-
Ch.1 : Ch.2
-
Tut. on Ch.1 (Part 1)
-
Tut. on Ch.1 (Part 2)
-
Tut. on Ch.1 (Part 3)
-
Tut. on Ch.1 (Part 4)
-
Tut. on Ch.1 (Part 5)
-
Tut. on Ch.1 (Part 6)
-
Tut. on Ch.2
-
Ch.3 : Ch.4 : Ch.5
-
Ch.3 : Ch.5 - Rate Laws, Stoichiometry, Isothermal Reactor Design: Conversion
-
Tut. on Ch.3 (Part 1)
-
Tut. on Ch.3 (Part 2)
-
Tut. on Ch.3 (Part 3)
-
Tut. on Ch.3 (Part 4)
-
Tut. on Ch.3 (Part 5)
-
Tut. on Ch.3 (Part 6)
-
Tut. on Ch.4 (Part 1)
-
Tut. on Ch.4 (Part 2)
-
Tut. on Ch.4 (Part 3)
-
-
Ch.5: Ch.6: Ch.7
-
Ch.5 (Last Section) : Ch.7 - Pressure Drop in Reactors, Isothermal Reactor Design: Moles and Molar Flow, Collection Analysis of Rate Data
-
Tut. on Ch.6
-
Tut. on Ch.7
-
-
Chapter 8
-
Ch. 8 - Multiple Reactions
-
Tut. on Ch.8
-
-
Chapter 9
-
Ch.9 - Reaction Mechnism, Pathways, Bioreaction, and Bioreactors
-
-
Chapter - 10: Catalysis and Catalytic Reactions
-
10.1 - Catalysts
-
10.2 - Steps in a Catalytic Reaction (Part 1)
-
10.2 - Steps in a Catalytic Reaction (Part 2)
-
10.3 - Synthesizing a Rate Law, Mechanism, and Rate-Limiting Step
-
10.4 - Heterogeneous Data Analysis for Reactor Design
-
10.7 - Catalyst Deactivation
-
-
Chapter - 11: Nonisothermal Reactor Design the Steady State
-
11.1 : 11.6 - Rationale, The Energy Balance, The User-Friendly Energy Balance Equations, Adiabatic Operation, Adiabatic Equilibrium Conversion, Reactor Staging, Optimum Feed Temperature
-
11.7 - Optimum Feed Temperature
-
-
Chapter 12
-
Ch.12 - Steady-State Nonisothermal Reactor Design - Flow Reactors with Heat Exchange
-
Tut. on Ch.12
-
Numerical Integration
-