My Courses
Login
Join for Free
Lecture
Enroll
Mechanics of Solids - IITM 1.6 Rigid Body Statics Example 2
Home
Indian Institute of Technology Madras
Civil - Mechanics of Solids
Mechanics of Solids - IITM 1.6 Rigid Body Statics Example 2
Course Lectures
Mechanics of Solids - IITM 1.1 Planar Rigid Body
Play
Mechanics of Solids - IITM 1.2 Degrees of freedom
Play
Mechanics of Solids - IITM 1.3 Equations of Equilibrium
Play
Mechanics of Solids - IITM 1.5 Planar rigid body Statics Example 1
Play
Mechanics of Solids - IITM 1.6 Rigid Body Statics Example 2
Playing
Mechanics of Solids - IITM 2.1 Structural Systems with rigid bodies
Play
Mechanics of Solids - IITM 2.2 Types of 1-D Structural Elements
Play
Mechanics of Solids - IITM 2.3 Trusses - Axial members
Play
Mechanics of Solids - IITM 2.4 Analysis of Truss Systems
Play
Mechanics of Solids - IITM 2.5 Stability of Structural systems
Play
Mechanics of Solids - IITM 2.6 Trusses - additional discussions.
Play
Mechanics of Solids - IITM 2.7 Trusses - Method of Sections
Play
Mechanics of Solids - IITM 2.8 Beams - example 1
Play
Mechanics of Solids - IITM 2.9 Beams - BMD & SFD
Play
Mechanics of Solids - IITM 2.10 Beams - loading, shear and BM relationships
Play
Mechanics of Solids - IITM 3.1 Virtual work method
Play
Mechanics of Solids - IITM 3.2 Virtual displacements
Play
Mechanics of Solids - IITM 3.3 Finding virtual displacements
Play
Mechanics of Solids - IITM 3.4 Virtual Work Method - Example 1
Play
Mechanics of Solids - IITM 3.5 Virtual Work Method - Example 2
Play
Mechanics of Solids - IITM 4.1 Static Friction - an understanding
Play
Mechanics of Solids - IITM 4.2 Belt Friction
Play
Mechanics of Solids IITM 4.3 Friction : Solving Problems
Play
Dynamics - IITM 5.1 general concepts - rigid bodies
Play
Dynamics - IITM 5.2 motion of a rigid body = a translation + a rotation
Play
Dynamics - IITM 5.3 motion of a point of the rigid body
Play
Dynamics - IITM 5.4 motion of one point on a rigid body relative to another
Play
Dynamics IITM 5.5 Understanding rotational motion r_dot = w x r
Play
Dynamics IITM 5.6 Kinematics velocity and acceleration
Play
Dynamics IITM 5.7 Understanding Coriolis Acceleration
Play
Dynamics IITM 5.8 Kinematics - Solving problems
Play
Dynamics IITM 6.1 Equations of motion of a rigid body
Play
Dynamics IITM 6.2 Tips and Techniques 1/2
Play
Dynamics IITM 6.3 Tips and Techniques 2/2
Play
Dynamics IITM 6.4 Solving Problems 1/4
Play
Dynamics IITM 6.5 Solving Problems 2/4
Play
Dynamics IITM 6.6 Solving Problems 3/4
Play
Dynamics IITM 6.7 Solving Problems 4/4
Play
Tips and Tricks - Engineering Statics - solivng problems
Play