Engr. Nahid Shahzad

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World's Best Strength of Material (Mechanics of Materials) YouTube Lectures

World's Best Strength of Material (Mechanics of Materials) YouTube Lectures

The objective of the course Strength of Material in Civil Engineering is to elaborate on the knowledge of engineering mechanics (statics) and teach purpose of studying strength of materials with respect to civil engineering design and analysis. The course introduces students to the concepts of engineering mechanics of materials and behavior of materials and structures under applied loads.

Course Outline, Mapping of CLO and PLO of Strength of Material:



Chapter#1: Introduction To Stress and Strain:



How To Draw Stress Strain Curve on Microsoft Excel:



Determinate Problem of Stress and Strain#1:



Determinate Problem of Stress and Strain#2:


Determinate Problem of Stress and Strain#3:


Answers of The Queries raised by the students after working on Determinate Problems of Stress and Strain:



Conditional Numerical of Stress and Strain#1:



Conditional Numerical of Stress and Strain#2:


Conditional Numerical of Stress and Strain#3:


Conditional Numerical of Stress and Strain#4:



Numerical Problem of Axial Deformation#1:




Numerical Problem of Axial Deformation#2:

Numerical Problem on Determination of Area From Stress Formula#1:



Numerical Problem on Determination of Area From Stress Formula#2:


Indeterminate Problem of Stress and Strain#1:


Indeterminate Problem of Stress and Strain#2:


Easiest Way to Construct Shear Force and Bending Moment Diagram of Simply Supported Beam having Triangular Loading (VDL)#1:




Easiest Way to Construct Shear Force and Bending Moment Diagram of Simply Supported Beam having Triangular Loading (VDL)#2:



Easiest Way to Construct Shear Force and Bending Moment Diagram of Simply Supported Beam having Triangular Loading (VDL)#3:



YouTube Live Session On Construction of Shear Force and Bending Moment Diagram of Simply Supported Beam having Triangular Loading (VDL):




Determination of Maximum Deflection Using Double Integration Method:


YouTube Live Session on Determination of Maximum Deflection Using Double Integration Method:


Introduction To Torsion:


Determination of Maximum Shearing Stress and Angle of Twist in Torsion#1:


Determination of Maximum Shearing Stress and Angle of Twist in Torsion#2:


Determination of Relationship of Torque with Angle of Twist and Maximum Shear Stress in Torsion:



Determination of Buckling Load in Strut:




Introduction To Impact Loading:


Numerical Problem Impact Load#1:


Numerical Problem Impact Load#2:



Numerical Problem of Flexural Stress:


YouTube Live Session on Numerical Problem of Flexural Stress:




YouTube Live Session on Determination of Maximum Bending Moment Carrying Capacity using Flexural Stress Formula:




How to Locate Centroid and Moment of Inertia for a Rectangular Cross Section:


Numerical Problem to Locate Centroid and Moment of Inertia in Composite Shapes:



YouTube Live Session on Numerical Problem to Locate Centroid and Moment of Inertia in Composite Shapes:



Introduction To Mohr Circle:



Numerical Problem of Mohr Circle#1:


Numerical Problem of Mohr Circle#2:


YouTube Live Session of Introduction To Mohr Circle and its Numerical Problem#1:




YouTube Live Session of  Mohr Circle of Numerical Problem#2:





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