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With the help of Finite Element Analysis Of Solids And Fluids course, learn about finite element theory and methods for general linear and nonlinear analyses.

This course touches upon the continuum mechanics equations, conservation laws, virtual work, and variational principles. Establish knowledge about effective finite element discretizations and the stability, accuracy, and convergence needed to develop these methods.


This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.


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Course Credit: MIT

Course Curriculum

Module 01
lec1 Large displacement analysis of solids/structures 00:10:00
lec2 Finite element formulation of solids and structures 00:10:00
lec3 Finite element formulation of solids and structures (cont.) 00:10:00
lec4 Finite element formulation of solids and structures (cont.) 00:10:00
lec5 Finite element displacement formulation (cont.) 00:10:00
lec6 Finite element formulation, example, convergence 00:10:00
lec7 Isoparametric elements 00:10:00
lec8 Convergence of displacement-based FEM 00:10:00
lec9 u/p formulation 00:10:00
lec10 Finite element large deformation / general nonlinear analysis 00:10:00
Module 02
lec11 Deformation, strain, and stress tensors 00:10:00
lec12 Total Lagrangian formulation 00:10:00
lec13 Total Lagrangian formulation (cont.) 00:10:00
lec14 Total Lagrangian formulation (cont.) 00:10:00
lec15 Field problems 00:10:00
lec16 Finite element analysis of Navier-Stokes fluids 00:15:00
lec17 Incompressible fluid flow and heat transfer (cont.) 00:10:00
lec18 Solution of finite element equations 00:10:00
lec19 Slender structures 00:10:00
lec20 Beams, plates, and shells 00:10:00
lec21 Plates and shells 00:10:00
Submit Your Assignment 00:00:00
Certification 00:00:00

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