{"id":2395,"date":"2020-04-13T07:15:44","date_gmt":"2020-04-13T07:15:44","guid":{"rendered":"https:\/\/seismicconsolidation.com\/?p=2395"},"modified":"2020-04-13T07:18:24","modified_gmt":"2020-04-13T07:18:24","slug":"structural-analysis-m-sc","status":"publish","type":"post","link":"https:\/\/seismicconsolidation.com\/structural-analysis-m-sc\/","title":{"rendered":"Structural Analysis (M.Sc.)"},"content":{"rendered":"
Structural Analysis FEM Lecture 1 Introduction to FEM<\/a><\/p>\n Structural Analysis FEM Lecture 2 General Steps in FEM<\/a><\/p>\n Structural Analysis FEM Lecture 3 INTERPOLATION FUNCTIONS<\/a><\/p>\n Structural Analysis FEM Lecture 4A Spring Elements<\/a><\/p>\n Structural Analysis FEM Lecture 4B Spring Element Potential Energy Approach<\/a><\/p>\n Structural Analysis FEM Lecture 5 Development of Truss Equations<\/a><\/p>\n Structural Analysis FEM Lecture 5B Truss Potential Energy Approach<\/a><\/p>\n Structural Analysis FEM Lecture 6 Method of Weighted Residuals<\/a><\/p>\n Structural Analysis FEM Lecture 7A Beam Frame and Grid Element<\/a><\/p>\n Structural Analysis FEM Lecture 7B FEM Beam Examples<\/a><\/p>\n Structural Analysis FEM Lecture 7C FEM Frame and Grid Examples<\/a><\/p>\n Structural Analysis FEM Lecture 8A Equations from Elasticity Theory<\/a><\/p>\n Structural Analysis FEM Lecture 8B Plane Stress and Strain Equations-1<\/a><\/p>\n