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Table of contents

  • 1. Reaction Mechanism
    • 1.1. Role of Catalyst
    • 1.2. Collision Theory
    • 1.3. Arrhenius Theory
    • 1.4. Order, Molecularity and Elementary Reaction
    • 1.5. Rate Expression
    • 1.6. Rate and Stoichiometry
    • 1.7. Unit of Rate Constant
    • 1.8. Frequency Factor of Arrhenius Equation
    • 1.9. Arrhenius and Transition-state Theories
    • 1.10. Collision Theory
    • 1.11. Activation Energy
    • 1.12. Molecularity of Elementary Reaction
    • 1.13. Rate Expression and Elementary Reaction
    • 1.14. Stoichiometry and Elementary Reaction
    • 1.15. Rate Constant and Order
    • 1.16. Rate of Formation / Consumption of Components
    • 1.17. Rate of Formation / Consumption of Components
  • 2. Reaction Kinetics
    • 2.1. Conversion vs. Time - Linear
    • 2.2. Conversion of Second Order Reaction
    • 2.3. Conversion vs. Time - Second Order Reaction
    • 2.4. Rate from Conversion vs. Time Data
    • 2.5. Order of Reaction from Rate Expression
    • 2.6. Order from Half-life Data
    • 2.7. Rate Constant from Half-life Data
    • 2.8. Time for Half-life and Full-life
    • 2.9. Conversion of First Order Reaction
    • 2.10. Order of Reaction from Units of Rate Constant
    • 2.11. First Order Reaction
    • 2.12. Half-life Method
    • 2.13. Variable Volume Reaction in Constant Pressure Batch Reactor
  1. Chem Place
  2. Reaction Engineering
  3. Objective Types - Set-1 - Reaction Engineering

Objective Types - Set-1 - Reaction Engineering

Completion requirements

Reaction Mechanism, Reaction Kinetics

1. Reaction Mechanism

1.5. Rate Expression


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Tags:
  • elementary reaction
  • rate equation
  • reversible reaction
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