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Chem107 Exam 2 – 20 Exam Questions and Verified Answers on Reaction Kinetics, Arrhenius Equation, and Acid–Base Chemistry (Chem107)

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This document contains approximately 20 exam questions with verified answers designed to help students prepare for Chem107 Exam 2 in a university General Chemistry course. The material focuses on important topics in chemical kinetics and acid–base chemistry, including rate laws, reaction order (zero-order, first-order, and second-order reactions), units of rate constants, half-life expressions, and the interpretation of reaction rate graphs. It also introduces the Arrhenius equation, activation energy calculations, and the use of linear equations such as the slope equation (y = mx + b) for Arrhenius plots used to determine reaction kinetics relationships. These concepts are presented in a concise question-and-answer format that allows students to review definitions, formulas, and problem-solving strategies commonly tested in chemistry exams. The document further explores reaction mechanisms and energy diagrams, including the concept of reaction intermediates, the effect of catalysts on reaction pathways, and how activation energy relates to forward and reverse reactions. It also reviews important acid–base theory concepts such as Arrhenius acids and bases, Brønsted–Lowry acid–base definitions, conjugate acid–base pairs, and the amphoteric nature of water. Additional topics include strong and weak acids, strong bases, pH calculations, the relationship between hydrogen ion concentration and pH, and the formulas used to convert between pH, H⁺ concentration, and OH⁻ concentration. These explanations provide a quick but comprehensive review of fundamental chemistry principles required for solving exam questions in kinetics and acid–base equilibria. The content aligns with the learning objectives typically covered in General Chemistry II courses and complements widely used textbooks such as Chemistry: The Central Science by Theodore L. Brown, H. Eugene LeMay, Bruce E. Bursten, and Catherine Murphy, which include detailed coverage of chemical kinetics, reaction mechanisms, and acid–base chemistry. As shown throughout the document, formulas, definitions, and conceptual explanations are organized for rapid review and exam preparation. This document may be particularly useful for students enrolled in courses such as: Chem107 General Chemistry II Introductory Chemistry II College Chemistry Foundations of Chemical Principles Pre-Health General Chemistry It may benefit students studying in the following programs: Chemistry Biochemistry Biology Pre-medicine Pharmacy Chemical engineering Nursing Health sciences Biotechnology Keywords: chemical kinetics, reaction rate laws, zero order reaction, first order reaction, second order reaction, rate constant units, half life equations, arrhenius equation, activation energy calculation, arrhenius plot, slope equation chemistry, reaction intermediates, catalysts in reactions, reaction energy diagram, bronsted lowry acids bases, arrhenius acids bases, conjugate acid base pairs, amphoteric water, strong acids list, weak acids chemistry, strong bases list, ph calculations, hydrogen ion concentration, oh concentration chemistry, general chemistry kinetics exam questions

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Chem107
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Chem107

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Chem107 Exam 2

y=mx+b


Arrhenius slope plot - 🧠 ANSWER ✔✔


slope equation - 🧠 ANSWER ✔✔


Rate law order 0 - 🧠 ANSWER ✔✔units of k


M•s^-1


Half life expression order 0 - 🧠 ANSWER ✔✔units of k


M•s^-1


Rate law order 1 - 🧠 ANSWER ✔✔units of k

, s^-1


Half life expression order 1 - 🧠 ANSWER ✔✔units of k


s^-1


Rate law order 2 - 🧠 ANSWER ✔✔units of k


M^-1•s^-1


Half life expression order 2 - 🧠 ANSWER ✔✔units of k


M^-1•s^-1

How find activation energy Ea


Arrhenius Equation - 🧠 ANSWER ✔✔R= 3.314E10^-3 kj/


Reaction Rates of 2 Reaction Diagram - 🧠 ANSWER ✔✔


Reaction Intermediate - 🧠 ANSWER ✔✔1st product than it switches to

reactent


Reverse rxn - 🧠 ANSWER ✔✔Add the activation energy plus the enthapy of

the reaction


Catalyst - 🧠 ANSWER ✔✔Its in both the reactant and in the product

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