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MCL104: Difference between revisions

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| credits = 4
| credits = 4
| credit_structure = 3-1-0
| credit_structure = 3-1-0
| pre_requisites = APL100
| pre_requisites = [[APL100]]
| overlaps =  
| overlaps =  
}}
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== MCL104 : Solid Mechanics ==
== MCL104 : Solid Mechanics ==
Overlaps: APL104, APL105, APL108 Introduction and brief history, State of stress at a point, principal stress, maximum shear stress. Concept of strain, strain displacement relations, compatibility conditions, principal strains, transformation of stresses and strains, state of plane stress/strain, Mohr's circle. Constitutive relations, uniaxial tension test, stress-strain diagrams, isotropic linear elastic, elasto-plastic and viscoelastic materials. Energy Methods. Uniaxial stress and strain analysis of bars, thermal stresses, Torsion, Bending of beams, shear stresses in beams, deflection of beams, stability of equilibrium configuration.
Overlaps: [[APL104]], [[APL105]], [[APL108]] Introduction and brief history, State of stress at a point, principal stress, maximum shear stress. Concept of strain, strain displacement relations, compatibility conditions, principal strains, transformation of stresses and strains, state of plane stress/strain, Mohr's circle. Constitutive relations, uniaxial tension test, stress-strain diagrams, isotropic linear elastic, elasto-plastic and viscoelastic materials. Energy Methods. Uniaxial stress and strain analysis of bars, thermal stresses, Torsion, Bending of beams, shear stresses in beams, deflection of beams, stability of equilibrium configuration.

Latest revision as of 16:38, 14 April 2026

MCL104
Solid Mechanics
Credits 4
Structure 3-1-0
Pre-requisites APL100
Overlaps

MCL104 : Solid Mechanics

Overlaps: APL104, APL105, APL108 Introduction and brief history, State of stress at a point, principal stress, maximum shear stress. Concept of strain, strain displacement relations, compatibility conditions, principal strains, transformation of stresses and strains, state of plane stress/strain, Mohr's circle. Constitutive relations, uniaxial tension test, stress-strain diagrams, isotropic linear elastic, elasto-plastic and viscoelastic materials. Energy Methods. Uniaxial stress and strain analysis of bars, thermal stresses, Torsion, Bending of beams, shear stresses in beams, deflection of beams, stability of equilibrium configuration.