
In this lesson, you’ll get a high-level introduction to COMSOL Multiphysics, its capabilities, and why it’s a powerful tool for solving complex, real-world physics problems. We’ll explore its modular framework, multiphysics coupling, and intuitive interface, setting the stage for we can discuss specific functionalities in later lessons.
Hi, this is me! an introduction video about me. Feel free to see if you are interested. (optional)
A brief description of the official website is discussed. It is important because this is generally the only official source of information about the tools, features, capabilities and official support. The resource section include a Quiz App that will be helpful throughout the course.
This lesson is a short introduction to the content of the course.
The details about the geometry and the materials is explained in this lecture.
Meshing is very important, here basic theory and meshing rules are explained. Also you can learn how to mesh a model.
Why meshing is important in Simulation. ? Learn with a basic demonstration
Learn :
How to add a physics in a model.
How to add boundary conditions.
Learn how to solve a model and get the results.
This is the final lecture of the course. Here you will learn about the data analysis part which is most important for any simulation.
A PDF hand drawn concept map is also attached, to make your concepts clear about the world of simulations.
Few BONUS examples are shown in this lecture.
Advanced simulations which we can do in COMSOL. Hope now you are motivated and ready to learn and grow in the field of simulations
Introduction to the example simulation
Creating a File using Model Wizard
Complete a simulation
learn more about results and how to evalute values
Creating new physics interfaces that you can save and share, modifying the underlying equations of a model, and simulating a wider variety of devices and processes: These are just a few ways you can benefit from the equation-based modeling capabilities of the COMSOL Multiphysics® software.
you can work with:
Partial differential equations (PDEs)
Ordinary differential equations (ODEs)
Algebraic equations
Differential algebraic equations (DAEs)
Arbitrary Lagrangian-Eulerian (ALE) methods
Curvilinear coordinate computation
Sensitivity analysis
This is the first complete Udemy course on COMSOL Multiphysics® simulation software, an industry-leading platform for physics-based modeling. This course is designed for beginners who want to learn the fundamentals of COMSOL Multiphysics® software and gain hands-on experience in setting up and analyzing simulations.
The course includes live demonstrations of simulations, covering the entire workflow from model creation to data analysis, plotting, and exporting results (for absolute beginners).
Language Support: Arabic, French, Portuguese, Spanish
About the Instructor. am I ready to instruct others?
I have taught 9,000+ students across 107+ countries in multiphysics simulation, device modeling, and deep learning optimization. With 30+ international publications and 500+ citations, my research spans finite element simulations, atomic simulation, FDTD, and AI-driven modeling. My work has been featured in Nature Materials, Results in Physics, OQEL, Surfaces and Interfaces, Optical Fiber Technology and many more.
I have university teaching experience (nano physics, PyTorch, Python numerical simulations etc), delivered invited talks on Python for Physics and Machine Learning in Photonics, and collaborated with multiple research groups globally. I am the author of the top rated COMSOL Multiphysics® simulation software courses on Udemy, helping college/university students and professionals master computational modeling and simulation techniques.
Who Should Take This Course?
This course is designed only for beginners. If you are looking for an advanced-level course, this may not be suitable for you (for advanced users you can contact official software website support).
What You Will Learn
How to create a 3D model for simulation and model your own system
Setting up physics and boundary conditions, including current, voltage, and ground configurations in circuits
Mesh generation and its significance in simulations
Running simulations and verifying results
Assignments with hints to test your understanding
Interactive quizzes to reinforce learning
Thermal modeling (newly added)
Equation-based modeling (newly added)
Course support for troubleshooting any course-related issues
Why Take This Course?
Finding COMSOL tutorials or structured learning resources is challenging. Through this course, I provide a structured, easy-to-follow approach to learning COMSOL Multiphysics® software, eliminating the years of struggle I faced while mastering it.
Drop me a text, if you have any specific queries about the course.
Thank you
Disclaimer
This course is not affiliated with, endorsed by, or sponsored by COMSOL AB. COMSOL Multiphysics® is a registered trademark of COMSOL AB. All references to COMSOL Multiphysics® software are for educational purposes only.
For official COMSOL support, training and licensing, refer to the official software provider.