Instructional Video4:02
Bozeman Science

Multistep Reactions

12th - Higher Ed
In this video Paul Andersen explains how an overall chemical reaction is made up of several elementary steps. The stoichiometry of this equation can be predicted but the rate law must be measured. If the elementary steps of the reaction...
Instructional Video8:56
Crash Course

Kinetics: Chemistry's Demolition Derby - Crash Course Chemistry

12th - Higher Ed
Have you ever been to a Demolition Derby? Then you have an idea of how molecular collisions happen. In this episode, Hank talks about collisions between molecules and atoms, activation energy, writing rate laws, equilibrium expressions,...
Instructional Video6:53
Bozeman Science

The Rate Constant

12th - Higher Ed
In this video Paul Andersen describes the characteristics of the rate constant in chemical reactions. The rate constant is highly variable in reactions and must be determined experimentally. The rate constant is dependent on both...
Instructional Video6:12
Bozeman Science

Elementary Reactions

12th - Higher Ed
In this video Paul Andersen explains that elementary reactions are steps within a larger reaction mechanism. Colliding molecules require sufficient energy and proper orientation to break bonds and form new bonds. A unimolecular reaction...
Instructional Video6:24
Bozeman Science

The Rate of Reactions

12th - Higher Ed
In this video Paul Andersen defines the rate of a reaction as the number of reactants that are consumed during a given period of time. The rate of the reaction can be affected by the type of reaction as well as the concentration,...
Instructional Video8:43
Bozeman Science

The Rate Law

12th - Higher Ed
Paul Andersen explains how the rate law can be used to determined the speed of a reaction over time. Zeroth-order, first-order and second-order reactions are described as well as the overall rate law of a reaction. The rate of a reaction...
Instructional Video8:43
Bozeman Science

Electrochemistry

12th - Higher Ed
In this video Paul Andersen explains how electrochemical reactions can separate the reduction and oxidation portions of a redox reactions to generate (or consume) electricity. The half reactions can be analyzed to determine the potential...
Instructional Video6:46
Bozeman Science

The Rate-Limiting Step

12th - Higher Ed
In this video Paul Andersen explains why the slowest elementary step in a chemical reaction is the rate-limiting step. This step can be used to determine the overall rate law of the chemical reaction.
Instructional Video4:56
Curated Video

How to Interpret Rate Laws and Experimental Results

9th - Higher Ed
Rate Law - Experimental Determination using Chloryl fluoride
Instructional Video17:31
Catalyst University

Complex Mechanisms: Pre-Equilibrium Approximation

Higher Ed
Complex Mechanisms: Pre-Equilibrium Approximation
Instructional Video8:26
Catalyst University

Kinetics: Lindemann Mechanism Derivation

Higher Ed
Kinetics: Lindemann Mechanism Derivation
Instructional Video15:14
Catalyst University

Michaelis-Menten Rate Equation: Theory and Derivation

Higher Ed
Michaelis-Menten Rate Equation: Theory and Derivation
Instructional Video6:50
Catalyst University

Variation of Initial Rate with Concentration

Higher Ed
Variation of Initial Rate with Concentration
Instructional Video5:44
Catalyst University

Kinetics: The Pre-Equilibrium Approximation

Higher Ed
Kinetics: The Pre-Equilibrium Approximation
Instructional Video5:47
Professor Dave Explains

Practice Problem: ICE Box Calculations

12th - Higher Ed
Sometimes when we do equilibrium calculations, we have to use an ICE box. Don't worry it won't be chilly, it stands for initial, change, and equilibrium. Let's use this technique to calculate some equilibrium concentrations!
Instructional Video8:51
Professor Dave Explains

Practice Problem: Initial Rates and Rate Laws

12th - Higher Ed
To figure out the rate law for a reaction, we have to gather kinetic data. We can't know just by looking at the balanced equation. Let's practice using initial rates data to determine the rate law for a reaction!
Instructional Video4:28
Catalyst University

Kinetics of Branched Reaction Schemes Using Steady-State Approximation

Higher Ed
Kinetics of Branched Reaction Schemes Using Steady-State Approximation
Instructional Video4:47
Catalyst University

Integrated Rate Laws (2/3): Second Order Calculation

Higher Ed
Integrated Rate Laws (2/3): Second Order Calculation
Instructional Video7:27
Catalyst University

Kinetics of First-Order Reaction

Higher Ed
Kinetics of First-Order Reaction
Instructional Video8:41
Professor Dave Explains

Kinetics: Initial Rates and Integrated Rate Laws

12th - Higher Ed
Who likes math! Oh, you don't? Maybe skip this one. Unless you have to answer this stuff for class. Then yeah, watch this.
Instructional Video9:57
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1
Crash Course

Kinetics: Chemistry's Demolition Derby

9th - 12th
Make kinetics interesting with a video that compares kinetics to a demolition derby. The presentation information about collisions, activation energy, writing rate laws, equilibrium expressions, reaction mechanisms, and...
Instructional Video
JFR Science

Reaction Mechanisms

9th - Higher Ed Standards
Why do chemical reactions move at different rates? Chemistry scholars examine the intricate workings of reaction mechanisms with a video from the JFR Science playlist. They watch as the narrator diagrams reaction intermediates and...
Instructional Video7:20
JFR Science

Rate Law: Intro to Reaction Order

9th - Higher Ed Standards
How does concentration affect the rate of reaction? Introduce chemistry scholars to the concept of reaction order using a well-written video from JFR Science. The narrator explains unfamiliar variables, shows reaction orders as graphs,...
Instructional Video
Khan Academy

Khan Academy: Experimental Determination of Rate Laws

9th - 10th
Understand this example using initial rates to find the order in each reactant, the overall order, and the rate constant k. [12:21]