AP Chemistry Flashcards: Reaction Mechanisms And Rate Law

Study Reaction Mechanisms And Rate Law 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 Mechanisms And Rate Law

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QUESTION
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How do you find the overall order of a reaction?

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ANSWER

Sum the exponents in the rate law. Add all concentration exponents in rate law.

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Flashcard 1: How do you find the overall order of a reaction?

Answer: Sum the exponents in the rate law. Add all concentration exponents in rate law.

Flashcard 2: What is the overall reaction order if Rate = k[A]0[B]1k[A]^0[B]^1?

Answer:

  1. Sum exponents: 0 + 1 = 1.

Flashcard 3: What is the rate law expression for a reaction aA+bBcCaA + bB \rightarrow cC?

Answer: Rate = k[A]m[B]nk[A]^m[B]^n. General form where m and n are determined experimentally, not from coefficients.

Flashcard 4: Which step in a reaction mechanism is the rate-determining step?

Answer: The slowest step. This step controls the overall reaction rate.

Flashcard 5: State the units of the rate constant kk for a first-order reaction.

Answer: s1s^{-1}. First-order reactions have units of reciprocal time.

Flashcard 6: What is the role of the rate-determining step in a reaction mechanism?

Answer: Controls the overall rate of the reaction. Determines how fast products form overall.

Flashcard 7: How do you find the overall order of a reaction?

Answer: Sum the exponents in the rate law. Add all concentration exponents in rate law.

Flashcard 8: Define the term 'reaction mechanism'.

Answer: A series of elementary steps that describe the pathway from reactants to products. Shows how reactants transform through specific elementary steps.

Flashcard 9: What is a termolecular reaction?

Answer: A reaction involving three reacting species in one step. Rare due to low probability of three-body collisions.

Flashcard 10: What is meant by the term 'elementary step' in a reaction mechanism?

Answer: A single reaction step with a single transition state. Cannot be broken down into simpler mechanistic steps.

Flashcard 11: Find and state the overall order of reaction for Rate = k[A][B]2k[A][B]^2.

Answer:

  1. Add all exponents: 1 + 2 = 3.

Flashcard 12: What is the order of reaction with respect to AA if Rate = k[A]2k[A]^2?

Answer:

  1. The exponent of [A][A] indicates second order with respect to AA.

Flashcard 13: Predict the rate law for the elementary reaction A2+BA2BA_2 + B \rightarrow A_2B.

Answer: Rate = k[A2][B]k[A_2][B]. Stoichiometry directly gives rate law for elementary steps.

Flashcard 14: For a reaction Rate = k[A]3k[A]^3, what is the overall reaction order?

Answer:

  1. Single exponent gives overall order directly.

Flashcard 15: What is a termolecular reaction?

Answer: A reaction involving three reacting species in one step. Rare due to low probability of three-body collisions.

Flashcard 16: What is a reaction intermediate?

Answer: A species formed and consumed during the reaction mechanism. Temporary species that doesn't appear in overall equation.

Flashcard 17: What is the term for a species that appears in the mechanism but not in the overall reaction?

Answer: Intermediate. Formed during mechanism but cancels out overall.

Flashcard 18: What is the molecularity of an elementary step A+2BAB2A + 2B \rightarrow AB_2?

Answer: Termolecular. Count total molecules: 1 A + 2 B = 3 molecules.

Flashcard 19: For a reaction Rate = k[A]1[B]2k[A]^1[B]^2, what is the reaction order with respect to BB?

Answer:

  1. The exponent of [B] in the rate law.

Flashcard 20: Predict the rate law for the elementary reaction A2+BA2BA_2 + B \rightarrow A_2B.

Answer: Rate = k[A2][B]k[A_2][B]. Stoichiometry directly gives rate law for elementary steps.

Flashcard 21: What is the role of the rate-determining step in a reaction mechanism?

Answer: Controls the overall rate of the reaction. Determines how fast products form overall.

Flashcard 22: Define activation energy in the context of a reaction mechanism.

Answer: The minimum energy required for a reaction to occur. Energy barrier that must be overcome for reaction.

Flashcard 23: How does a catalyst affect the rate-determining step?

Answer: It lowers the activation energy of the rate-determining step. Reduces energy barrier of the limiting step.

Flashcard 24: For Rate = k[A]2[B]0k[A]^2[B]^0, what is the order with respect to BB?

Answer:

  1. Zero exponent means B doesn't affect rate.

Flashcard 25: What is the difference between an intermediate and a catalyst in a reaction mechanism?

Answer: Intermediates are produced and consumed; catalysts are not consumed. Key distinction: intermediates appear then disappear in the mechanism.

Flashcard 26: What is an elementary reaction?

Answer: A reaction that occurs in a single step. Proceeds directly without intermediate steps.

Flashcard 27: What is the relationship between rate law and reaction mechanism?

Answer: The rate law can provide insights into the mechanism, particularly the rate-determining step. Rate law reflects the slowest step's kinetics.

Flashcard 28: State the units of the rate constant kk for a second-order reaction.

Answer: M1s1M^{-1}s^{-1}. Second-order reactions have units of reciprocal concentration per time.

Flashcard 29: What is the role of a catalyst in a reaction mechanism?

Answer: It lowers the activation energy, increasing reaction rate. Provides alternative pathway with lower energy barrier.

Flashcard 30: What is the molecularity of a single elementary step involving three molecules?

Answer: Termolecular. Three molecules participate in a single elementary step.

Flashcard 31: Determine the rate law for the elementary reaction 2NO+O22NO22NO + O_2 \rightarrow 2NO_2.

Answer: Rate = k[NO]2[O2]k[NO]^2[O_2]. For elementary reactions, stoichiometry equals rate law exponents.

Flashcard 32: Identify the term for a reaction step that involves a single reactant.

Answer: Unimolecular. Only one molecule undergoes reaction in the step.

Flashcard 33: What is the rate law expression for a reaction aA+bBcCaA + bB \rightarrow cC?

Answer: Rate = k[A]m[B]nk[A]^m[B]^n. General form where m and n are determined experimentally, not from coefficients.

Flashcard 34: What is a catalyst?

Answer: A substance that increases the reaction rate without being consumed. Speeds up reaction but remains unchanged overall.

Flashcard 35: What is an elementary reaction?

Answer: A reaction that occurs in a single step. Proceeds directly without intermediate steps.

Flashcard 36: Which step in a reaction mechanism is the rate-determining step?

Answer: The slowest step. This step controls the overall reaction rate.

Flashcard 37: In a reaction mechanism, what does the term 'elementary step' imply?

Answer: Each step represents a single molecular event. Each step occurs as written without sub-steps.

Flashcard 38: What is the rate law for the elementary reaction 2AA22A \rightarrow A_2?

Answer: Rate = k[A]2k[A]^2. Stoichiometry gives exponents for elementary reactions.

Flashcard 39: What is meant by the term 'elementary step' in a reaction mechanism?

Answer: A single reaction step with a single transition state. Cannot be broken down into simpler mechanistic steps.

Flashcard 40: What is a termolecular reaction?

Answer: A reaction involving three reacting species in one step. Rare due to low probability of three-body collisions.

Flashcard 41: What is the first step in writing a reaction mechanism?

Answer: Identify the overall balanced chemical equation. Foundation for proposing elementary steps.

Flashcard 42: What is the purpose of a reaction mechanism?

Answer: To provide a detailed step-by-step description of a reaction. Explains the molecular pathway from reactants to products.

Flashcard 43: State the rate law for a bimolecular elementary reaction involving AA and BB.

Answer: Rate = k[A][B]k[A][B]. Elementary steps follow stoichiometry in rate laws.

Flashcard 44: What units does the rate constant kk have for a zero-order reaction?

Answer: Ms1M\cdot s^{-1}. Zero-order has units of concentration per time.

Flashcard 45: Identify the molecularity of a reaction with the elementary step A+BCA + B \rightarrow C.

Answer: Bimolecular. Two different molecules react in one step.

Flashcard 46: Find and state the overall order of reaction for Rate = k[A][B]2k[A][B]^2.

Answer:

  1. Add all exponents: 1+2=31 + 2 = 3.

Flashcard 47: What are the units of the rate constant kk for a third-order reaction?

Answer: M2s1M^{-2}s^{-1}. Third-order has units M2s1M^{-2}s^{-1}.

Flashcard 48: What is a reaction intermediate?

Answer: A species formed and consumed during the reaction mechanism. Temporary species that doesn't appear in overall equation.

Flashcard 49: What is the overall reaction order if Rate = k[A]0[B]1k[A]^0[B]^1?

Answer:

  1. Sum exponents: 0+1=10 + 1 = 1.

Flashcard 50: What is a unimolecular reaction?

Answer: A reaction involving one reactant molecule in a single step. Single molecule breaks down or rearranges.

Flashcard 51: What is the term for a species that appears in the mechanism but not in the overall reaction?

Answer: Intermediate. Formed during mechanism but cancels out overall.

Flashcard 52: What is the role of a catalyst in a reaction mechanism?

Answer: It lowers the activation energy, increasing reaction rate. Provides alternative pathway with lower energy barrier.

Flashcard 53: Determine the rate law for the elementary reaction 2NO+O22NO22NO + O_2 \rightarrow 2NO_2.

Answer: Rate = k[NO]2[O2]k[NO]^2[O_2]. For elementary reactions, stoichiometry equals rate law exponents.

Flashcard 54: Identify the molecularity of a reaction with the elementary step A+BCA + B \rightarrow C.

Answer: Bimolecular. Two different molecules react in one step.

Flashcard 55: Identify the molecularity of a single-step reaction involving two reactants.

Answer: Bimolecular. Two reactants means molecularity equals 2.

Flashcard 56: Determine the rate law for a unimolecular reaction involving AA.

Answer: Rate = k[A]k[A]. Unimolecular means first order in the single reactant.

Flashcard 57: What is the molecularity of an elementary step A+2BAB2A + 2B \rightarrow AB_2?

Answer: Termolecular. Count total molecules: 1 A + 2 B = 3 molecules.

Flashcard 58: State the units of the rate constant kk for a first-order reaction.

Answer: s1s^{-1}. First-order reactions have units of reciprocal time.