Published 7/2022MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHzLanguage: English | Size: 2.20 GB | Duration: 1h 51m
Kinetics, Rate Laws, and the Rate of a Reaction
What you'll learn
Understand chal kinetics, reaction rates, and rate laws.
Learn how to calculate the instantaneous and average reaction rate.
Recognize and use the the two types of rate laws in Chemistry.
How to find the form of the rate law using the method of initial rates.
Calculate and report the differential rate law, and convert it to the corresponding integrated rate law.
Detee the 1st order, 2nd order, and Zero-order integrated rate law.
Examples of how to calculate the half-life of a 1st, 2nd, or Zero order reaction.
Understanding of reaction mechanisms, reaction intermediates, elementary steps and molecularity.
Learn the collision model for chal kinetics. Collision frequency, activation energy, and the Arrhenius Equation.
Understand pseudo 1st order rate laws.
Requirements
Basic Mathematics and a Willingness to Learn Chemistry
Description
Chal Kinetics and Rate Laws. This course covers all you need to know about kinetics, reaction rates, and rate laws. We will discuss instantaneous reaction rates, average reaction rates, the differential rate law, the integrated rate law, and the method of initial rates to detee the form of the rate law.We will also cover the 1st-order, 2nd-order, and zero-order integrated rate laws, and the half-life of reactions. Lastly, we'll discuss reaction mechanisms, the Arrhenius equation, and the collision model for chal kinetics.12-1 Introduction to Kinetics12-2 Reaction Rates - Instantaneous Reaction Rates - Average Reaction RatesRun: 18:2912-4 Rate Laws12-5 Types of Rate Laws - The Differential Rate Law - The Integrated Rate LawRun: 12:4912-6 Deteing the Form of the Rate Law - The Method of Initial Rates12-9 Deteing a Differential Rate LawRun: 13:2812-10 The Integrated Rate Law12-10 The First-Order Integrated Rate Law - The Half-Life of a First-Order ReactionRun: 16:1612-13 The Second-Order Integrated Rate Law - The Half-Life of a Second-Order Reaction12-16 The Zero-Order Integrated Rate Law - The Half-Life of a Zero-Order ReactionRun: 13:0112-16 Reaction Mechanisms - Mechanisms - Reaction Intermediates - Elementary Steps and Molecularity - Unimolecular Reactions, Bimolecular Reactions, and Termolecular Reactions - The Rate-Deteing StepRun: 11:4312-19 The Collision Model for Chal Kinetics - Collision Frequency - Activation Energy - Molecular Orientations of Colliding Reactants12-21 The Arrhenius EquationRun: 16:1212-22 Catalysis - Catalyzed Pathways vs. Uncatalyzed Pathways12-23 Integrated Rate Laws for Reactions with More than One Reactant - Pseudo First-Order Rate LawsRun: 9:24
Overview
Section 1: Lecture #1 - Introduction to Chal Kinetics and Reaction Rates
Lecture 1 Introduction to Chal Kinetics and Reaction Rates
Section 2: Lesson #2 - Rate Laws: the Differential Rate Law and the Integrated Rate Law
Lecture 2 Rate Laws: the Differential Rate Law and the Integrated Rate Law
Section 3: Lesson #3 - Detee the Form of the Rate Law - The Method of Initial Rates
Lecture 3 Detee the Form of the Rate Law - The Method of Initial Rates
Section 4: Lesson #4 - The First-Order Integrated Rate Law
Lecture 4 The First-Order Integrated Rate Law
Section 5: Lesson #5 - 2nd-Order Integrated Rate Laws, and Zero-Order Integrated Rate Laws
Lecture 5 Second-Order Integrated Rate Laws, and Zero-Order Integrated Rate Laws
Section 6: Lesson #6 - Reaction Mechanisms in Kinetics: Elementary Steps and Molecularity
Lecture 6 Reaction Mechanisms in Kinetics: Elementary Steps and Molecularity
Section 7: Lesson #7 - The Collision Model for Chal Kinetics
Lecture 7 The Collision Model for Chal Kinetics
Section 8: Lesson #8 - Catalysis; Pseudo First-Order Rate Laws
Lecture 8 Catalysis; Pseudo First-Order Rate Laws
1st Year Chemistry Students Taking High School Chemistry,1st Year Chemistry Students Taking High School AP Chemistry,1st Year Chemistry Students Taking College Chemistry,1st Year General Chemistry Students,1st Year Inorganic Chemistry Students
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