Kinetics

Describes the effect of reaction time on selectivity for a series reaction.

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  1. 4

    Series Reactions and Selectivity

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    Describes the effect of reaction time on selectivity for a series reaction.

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  2. 4

    Michaelis-Menten: Competitive Inhibition

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    Using Michaelis-Menten kinetics, describes the rate of reaction when competitive inhibition is present.

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  3. 4

    Enzyme Mechanism: Rate Derivation

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    Derives the reaction rate expression for product formation using Michaelis-Menten kinetics.

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  4. 4

    Michaelis-Menten Introduction

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    Introduction to Michaelis-Menten kinetics for enzymatic reactions.

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  5. 4

    Parallel Reactions and Selectivity

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    Describes the effects of concentration, temperature, and reactor type on selectivity for parallel reactions.

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  6. 4

    Temperature-Programmed Desorption

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    Explains temperature-programmed desorption (TPD) and solves the equations for first-order desorption.

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  7. 4

    Chemical Reactor Design: Choosing a Temperature

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    Describes the various parameters of chemical reactors that are affected by temperature (rate, equilibrium, selectivity, heat transfer, stability, etc.).

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  8. 4

    Series Reaction in a Plug Flow Reactor

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    Analyzes how the flow rate of an intermediate product for a series reaction depends on feed conversion and rate constants.

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Kinetics

Created by Learn ChemE (Chem. Eng. Videos) Plus

Videos aimed at providing insight, help, tutorials, and examples on topics within Chemical Engineering Kinetics. Topics include Intro to reactors, reactor sizing, rate laws/stoichiometry, isothermal reactors, non-isothermal reactors, multiple reactions, catalysts, rate data, and Athena Software.

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