcard 13: What is the effect on KcK_c if the temperature decreases for an endothermic reaction?

Answer: KcK_c decreases. Lower temperature shifts endothermic equilibrium toward reactants.

Flashcard 14: For the equilibrium PCl5(g)PCl3(g)+Cl2(g)PCl_5(g) \rightleftharpoons PCl_3(g) + Cl_2(g), write the KcK_c expression.

Answer: Kc=[PCl3][Cl2][PCl5]K_c = \frac{[PCl_3][Cl_2]}{[PCl_5]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 15: For the reaction N2(g)+3H2(g)2NH3(g)N_2(g) + 3H_2(g) \rightleftharpoons 2NH_3(g), write the KcK_c expression.

Answer: Kc=[NH3]2[N2][H2]3K_c = \frac{[NH_3]^2}{[N_2][H_2]^3}. Products over reactants, each raised to their stoichiometric coefficients.

Flashcard 16: What is the KcK_c expression for H2(g)+I2(g)2HI(g)H_2(g) + I_2(g) \rightleftharpoons 2HI(g)?

Answer: Kc=[HI]2[H2][I2]K_c = \frac{[HI]^2}{[H_2][I_2]}. Products over reactants, each raised to stoichiometric coefficients.

Flashcard 17: For 2NO(g)+O2(g)2NO2(g)2NO(g) + O_2(g) \rightleftharpoons 2NO_2(g), provide the KcK_c expression.

Answer: Kc=[NO2]2[NO]2[O2]K_c = \frac{[NO_2]^2}{[NO]^2[O_2]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 18: Predict how KcK_c will shift if pressure is increased for N2(g)+3H2(g)2NH3(g)N_2(g) + 3H_2(g) \rightleftharpoons 2NH_3(g).

Answer: KcK_c does not change. Equilibrium constant depends only on temperature, not pressure.

Flashcard 19: For the reaction ABA \rightleftharpoons B, if Kc=1K_c = 1, what does this indicate?

Answer: The concentrations of products and reactants are equal. Kc=1K_c = 1 means equal concentrations of A and B at equilibrium.

Flashcard 20: If Kc=1000K_c = 1000 for a reaction, is it product or reactant favored?

Answer: Product favored. K>1K > 1 indicates products are favored at equilibrium.

Flashcard 21: What does a large KcK_c value indicate about the position of equilibrium?

Answer: The equilibrium favors products. Large KK means products are more abundant at equilibrium.

Flashcard 22: What happens to KcK_c if the equation is reversed?

Answer: KcK_c becomes 1/Kc1/K_c. Reversing the equation inverts the equilibrium constant.

Flashcard 23: What is the expression for the equilibrium constant KcK_c for the reaction aA+bBcC+dDaA + bB \rightleftharpoons cC + dD?

Answer: Kc=[C]c[D]d[A]a[B]bK_c = \frac{[C]^c[D]^d}{[A]^a[B]^b}. Products raised to coefficients over reactants raised to coefficients.

Flashcard 24: If Kp=5K_p = 5 and Kc=5K_c = 5 for a reaction, what is n\triangle n?

Answer: n=0\triangle n = 0. When Kp=KcK_p = K_c, the change in gas moles is zero.

Flashcard 25: Determine the KcK_c expression for 2NO2(g)N2O4(g)2NO_2(g) \rightleftharpoons N_2O_4(g).

Answer: Kc=[N2O4][NO2]2K_c = \frac{[N_2O_4]}{[NO_2]^2}. Products over reactants, with each raised to stoichiometric coefficients.

Flashcard 26: Predict how KcK_c will shift if pressure is increased for N2(g)+3H2(g)2NH3(g)N_2(g) + 3H_2(g) \rightleftharpoons 2NH_3(g).

Answer: KcK_c does not change. Equilibrium constant depends only on temperature, not pressure.

Flashcard 27: Determine the KcK_c expression for C(s)+CO2(g)2CO(g)C(s) + CO_2(g) \rightleftharpoons 2CO(g).

Answer: Kc=[CO]2/[CO2]K_c = [CO]^2 / [CO_2]. Solids are omitted from equilibrium expressions.

Flashcard 28: State how KcK_c is affected by a change in concentration.

Answer: KcK_c is unaffected. Equilibrium constant is independent of concentration changes.

Flashcard 29: For the reaction 2A(g)B(g)+C(g)2A(g) \rightleftharpoons B(g) + C(g), write the KpK_p expression.

Answer: Kp=PBPCPA2K_p = \frac{P_B P_C}{P_A^2}. Partial pressures of products over reactants, raised to coefficients.

Flashcard 30: For the reaction 2A(g)B(g)+C(g)2A(g) \rightleftharpoons B(g) + C(g), write the KpK_p expression.

Answer: Kp=PBPCPA2K_p = \frac{P_B P_C}{P_A^2}. Partial pressures of products over reactants, raised to coefficients.

Flashcard 31: State the relationship between KcK_c and the rate constants kfk_f and krk_r for a reaction.

Answer: Kc=kfkrK_c = \frac{k_f}{k_r}. Ratio of forward to reverse rate constants equals equilibrium constant.

Flashcard 32: What is the expression for KcK_c for the decomposition of H2O(g)H_2O(g) into H2(g)H_2(g) and O2(g)O_2(g)?

Answer: Kc=[H2]2[O2][H2O]2K_c = \frac{[H_2]^2[O_2]}{[H_2O]^2}. Decomposition: 2H2O(g)2H2(g)+O2(g)2H_2O(g) \rightleftharpoons 2H_2(g) + O_2(g).

Flashcard 33: Determine the KcK_c expression for CH4(g)+2O2(g)CO2(g)+2H2O(g)CH_4(g) + 2O_2(g) \rightleftharpoons CO_2(g) + 2H_2O(g).

Answer: Kc=[CO2][H2O]2[CH4][O2]2K_c = \frac{[CO_2][H_2O]^2}{[CH_4][O_2]^2}. Products over reactants, each raised to their stoichiometric coefficients.

Flashcard 34: What is the equilibrium constant KcK_c for the reverse reaction if the forward reaction has Kc=10K_c = 10?

Answer: Kc=0.1K_c = 0.1. Reverse reaction constant equals 1/Kforward1/K_{forward}.

Flashcard 35: What is the KcK_c expression for the reaction 2H2(g)+O2(g)2H2O(g)2H_2(g) + O_2(g) \rightleftharpoons 2H_2O(g)?

Answer: Kc=[H2O]2[H2]2[O2]K_c = \frac{[H_2O]^2}{[H_2]^2[O_2]}. Products over reactants, each raised to stoichiometric coefficients.

Flashcard 36: Determine the KcK_c expression for CH4(g)+2O2(g)CO2(g)+2H2O(g)CH_4(g) + 2O_2(g) \rightleftharpoons CO_2(g) + 2H_2O(g).

Answer: Kc=[CO2][H2O]2[CH4][O2]2K_c = \frac{[CO_2][H_2O]^2}{[CH_4][O_2]^2}. Products over reactants, each raised to their stoichiometric coefficients.

Flashcard 37: What does a small KcK_c value indicate about the position of equilibrium?

Answer: The equilibrium favors reactants. Small KK means reactants are more abundant at equilibrium.

Flashcard 38: If the equilibrium constant KK for a reaction is 0.010.01, what does this suggest?

Answer: The reaction is reactant-favored. K<1K < 1 means reactants predominate at equilibrium.

Flashcard 39: Calculate KpK_p from Kc=50K_c = 50 for H2(g)+I2(g)2HI(g)H_2(g) + I_2(g) \rightleftharpoons 2HI(g) at 300 K.

Answer: Kp=50K_p = 50. Δn=0\Delta n = 0, so Kp=KcK_p = K_c.

Flashcard 40: What is the effect on KpK_p if the temperature increases for an exothermic reaction?

Answer: KpK_p decreases. Le Chatelier's principle: heat shifts equilibrium toward reactants.

Flashcard 41: What is the equilibrium expression for KcK_c for the reaction 2SO3(g)2SO2(g)+O2(g)2SO_3(g) \rightleftharpoons 2SO_2(g) + O_2(g)?

Answer: Kc=[SO2]2[O2][SO3]2K_c = \frac{[SO_2]^2[O_2]}{[SO_3]^2}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 42: What is the effect on KcK_c if the temperature increases for an endothermic reaction?

Answer: KcK_c increases. Higher temperature favors endothermic direction (products).

Flashcard 43: Determine the KcK_c expression for C(s)+CO2(g)2CO(g)C(s) + CO_2(g) \rightleftharpoons 2CO(g).

Answer: Kc=[CO]2/[CO2]K_c = [CO]^2 / [CO_2]. Solids are omitted from equilibrium expressions.

Flashcard 44: What is the expression for the equilibrium constant KcK_c for the reaction aA+bBcC+dDaA + bB \rightleftharpoons cC + dD?

Answer: Kc=[C]c[D]d[A]a[B]bK_c = \frac{[C]^c[D]^d}{[A]^a[B]^b}. Products raised to coefficients over reactants raised to coefficients.

Flashcard 45: For the reaction 2A(g)B(g)+C(g)2A(g) \rightleftharpoons B(g) + C(g), write the KpK_p expression.

Answer: Kp=PBPCPA2K_p = \frac{P_B P_C}{P_A^2}. Partial pressures of products over reactants, raised to coefficients.

Flashcard 46: What is true about the equilibrium constant when a reaction reaches equilibrium?

Answer: The rate of the forward and reverse reactions are equal. At equilibrium, the equilibrium constant value remains constant.

Flashcard 47: For N2(g)+O2(g)2NO(g)N_2(g) + O_2(g) \rightleftharpoons 2NO(g), write the KcK_c expression.

Answer: Kc=[NO]2[N2][O2]K_c = \frac{[NO]^2}{[N_2][O_2]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 48: What is true about KcK_c if a reaction is at equilibrium?

Answer: The value of KcK_c is constant. At equilibrium, KcK_c has a fixed value at constant temperature.

Flashcard 49: How does KcK_c change if a catalyst is added to a reaction?

Answer: KcK_c remains unchanged. Catalysts affect reaction rate but not equilibrium position.

Flashcard 50: Define the equilibrium constant KK in terms of partial pressures.

Answer: Kp=(PC)c(PD)d(PA)a(PB)bK_p = \frac{(P_C)^c(P_D)^d}{(P_A)^a(P_B)^b} for gases. Equilibrium constant using partial pressures for gaseous species only.

Flashcard 51: State how KcK_c is affected by a change in concentration.

Answer: KcK_c is unaffected. Equilibrium constant is independent of concentration changes.

Flashcard 52: Identify the equilibrium constant expression KpK_p for the reaction aA(g)+bB(g)cC(g)+dD(g)aA(g) + bB(g) \rightleftharpoons cC(g) + dD(g).

Answer: Kp=(PC)c(PD)d(PA)a(PB)bK_p = \frac{(P_C)^c(P_D)^d}{(P_A)^a(P_B)^b}. Uses partial pressures instead of concentrations in the expression.

Flashcard 53: Determine the KcK_c expression for C(s)+CO2(g)2CO(g)C(s) + CO_2(g) \rightleftharpoons 2CO(g).

Answer: Kc=[CO]2/[CO2]K_c = [CO]^2 / [CO_2]. Solids are omitted from equilibrium expressions.

Flashcard 54: How does changing volume affect KcK_c?

Answer: KcK_c is unaffected. Volume changes affect concentrations but not KcK_c value.

Flashcard 55: What is true about KcK_c if a reaction is at equilibrium?

Answer: The value of KcK_c is constant. At equilibrium, KcK_c has a fixed value at constant temperature.

Flashcard 56: What is the effect on KpK_p if the temperature increases for an exothermic reaction?

Answer: KpK_p decreases. Le Chatelier's principle: heat shifts equilibrium toward reactants.

Flashcard 57: For the reaction ABA \rightleftharpoons B, if Kc=1K_c = 1, what does this indicate?

Answer: The concentrations of products and reactants are equal. Kc=1K_c = 1 means equal concentrations of A and B at equilibrium.

Flashcard 58: What is the equilibrium expression for KcK_c for the reaction 2SO3(g)2SO2(g)+O2(g)2SO_3(g) \rightleftharpoons 2SO_2(g) + O_2(g)?

Answer: Kc=[SO2]2[O2][SO3]2K_c = \frac{[SO_2]^2[O_2]}{[SO_3]^2}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 59: How does KcK_c change if a catalyst is added to a reaction?

Answer: KcK_c remains unchanged. Catalysts affect reaction rate but not equilibrium position.

Flashcard 60: Identify the equilibrium constant expression KpK_p for the reaction aA(g)+bB(g)cC(g)+dD(g)aA(g) + bB(g) \rightleftharpoons cC(g) + dD(g).

Answer: Kp=(PC)c(PD)d(PA)a(PB)bK_p = \frac{(P_C)^c(P_D)^d}{(P_A)^a(P_B)^b}. Uses partial pressures instead of concentrations in the expression.

Flashcard 61: If Kc=1000K_c = 1000 for a reaction, is it product or reactant favored?

Answer: Product favored. K>1K > 1 indicates products are favored at equilibrium.

Flashcard 62: What does a large KcK_c value indicate about the position of equilibrium?

Answer: The equilibrium favors products. Large KK means products are more abundant at equilibrium.

Flashcard 63: Calculate KpK_p from Kc=50K_c = 50 for H2(g)+I2(g)2HI(g)H_2(g) + I_2(g) \rightleftharpoons 2HI(g) at 300 K.

Answer: Kp=50K_p = 50. Δn=0\Delta n = 0, so Kp=KcK_p = K_c.

Flashcard 64: For 2SO2(g)+O2(g)2SO3(g)2SO_2(g) + O_2(g) \rightleftharpoons 2SO_3(g), write the KcK_c expression.

Answer: Kc=[SO3]2[SO2]2[O2]K_c = \frac{[SO_3]^2}{[SO_2]^2[O_2]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 65: What is the KcK_c expression for CO(g)+2H2(g)CH3OH(g)CO(g) + 2H_2(g) \rightleftharpoons CH_3OH(g)?

Answer: Kc=[CH3OH][CO][H2]2K_c = \frac{[CH_3OH]}{[CO][H_2]^2}. Products over reactants, each raised to stoichiometric coefficients.

Flashcard 66: Determine the KcK_c expression for 2NO2(g)N2O4(g)2NO_2(g) \rightleftharpoons N_2O_4(g).

Answer: Kc=[N2O4][NO2]2K_c = \frac{[N_2O_4]}{[NO_2]^2}. Products over reactants, with each raised to stoichiometric coefficients.

Flashcard 67: What is the equilibrium constant KcK_c for the reverse reaction if the forward reaction has Kc=10K_c = 10?

Answer: Kc=0.1K_c = 0.1. Reverse reaction constant equals 1/Kforward1/K_{forward}.

Flashcard 68: What is the KcK_c expression for H2(g)+I2(g)2HI(g)H_2(g) + I_2(g) \rightleftharpoons 2HI(g)?

Answer: Kc=[HI]2[H2][I2]K_c = \frac{[HI]^2}{[H_2][I_2]}. Products over reactants, each raised to stoichiometric coefficients.

Flashcard 69: For 2NO(g)+O2(g)2NO2(g)2NO(g) + O_2(g) \rightleftharpoons 2NO_2(g), provide the KcK_c expression.

Answer: Kc=[NO2]2[NO]2[O2]K_c = \frac{[NO_2]^2}{[NO]^2[O_2]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 70: Determine the KcK_c expression for C(s)+CO2(g)2CO(g)C(s) + CO_2(g) \rightleftharpoons 2CO(g).

Answer: Kc=[CO]2/[CO2]K_c = [CO]^2 / [CO_2]. Solids are omitted from equilibrium expressions.

Flashcard 71: For N2(g)+O2(g)2NO(g)N_2(g) + O_2(g) \rightleftharpoons 2NO(g), write the KcK_c expression.

Answer: Kc=[NO]2[N2][O2]K_c = \frac{[NO]^2}{[N_2][O_2]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 72: What is the effect on KcK_c if the temperature increases for an endothermic reaction?

Answer: KcK_c increases. Higher temperature favors endothermic direction (products).

Flashcard 73: What is true about the equilibrium constant when a reaction reaches equilibrium?

Answer: The rate of the forward and reverse reactions are equal. At equilibrium, the equilibrium constant value remains constant.

Flashcard 74: What is the expression for KcK_c for the decomposition of H2O(g)H_2O(g) into H2(g)H_2(g) and O2(g)O_2(g)?

Answer: Kc=[H2]2[O2][H2O]2K_c = \frac{[H_2]^2[O_2]}{[H_2O]^2}. Decomposition: 2H2O(g)2H2(g)+O2(g)2H_2O(g) \rightleftharpoons 2H_2(g) + O_2(g).

Flashcard 75: What is the relationship between KpK_p and KcK_c?

Answer: Kp=Kc(RT)ΔnK_p = K_c(RT)^{\Delta n}. Δn\Delta n is the change in moles of gas in the reaction.

Flashcard 76: What will happen to KcK_c if the equation coefficients are doubled?

Answer: KcK_c is squared. When coefficients are multiplied by nn, KK is raised to the nnth power.

Flashcard 77: What is the KcK_c expression for CO(g)+2H2(g)CH3OH(g)CO(g) + 2H_2(g) \rightleftharpoons CH_3OH(g)?

Answer: Kc=[CH3OH][CO][H2]2K_c = \frac{[CH_3OH]}{[CO][H_2]^2}. Products over reactants, each raised to stoichiometric coefficients.

Flashcard 78: State how KcK_c is affected by a change in concentration.

Answer: KcK_c is unaffected. Equilibrium constant is independent of concentration changes.

Flashcard 79: What is the KcK_c expression for the reaction 2H2(g)+O2(g)2H2O(g)2H_2(g) + O_2(g) \rightleftharpoons 2H_2O(g)?

Answer: Kc=[H2O]2[H2]2[O2]K_c = \frac{[H_2O]^2}{[H_2]^2[O_2]}. Products over reactants, each raised to stoichiometric coefficients.

Flashcard 80: For the reaction N2(g)+3H2(g)2NH3(g)N_2(g) + 3H_2(g) \rightleftharpoons 2NH_3(g), write the KcK_c expression.

Answer: Kc=[NH3]2[N2][H2]3K_c = \frac{[NH_3]^2}{[N_2][H_2]^3}. Products over reactants, each raised to their stoichiometric coefficients.

Flashcard 81: What is the effect on KcK_c if the temperature decreases for an endothermic reaction?

Answer: KcK_c decreases. Lower temperature shifts endothermic equilibrium toward reactants.

Flashcard 82: What does a large KcK_c value indicate about the position of equilibrium?

Answer: The equilibrium favors products. Large KK means products are more abundant at equilibrium.

Flashcard 83: For the reaction ABA \rightleftharpoons B, if Kc=1K_c = 1, what does this indicate?

Answer: The concentrations of products and reactants are equal. Kc=1K_c = 1 means equal concentrations of A and B at equilibrium.

Flashcard 84: For the equilibrium PCl5(g)PCl3(g)+Cl2(g)PCl_5(g) \rightleftharpoons PCl_3(g) + Cl_2(g), write the KcK_c expression.

Answer: Kc=[PCl3][Cl2][PCl5]K_c = \frac{[PCl_3][Cl_2]}{[PCl_5]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 85: If Kp=5K_p = 5 and Kc=5K_c = 5 for a reaction, what is n\triangle n?

Answer: n=0\triangle n = 0. When Kp=KcK_p = K_c, the change in gas moles is zero.

Flashcard 86: State the relationship between KcK_c and the rate constants kfk_f and krk_r for a reaction.

Answer: Kc=kfkrK_c = \frac{k_f}{k_r}. Ratio of forward to reverse rate constants equals equilibrium constant.

Flashcard 87: What is true about the equilibrium constant when a reaction reaches equilibrium?

Answer: The rate of the forward and reverse reactions are equal. At equilibrium, the equilibrium constant value remains constant.

Flashcard 88: For N2(g)+O2(g)2NO(g)N_2(g) + O_2(g) \rightleftharpoons 2NO(g), write the KcK_c expression.

Answer: Kc=[NO]2[N2][O2]K_c = \frac{[NO]^2}{[N_2][O_2]}. Products over reactants, raised to stoichiometric coefficients.

Flashcard 89: What is the expression for the equilibrium constant KcK_c for the reaction aA+bBcC+dDaA + bB \rightleftharpoons cC + dD?

Answer: Kc=[C]c[D]d[A]a[B]bK_c = \frac{[C]^c[D]^d}{[A]^a[B]^b}. Products raised to coefficients over reactants raised to coefficients.