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Scale-Up of a Batch Reactor
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Batch Reactors at Constant Volume or Constant Pressure
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Selectivity in a Semibatch Reactor
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Batch Reactor with Multiple Reactions
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Series Reactions in a Batch Reactor
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Polymerization in a Batch Reactor
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Pressure Drop in a PBR using Ergun Equation
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Why Density Cannot Be Ignored in a PFR
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Isothermal Plug Flow Reactor with Recycle
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Multiple States in an Isothermal CSTR
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Membrane Reactor for an Equilibrium-Limited Reaction
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Minimized Volume for Reactors in Series
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Langmuir-Hinshelwood Reaction in a PFR
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Reactor Design Economics
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Reactor Rate and Conversion versus Space Velocity
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Volumetric Flow Rates in a PFR
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Isothermal Plug Flow Reactor
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Reaction in an Isothermal CSTR
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Adiabatic Plug Flow Reactor with Recycle
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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Autothermal Reactor
Author: University of Colorado Boulder - Department of Chemical and Biological Engineering
Subject: Chemical Engineering
Source: LearnChemE
Type: Interactive Simulation
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