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Strength of Materials

Team EveryEng

Team EveryEng

Mechanical Engineering

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Strength of Materials

  • Trainers feedback

    4

    (41 reviews)

    Team EveryEng

    Team EveryEng

    Mechanical Engineering

  • Course type

    Watch to learn anytime

  • Course duration

    1953 Min

  • Course start date & time

    Access anytime

  • Language

    English

Why enroll

Unlock the secrets to designing and building safer, more efficient, and more reliable structures and machines with our Strength of Materials course! Master the fundamental principles of mechanics, stress analysis, and material behavior to optimize your designs and minimize failure risks.

Opportunities that awaits you!

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Course content

The course is readily available, allowing learners to start and complete it at their own pace.

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Strength of Materials

39 Lectures

1953 min

  • Lesson icon

    Introduction to Strength of Materials- 1

    46 min

  • Lesson icon

    Introduction to Strength of Materials- 2

    55 min

  • Lesson icon

    Stress Component is Scalar

    48 min

  • Lesson icon

    Stress Vector

    41 min

  • Lesson icon

    Stress Tensor

    30 min

  • Lesson icon

    Equilibrium Conditions

    47 min

  • Lesson icon

    Mohr's Circle

    46 min

  • Lesson icon

    Proof of Mohr's Circle

    52 min

  • Lesson icon

    Principal Stresses

    49 min

  • Lesson icon

    Octahedral and Deviatoric Stresses and Principal Directions

    52 min

  • Lesson icon

    Free Surfaces

    55 min

  • Lesson icon

    Photoelasticity

    52 min

  • Lesson icon

    Strain

    47 min

  • Lesson icon

    State of Strain

    57 min

  • Lesson icon

    Strain Measurement

    56 min

  • Lesson icon

    Tension Test

    46 min

  • Lesson icon

    Stress Strain Relations

    46 min

  • Lesson icon

    Interrelations between Elastic Constants

    47 min

  • Lesson icon

    Thermal Strain

    59 min

  • Lesson icon

    Torsion 1- Thought and Physical Experiments

    48 min

  • Lesson icon

    Torsion 2 - Mathematical Development

    49 min

  • Lesson icon

    Torsion 3- Problem solving, Hollow shaft

    51 min

  • Lesson icon

    Bending 1 Euler-Bernoulli Hypothesis

    50 min

  • Lesson icon

    Bending 2 - Flexure Formula

    52 min

  • Lesson icon

    Bending 3 - Engineering Analysis of Beams

    52 min

  • Lesson icon

    Bending 4 - Shear Stress in Beams

    50 min

  • Lesson icon

    Bending 5 - Composite Beams

    54 min

  • Lesson icon

    Bending 6 - Shear in I Beams and Shear Centre

    52 min

  • Lesson icon

    Bending 7 - Unsymmetrical Bending and Combined Loading

    53 min

  • Lesson icon

    Review 1

    49 min

  • Lesson icon

    Deflection 1 Moment-Curvature and Load Deflection

    54 min

  • Lesson icon

    Deflection 2 Moment-Area Method

    50 min

  • Lesson icon

    Deflection 3 Method of Superposition and Energy Method

    48 min

  • Lesson icon

    Deflection 4 Fictitious Load Method

    53 min

  • Lesson icon

    Theories of Failure 1 Overview

    50 min

  • Lesson icon

    Theories of Failure 2 Yield surfaces, Mohr's Theory and Failure in Combined Loading

    60 min

  • Lesson icon

    Stability 1 Governing Equations, Fixed-free and Pinned-pinned

    47 min

  • Lesson icon

    Stability 2 Fixed-pinned, Fixed-fixed

    46 min

  • Lesson icon

    Review 2

    54 min

Course details

This course covers the fundamental principles and concepts of strength of materials, emphasizing the analysis and design of mechanical components and structures under various types of loading.


Source: SWAYAM Prabha IIT Madras Channels (YouTube Channel)
Prok. K. Ramesh

Course suitable for

  • Aerospace
  • Automotive
  • Civil & Structural
  • Mechanical

Key topics covered

1. Understand the basic principles of mechanics of materials.

2. Analyze stresses, strains, and deformations in mechanical components.

3. Design and optimize mechanical components and structures for strength, stiffness, and safety.

4. Apply mathematical models to predict material behavior under different loading conditions.

5. Develop problem-solving skills using analytical, numerical, and experimental methods.

Why people choose EveryEng

Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities—all in a flexible and supportive environment.

Team EveryEng

Team EveryEng

Mechanical Engineering

Questions and Answers