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Flow Analysis and Engineering
1. Fundamentals of Fluid Motion
2. Governing Equations of Fluid Dynamics
3. Analysis of Flow Regimes and Phenomena
4. Experimental Flow Analysis
5. Computational Fluid Dynamics
6. Advanced Flow Engineering Applications
Advanced Flow Engineering Applications
Aerodynamics
Airfoil Theory
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Propulsion Systems
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Emulsions
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Mixing and Dispersion
Modeling Approaches
Eulerian-Eulerian Models
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Volume of Fluid Method
Level Set Method
Heat and Mass Transfer
Forced Convection
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Internal Flow Heat Transfer
Pipe Flow Correlations
Duct Flow Analysis
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Phase Change Heat Transfer
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Heat Exchanger Design
Shell-and-Tube Heat Exchangers
Plate Heat Exchangers
Compact Heat Exchangers
Effectiveness-NTU Method
Fouling Considerations
Biofluid Mechanics
Cardiovascular Flows
Blood Flow in Arteries
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Wall Shear Stress
Atherosclerosis
Blood Flow in Veins
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Microcirculation
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Blood Rheology
Medical Devices
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Stents
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Airway Mechanics
Particle Deposition
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Microfluidics
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Low Reynolds Number Effects
Surface Tension Dominance
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Electroosmotic Flow
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Sample Preparation
Chemical Analysis
Biological Assays
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Emulsification
Industrial Applications
Turbomachinery
Centrifugal Pumps
Impeller Design
Performance Curves
Cavitation
Axial Compressors
Stage Design
Surge and Stall
Gas Turbines
Combustor Design
Cooling Systems
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Pelton Wheels
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5. Computational Fluid Dynamics
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1. Fundamentals of Fluid Motion