Catalyst University
y=mx+b for the Arrhenius Equation (Ln|k| vs [1/T])
y=mx+b for the Arrhenius Equation (Ln|k| vs [1/T])
Catalyst University
Kinetics of Branched Reaction Schemes Using Steady-State Approximation
Kinetics of Branched Reaction Schemes Using Steady-State Approximation
Catalyst University
Kinetics: Quenching & Stern-Volmer Plots
Kinetics: Quenching & Stern-Volmer Plots
Catalyst University
Calculating Activation Energy on Excel (from Arrhenius Equation)
Calculating Activation Energy on Excel (from Arrhenius Equation)
msvgo
Integrated Rate Equations
It explains zero order reaction and derives its rate constant. It describes the first order reaction rate constant. It discusses about half-life of a reaction.
Catalyst University
Integrated Rate Laws (2/3): Second Order Calculation
Integrated Rate Laws (2/3): Second Order Calculation
Catalyst University
Determining Units for Nth-order Rate Constants
Determining Units for Nth-order Rate Constants
Professor Dave Explains
Kinetics: Initial Rates and Integrated Rate Laws
Who likes math! Oh, you don't? Maybe skip this one. Unless you have to answer this stuff for class. Then yeah, watch this.
Catalyst University
Integrated Rate Laws (1/3): First Order Calculation
Integrated Rate Laws (1/3): First Order Calculation
Professor Dave Explains
Energy Diagrams, Catalysts, and Reaction Mechanisms
It's time to learn a little more about a chemical reaction. How do molecules have to be arranged and how much energy do they have to collide with? What's a catalyst? Lots of great tidbits in this one.
Bozeman Science
Bozeman Science: The Rate Constant
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...