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The Chemical Reaction Engineering Module is tailor-made for the modeling of chemical systems primarily affected by chemical composition, reaction kinetics, fluid flow, and temperature as functions of space and time.
This guide describes the Chemical Reaction Engineering Module, an optional package that extends the COMSOL Multiphysics® modeling environment with customized physics interfaces and functionality for the analysis of mass transport, chemical reactions, thermodynamic properties, and other features that are important for chemical engineering simulation.
The Batteries & Fuel Cells Module models and simulates the fundamental processes in the electrodes and electrolytes of batteries and fuel cells.
This guide describes the Batteries & Fuel Cells Module, an optional add-on package for COMSOL Multiphysics® designed to assist you in building detailed models of the configuration of the electrodes and electrolyte in electrochemical cells.
Modeling and simulations are cost-effective ways to understand, optimize, and control electrodeposition processes.
The Electrodeposition Module is intended to investigate the influence of different parameters in an electrodeposition cell or on the thickness and composition of deposited layers.
This guide describes the Electrodeposition Module, an optional add-on package for COMSOL Multiphysics®.
The Corrosion Module is intended for the modeling and simulation of corrosion and corrosion protection of metal structures.
This guide describes the Corrosion Module, an optional add-on package for COMSOL Multiphysics® intended for the modeling and simulation of corrosion and corrosion protection processes.
The Electrochemistry Module is intended for the modeling and simulation of generic electrochemical cells.
This guide describes the Electrochemistry Module, an optional add-on package for COMSOL Multiphysics®.