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Chemical Engineering PE Review Course
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Class Calendar - Spring 2013
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Examples for PE Review
E1. Kinetics Examples
E1.1 Arrhenius Equation
E1.10 CSTRs, Constant Density
E1.11 CSTRs in Series
E1.12 CSTRs in Series
E1.2 Reaction Rate Constant
E1.3 Basic Stoichiometry - Constant Pressure
E1.4 Basic Stoichiometry
E1.5 Overall Reaction Order
E1.6 Batch Reactor, Constant Pressure
E1.7 Batch Reactor, Second Order
E1.8 Plug Flow Reactor - First Order
E2. Thermodynamics Examples
E2.1 Compressibility Factor
E2.10 Isobaric Process
E2.11 Isochoric Process
E2.12 Isothermal Compression of Real Gas
E2.13 Joule-Thompson Coefficient
E2.14 Vapor Pressure
E2.15 Enthalpy of Vaporization
E2.16 Gibbs Energy of Formation
E2.17 Partial Molar Volume
E2.18 Activity Coefficient
E2.19 Liquid Specific Heat
E2.2 Pitzer Acentric Factor
E2.20 Liquid Density
E2.21 Gas Viscosity at Low Pressure
E2.22 Gas Viscosity at High Pressure
E2.23 Liquid Viscosity
E2.24 Thermal Conductivity
E2.25 Equilibrium Constant
E2.3 Compressibility Factor
E2.4 van der Waals Equation PVT
E2.5 Redlich-Kwong Equation PVT Relationship
E2.6 Thermodynamic Properties
E2.7 Adiabatic Process
E2.8 Polytropic Process
E2.9 Isothermal Process
E3. Mass and Energy Balances Examples
E3.1 Adiabatic Flame Temperature
E3.10 Dry Scrubbing
E3.11 Moist Air Properties
E3.12 Heating of Moist Air
E3.13 Cooling of Moist Air
E3.14 Adiabatic Mixing of Air Streams
E3.15 Adiabatic Mixing of Air with Water
E3.16 Adiabatic Saturation
E3.17 Recycle Stream
E3.18 Enthalpy Concentration Chart
E3.2 Heating Value
E3.3 Excess Air and Combustion
E3.4 Combustion Efficiency - Environmental Concerns
E3.5 Combustion Products
E3.6 Steam Superheater
E3.7 Explosive Limits - Environmental Concerns
E3.8 Corrected Concentrations
E3.9 Destruction and Removal Efficiency
E4. Fluid Flow Examples
E4.1 Pitot Tube - Liquid Flow
E4.10 Pressure Drop, Unknown Pipe Diameter Case
E4.11 Relative Roughness Unknown Case
E4.12 Miscellaneous Losses from Tank Reservoir
E4.13 Equivalent Length, Miscellaneous Losses
E4.14 Pump Work
E4.15 Isothermal Gas Flow
E4.16 Piping Networks
E4.2 Pitot Tube - Gas Flow
E4.3 Venturi - Liquid Flow
E4.4 Venturi - Gas Flow
E4.5 Nozzle - Gas Flow
E4.6 Orifice - Gas Flow
E4.7 Skin Friction Losses
E4.8 Pressure Drop in Liquid Flow
E4.9 Pressure Drop, Velocity Unknown Case
E5. Heat Transfer Examples
E5.1 Composite Layer
E5.10 Optimum Water Outlet Temperature
E5.11 Shell and Tube Heat Exchanger
E5.12 Condensing Coefficient - Vertical Tube
E5.13 Condensation in Horizontal Tube
E5.14 Isothermal Heating Medium
E5.15 External Exchanger - Non-isothermal Cooling
E5.16 External Exchanger, Non-Isothermal Cooling
E5.17 Agitated Vessel
E5.18 Parallel Surfaces Radiation
E5.19 Parallel Planes with Shield
E5.2 Composite Cylinder
E5.20 Wall of Finite Thickness - Heated on One Side
E5.21 Wall of Finite Thickness Heated on both Sides
E5.22 Finite and Semi-Finite Shapes Heated with Contact Resistance
E5.3 Critical Radius of Insulation
E5.4 Natural Convection
E5.5 Forced Convection through Circular Tubes
E5.6 Forced Convection through Annulus
E5.7 Tube Wall Temperature
E5.8 Overall Heat Transfer Coefficient
E5.9 Heat Exchangers Arrangement
E6. Distillation Examples
E7. Absorption and Stripping Examples
Forms and Docs
Formulas for PE Review
F1. Kinetics Formulas
F1.1 Basic Terminology Formulas
F1.2 Basic Stoichiometry Formulas
F1.3 Reaction Rate Constants
F1.4 Batch Reactor Formulas
F1.5 Plug Flow Reactors Formulas
F1.6 CSTRs Formulas
F10. Evaporation Formulas
F11. Drying and Cooling Tower Formulas
F12. Filtration Formulas
F3. Mass and Energy Balances Formulas
F4. Fluid Flow Formulas
F5. Heat Transfer Formulas
F6. Distillation Formulas
F7. Absorption Formulas
F8. Solvent Extraction Formulas
F9. Leaching Formulas
Handouts for PE Review
H1. Kinetics Handouts
H2. Thermodynamics Handouts
H3. Mass and Energy Balances Handouts
H4. Fluid Flow Handouts
H5. Heat Transfer Handouts
H6. Mass Transfer Handouts
H7. Unit Operations Handouts
Modules for PE Review
M1. Kinetics Modules
M1.01 Energy of Activation
M1.02.1 Concentration of Products and Reactants
M2. Thermodynamics Modules
M3. Mass and Energy Balances Modules
M4. Fluid Flow Modules
M5. Heat Transfer Modules
M5.01 Composite Layer
M5.02 Composite Cylinder a Composite Cylinder
M5.05 Forced Convection
M5.06 Extended Surfaces
M5.07 Forced Convection Through Annulus
M5.08 Tube Wall Temperature
M5.09 Clean Coefficient
M6. Distillation Modules
M7. Unit Operations Modules
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References for PE Review
R1. Kinetics References
R2. Thermodynamics References
R3. Mass and Energy Balances References
R4. Fluid Flow References
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