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Enzyme Science and Engineering

Curriculum

  • 1 Section
  • 28 Lessons
  • 10 Weeks
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  • Enzyme Science and Engineering
    28
    • 2.1
      Lecture 1: Introduction and Scope to Enzyme Science & Engineering
    • 2.2
      Lecture 2: Characteristic Features of Enzymes
    • 2.3
      Lecture 3: Enzymes as Biocatalysts
    • 2.4
      Lecture 4: Enzymatic Catalysis
    • 2.5
      Lecture 5: Specificity of Enzyme Action
    • 2.6
      Lecture 6: Kinetics of Enzyme Catalysed Reactions
    • 2.7
      Lecture 7: Kinetics of Enzyme Catalysed Reactions
    • 2.8
      Lecture 8: Deviation from Hyperbolic Enzyme Kinectics
    • 2.9
      Lecture 9: Role of Effector Molecules in Enzyme Kinetics
    • 2.10
      Lecture 10: Reversible Inhibition
    • 2.11
      Lecture 11: Effect of PH and Temparature on Enzyme
    • 2.12
      Lecture 12: Kinetics of Bi substrate Enzyme
    • 2.13
      Lecture 13: Kinetics of Bi substrate Enzyme
    • 2.14
      Lecture 14: Immobilized Enzymes
    • 2.15
      Lecture 15: Immobilized Enzymes – II
    • 2.16
      Lecture 16: Immobilized Enzymes – III
    • 2.17
      Lecture 17: Immobilization of Enzymes by Entrapment
    • 2.18
      Lecture 18: Effect of Immobilization
    • 2.19
      Lecture 19: Reactors for Enzyme Catalysed Reactions
    • 2.20
      Lecture 20: Idealized Enzyme Reactor Performance
    • 2.21
      Lecture 21: Idealized Enzyme Reactor Performance
    • 2.22
      Lecture 22: Kinetic Parameters for IME Systems
    • 2.23
      Lecture 23: Steady State Analysis of Mass Transfer
    • 2.24
      Lecture 24: Steady State Analysis of Mass Transfer
    • 2.25
      Lecture 25: Non Ideal Flow in Continuous Immobilized Enzyme
    • 2.26
      Lecture 26: Applications of Immobilized Enzymes in Process
    • 2.27
      Lecture 27: Analytical Applications
    • 2.28
      Lecture 28: Enzyme Technology Challanges
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Lecture 26: Applications of Immobilized Enzymes in Process
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Lecture 28: Enzyme Technology Challanges
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