COMSOL Academic Licenses

Academic Licenses

COMSOL Multiphysics is a modeling and simulation software widely used in various engineering and science disciplines. Its ability to simultaneously couple different physics enables students and researchers to study complex systems where multiple physics processes interact and influence each other. Ultimately, preparing users for real-world applications, and empowering educators to enhance their educational programs.

Benefits of using COMSOL Multiphysics for teaching and research:

  • Ready-to-use course materials: University professors can easily access various course materials in the Learning Center and use them to create structured lesson plans, tutorials, and examples for students.
  • Extensive accessibility: Everyone on campus can leverage COMSOL Multiphysics’ capabilities, fostering collaboration within the academic community.
  • Flexible usage: University professors, researchers, and students can work on simulations and projects both on and off campus and on various devices from their preferred locations.
  • Integration with MathWorks products – MATLAB and Simulink: Users in academia can combine MATLAB’s scripting and analysis capabilities with COMSOL Multiphysics’s finite element analysis capabilities to create a well-rounded simulation environment.
  • Application builder for interactive simulations: University professors can use the Application Builder to simplify the teaching of complex concepts by creating interactive simulations that help students visualize and understand intricate physical phenomena.
  • Equation-based modeling: Teachers and researchers can model a wide range of physical systems using the governing equations that describe them. This flexibility enables the exploration of diverse research areas and the customization of simulations to fit specific needs.

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Engineering

Engineering faculties use COMSOL Multiphysics to solve complex physical phenomena in a practical manner. The software aids in hands-on learning by simulating interdisciplinary interactions like heat transfer, fluid flow, electromagnetics, and structural mechanics. Students develop problem-solving skills, experiment with real-world scenarios, and prepare for working within industry.

Most frequently used add-on modules:

Faculty of Mechanical Engineering and Naval Architecture

  • Structural Mechanics & Acoustics Modules
  • Electromagnetics Modules
  • Fluid Flow & Heat Transfer Modules

Faculty of Electrical Engineering and Computing

  • Electromagnetics Modules
  • Fluid Flow & Heat Transfer Modules
  • Structural Mechanics & Acoustics Modules

Faculty of Chemical Engineering and Technology

  • Chemical Engineering Modules
  • Structural Mechanics & Acoustics Modules
  • Electromagnetics Modules
  • Fluid Flow & Heat Transfer Modules

Faculty of Civil Engineering

  • Fluid Flow & Heat Transfer Modules
  • Structural Mechanics & Acoustics Modules
  • Chemical Engineering Modules

Geological Science

Geological sciences faculties use COMSOL Multiphysics to advance developments in geophysics. Researchers and students can simulate seismic events, analyze groundwater flow, model geological structures, and assess subsurface interactions. The software helps professors enhance students’ understanding and simplify the assessment process.

Most frequently used add-on modules:

Faculty of Mining, Geology and Petroleum Engineering

  • Structural Mechanics & Acoustics Modules
  • Fluid Flow & Heat Transfer Modules
  • Chemical Engineering Modules

Faculty of Geotechnical Engineering

  • Chemical Engineering Modules

Biological and Biomedical

Biological and Biomedical faculties use COMSOL Multiphysics to tackle real-world challenges and contribute to advancements in healthcare, medical technology, and research methodologies. The software fosters student-driven innovation, including advancements in prosthetic limb design, drug-eluting stents, passive vaccine storage, eye models, cancer treatment tech, and more.  

Most frequently used add-on modules:

Faculty of Food Technology and Biotechnology

  • Fluid Flow & Heat Transfer Modules 
  • Chemical Engineering Modules

Natural Sciences

Natural sciences faculties use COMSOL Multiphysics to simulate physical phenomena, model chemical reactions, understand molecular behavior, solve the Lorenz Attractor and shallow water equations, and more. The software aids in hands-on learning, research, and problem-solving in diverse natural sciences disciplines.  

Most frequently used add-on modules: 

Faculty of Metallurgy

  • Structural Mechanics & Acoustics Modules 
  • Fluid Flow & Heat Transfer Modules 
  • Chemical Engineering Modules 
  • Electromagnetics Modules 

Faculty of Physics and Mathematics: 

  • Electromagnetics Modules 
  • Particle Tracing
  • Ray Optics
  • Wave Optics

Add-On Products

Electromagnetics Modules
AC/DC
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Wave Optics
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Ray Optics
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Plasma
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Semiconductor
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Fluid Flow & Heat Transfer Modules
Mixer
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Polymer Flow
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Microfluidics
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Porous Media Flow
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Subsurface Flow
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Pipe Flow
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Molecular Flow
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Metal Processing
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Heat Transfer
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Structural Mechanics & Acoustics Modules
Structural Mechanics
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Nonlinear Structural Materials
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Composite Materials
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Geomechanics
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Fatigue
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Rotordynamics
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Multibody Dynamics
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MEMS
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Acoustics
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Chemical Engineering Modules
Chemical Reaction Engineering
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Battery Design
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Fuel Cell & Electrolyzer
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Electrodeposition
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Corrosion
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Electrochemistry
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Multipurpose Products
Optimization Module
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Uncertainty Quantification Module
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Material Library
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Particle Tracing Module
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Liquid & Gas Properties Module
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Interfacing Products
LiveLink™ for MATLAB®
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LiveLink™ for Simulink®
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LiveLink™ for Excel®
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CAD Import Module
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Design Module
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ECAD Import Module
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LiveLink™ for SOLIDWORKS®
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LiveLink™ for Inventor®
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LiveLink™ for AutoCAD®
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LiveLink™ for Revit®
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LiveLink™ for PTC® Creo® Parametric™
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LiveLink™ for PTC® Pro/ENGINEER®
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LiveLink™ for Solid Edge®
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File Import for CATIA® V5
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Licenses

Blogs and user stories

Learn about MATLAB, Simulink, COMSOL Multiphysics, and Speedgoat from enthusiastic developers and engineering experts devoted to redifining the limits of science.


Pioneering the Future of Drug Development with Modeling and Simulation

Pioneering the Future of Drug Development with Modeling and Simulation

In this thorough exploration, we highlight the capabilities of modeling and simulation in drug development by providing an overview, use cases and examples. In addition, you will learn about the industry’s preferred tool: COMSOL Multiphysics. Read on to discover how simulation has turbocharged the development of pharmaceuticals.

COMSOL Academic Licenses

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