Basic principles and calculations in chemical engineering /
by Himmelblau, David Mautner,
Item type | Location | Collection | Call number | Status | Date due | Barcode |
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Electronic Books | E-Resource Section | E-Books | Available |
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Some tables and ill. on folded leaf in pocket
Dimensions, Units, and Their Conversion -- Moles, Density, and Concentration -- Choosing a Basis -- Temperature -- Pressure -- Introduction to Material Balances -- A General Strategy for Solving Material Balance Problems -- Solving Material Balance Problems for Single Units without Reaction -- The Chemical Reaction Equation and Stoichiometry -- Material Balances for Processes Involving Reactions -- Material Balance Problems Involving Multiple Units -- Recycle, Bypass, Purge, and the Industrial Application of Material Balances -- Ideal Gases -- Real Gases: Compressibility -- Real Gases: Equations of State -- Single Component Two-Phase Systems (Vapor Pressure) -- Two-Phase Gas-Liquid Systems (Saturation, Condensation, and Vaporization) -- Two-Phase Gas-Liquid Systems (Partial Saturation and Humidity) -- The Phase Rule and Vapor-Liquid Equilibria -- Liquids and Gases in Equilibrium with Solids -- Energy: Terminology, Concepts, and Units -- Introduction to Energy Balances for Processes without Reaction -- Calculation of Enthalpy Changes -- Application of Energy Balances in the Absence of Chemical Reactions -- Energy Balances: How to Account for Chemical Reaction -- Energy Balances That Include the Effects of Chemical Reaction -- Ideal Processes, Efficiency, and the Mechanical Energy Balance -- Heats of Solution and Mixing -- Humidity (Psychrometric) Charts and Their Use -- Analysis of the Degrees of Freedom in a Steady-State Process -- Solving Material and Energy Balances Using Process Simulators -- Unsteady-State Material and Energy Balances
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