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Engineering
Mechanical Engineering
Continuum Mechanics
1. Introduction to Continuum Mechanics
2. Mathematical Foundations
3. Kinematics of Deformation
4. Stress Analysis
5. Balance Laws and Field Equations
6. Constitutive Relations
7. Linear Elasticity
8. Fluid Mechanics Applications
9. Wave Propagation
10. Advanced Topics
8.
Fluid Mechanics Applications
8.1.
Inviscid Flow
8.1.1.
Potential Flow Theory
8.1.2.
Bernoulli's Equation
8.1.3.
Circulation and Vorticity
8.1.4.
Complex Variable Methods
8.2.
Viscous Flow
8.2.1.
Exact Solutions
8.2.1.1.
Couette Flow
8.2.1.2.
Poiseuille Flow
8.2.1.3.
Stagnation Point Flow
8.2.2.
Creeping Flow
8.2.2.1.
Stokes Equations
8.2.2.2.
Sphere in Viscous Flow
8.2.3.
Boundary Layer Theory
8.2.3.1.
Prandtl Equations
8.2.3.2.
Blasius Solution
8.2.3.3.
Momentum Integral Method
8.3.
Compressible Flow
8.3.1.
Acoustic Waves
8.3.2.
Shock Waves
8.3.3.
Expansion Waves
8.4.
Non-Newtonian Flow
8.4.1.
Power-Law Fluids
8.4.2.
Bingham Plastics
8.4.3.
Viscoelastic Flow
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9. Wave Propagation