Uploaded June 2025 | Updated September 2026, 3 weeks ago
Partial Differential Equation Toolbox provides functions for solving heat transfer, structural mechanics, electromagnetics, and general partial differential equations (PDEs) using finite element analysis.
Learn more: bit.ly/41KdHt5
You can model conduction-dominant heat transfer problems with convection and radiation occurring at boundaries and account for surface-to-surface radiation. You can calculate temperature distributions, heat fluxes, and heat flow rates through surfaces. You can perform linear static analysis to compute deformation, stress, and strain. For modeling structural dynamics and vibration, the toolbox provides modal and direct time integration solvers and frequency response analysis. You can analyze a component’s structural characteristics by performing modal analysis to find natural frequencies and mode shapes. You can perform electrostatic, magnetostatic, DC conduction, and harmonic analyses and solve a variety of standard problems using templated second-order PDEs.
Partial Differential Equation Toolbox lets you import 2D and 3D geometries from STL or STEP files, reconstruct geometries from mesh data, or build geometries from primitive shapes. You can automatically generate meshes with triangular and tetrahedral elements. You can solve PDEs by using the finite element method, and postprocess results to explore and analyze them.
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Learn more about MATLAB: goo.gl/8QV7ZZ
Learn more about Simulink: goo.gl/nqnbLe
See what's new in MATLAB and Simulink: goo.gl/pgGtod
© 2025 The MathWorks, Inc. MATLAB and Simulink are registered trademarks of The MathWorks, Inc.
See mathworks.com/trademarks for a list of additional trademarks. Other product or brand names may be trademarks or registered trademarks of their respective holders.
Partial Differential Equation Toolbox provides functions for solving heat transfer, structural mechanics, electromagnetics, and general partial differential equations (PDEs) using finite element analysis.
Learn more: bit.ly/41KdHt5
You can model conduction-dominant heat transfer problems with convection and radiation occurring at boundaries and account for surface-to-surface radiation. You can calculate temperature distributions, heat fluxes, and heat flow rates through surfaces. You can perform linear static analysis to compute deformation, stress, and strain. For modeling structural dynamics and vibration, the toolbox provides modal and direct time integration solvers and frequency response analysis. You can analyze a component’s structural characteristics by performing modal analysis to find natural frequencies and mode shapes. You can perform electrostatic, magnetostatic, DC conduction, and harmonic analyses and solve a variety of standard problems using templated second-order PDEs.
Partial Differential Equation Toolbox lets you import 2D and 3D geometries from STL or STEP files, reconstruct geometries from mesh data, or build geometries from primitive shapes. You can automatically generate meshes with triangular and tetrahedral elements. You can solve PDEs by using the finite element method, and postprocess results to explore and analyze them.
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Get a free product trial: goo.gl/ZHFb5u
Learn more about MATLAB: goo.gl/8QV7ZZ
Learn more about Simulink: goo.gl/nqnbLe
See what's new in MATLAB and Simulink: goo.gl/pgGtod
© 2025 The MathWorks, Inc. MATLAB and Simulink are registered trademarks of The MathWorks, Inc.
See mathworks.com/trademarks for a list of additional trademarks. Other product or brand names may be trademarks or registered trademarks of their respective holders.










