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A gas-phase decomposition is first-order with respect to the reactant, R. If the initial concentration of R is 1.0 × 104 mol L1and the rate constant k = 1.08 × 106 s1, what concentration of R remains after 25 days?


A) 1.0 × 10 3 mol L 1
B) 1.0 × 10 4 mol L 1
C) 9.6 × 10 5 mol L 1
D) 4.3 × 10 5 mol L 1
E) 9.7 × 10 6 mol L 1

F) C) and E)
G) C) and D)

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The rate law for the reaction 3A → C is Rate = 4.36 × 102 L mol1 hr1 [A]2 What is the half-life for the reaction if the initial concentration of A is 0.250 M?


A) 0.0109 hr
B) 0.0629 hr
C) 15.9 hr
D) 23.9 hr
E) 91.7 hr

F) None of the above
G) B) and E)

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If the activation energy of a reaction decreases by 10.0 kJ/mol, from 100.0 to 90.0 kJ/mol, what effect will this have on the rate of reaction at 298K?


A) The rate will increase, by a factor of more than 50.
B) The rate will decrease, by a factor of more than 50.
C) The rate will increase, by a factor of less than 50.
D) The rate will decrease, by a factor of less than 50.
E) The rate will not change unless temperature changes.

F) B) and D)
G) A) and B)

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All second-order reactions are bimolecular reactions.

A) True
B) False

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Consider the reaction 2A + 2B + C → 2D + E If the rate law for this reaction is Rate = k[A][B]2, what will be the effect on the rate if the concentrations of A, B and C are all doubled at the same time?


A) The rate will increase by a factor of 2.
B) The rate will increase by a factor of 4.
C) The rate will increase by a factor of 6.
D) The rate will increase by a factor of 8.
E) More information is needed before this question can be answered.

F) B) and C)
G) C) and D)

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Chlorine atoms act as heterogeneous catalysts in the destruction of ozone in the stratosphere.

A) True
B) False

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Which of the following affects the activation energy of a reaction?


A) Temperature of the reactants
B) Concentrations of reactants
C) Presence of a catalyst
D) Surface area of reactants
E) Reaction progress

F) A) and B)
G) C) and E)

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When the reaction A → B + C is studied, a plot 1/[A]t vs. time gives a straight line with a positive slope. What is the order of the reaction?


A) Zero
B) First
C) Second
D) Third
E) More information is needed to determine the order.

F) A) and E)
G) A) and B)

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Consider the following reaction 8A(g) + 5B(g) → 8C(g) + 6D(g) If [C] is increasing at the rate of 4.0 mol L1s1, at what rate is [B] changing?


A) −0.40 mol L 1s 1
B) −2.5 mol L 1s 1
C) −4.0 mol L 1s 1
D) −6.4 mol L 1s 1
E) None of these choices are correct.

F) None of the above
G) D) and E)

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A transition state is a species (or state) corresponding to an energy maximum on a reaction energy diagram.

A) True
B) False

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A reaction has the following rate law: Rate = k[A][B]2 In experiment 1, the concentrations of A and B are both 0.10 mol L1; in experiment 2, the concentrations are both 0.30 mol L1. If the temperature stays constant, what is the value of the ratio, Rate(2) /Rate(1) ?


A) 3.0
B) 6.0
C) 9.0
D) 18
E) 27

F) B) and E)
G) A) and D)

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Consider the following mechanism for the oxidation of bromide ions by hydrogen peroxide in aqueous acid solution. H+ + H2O2 ⇄ H2O+−OH (rapid equilibrium) H2O+−OH + Br → HOBr + H2O (slow) HOBr + H+ + Br → Br2 + H2O (fast) What is the overall reaction equation for this process?


A) 2H 2O +−OH + 2Br → H 2O 2 + Br 2 + 2H 2O
B) 2H + + 2Br + H 2O 2 → Br 2 + 2H 2O
C) 2H + + H 2O 2 + Br + HOBr → H 2O +−OH + Br 2 + H 2O
D) H 2O +−OH + Br + H + → Br 2 + H 2O
E) None of these choices are correct.

F) D) and E)
G) B) and D)

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Ammonium cyanate (NH4CNO) reacts to form urea (NH2CONH2) . At 65°C the rate constant, k, is 3.60 L mol1s1. What is the rate law for this reaction?


A) Rate = 3.60 L mol 1s 1[NH 4CNO]
B) Rate = 3.60 L mol 1s 1[NH 4CNO] 2
C) Rate = 0.28 mol L 1 s 1[NH 4CNO]
D) Rate = 0.28 mol L 1 s 1[NH 4CNO] 2
E) Rate = 3.60 L mol 1s 1[NH 2CONH 2] 1

F) A) and E)
G) C) and D)

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The radioactive isotope tritium decays with a first-order rate constant k of 0.056 year1. What fraction of the tritium initially in a sample is still present 30 years later?


A) 0.19
B) 0.60
C) 0.15
D) 2.8 × 10 38
E) None of these choices are correct.

F) B) and E)
G) D) and E)

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The units of the rate constant depend on the order of the reaction.

A) True
B) False

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An increase in temperature increases the reaction rate because


A) a greater fraction of the collisions have the correct orientation of molecules.
B) the activation energy of the reaction will increase.
C) the activation energy of the reaction will decrease.
D) temperature acts as a catalyst in chemical reactions.
E) more collisions will have enough energy to exceed the activation energy.

F) A) and B)
G) A) and C)

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A first-order reaction has a half-life of 20.0 minutes. Starting with 1.00 × 1020 molecules of reactant at time t = 0, how many molecules remain unreacted after 100.0 minutes?


A) 1.00 × 10 4 molecules
B) 2.00 × 10 19 molecules
C) 3.20 × 10 16 molecules
D) 5.00 × 10 20 molecules
E) None of these choices are correct.

F) D) and E)
G) A) and E)

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The decomposition of dinitrogen pentaoxide to nitrogen dioxide and oxygen follows first-order kinetics and has an activation energy of 102 kJ/mol. By what factor will the fraction of collisions with energy greater than or equal to the activation energy increase if the reaction temperature goes from 30°C to 60°C?


A) 1.00
B) 1.10
C) 2.00
D) 4.00
E) 38.4

F) B) and C)
G) B) and D)

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The reaction of ethylene (C2H4) with butadiene (C4H6) to form cyclohexene (C6H10) has an activation energy (Ea) of 115 kJ/mol. The reverse reaction (decomposition of cyclohexene to ethylene and butadiene) has an activation energy of 287 kJ/mol. What is the heat of reaction, Δ Hrxn, for the forward reaction?


A) +115 kJ/mol
B) +287 kJ/mol
C) −287 kJ/mol
D) +172 kJ/mol
E) −172 kJ/mol

F) C) and D)
G) A) and B)

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Tetrafluoroethylene, C2F4, can be converted to octafluorocyclobutane which can be used as a refrigerant or an aerosol propellant. A plot of 1/[C2F4] vs. time gives a straight line with a slope of 0.0448 L mol1s1. What is the rate law for this reaction?


A) Rate = 0.0448 (L mol 1s 1) [C 2F 4]
B) Rate = 22.3 (mol L 1s) [C 2F 4]
C) Rate = 0.0448 (L mol 1s 1) [C 2F 4] 2
D) Rate = 22.3 (mol L 1s) [C 2F 4] 2
E) Rate = 0.0448 s 1 [C 2F 4]

F) C) and D)
G) A) and E)

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