ApL106: 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 = APL107, APL105 | | overlaps = [[APL107]], [[APL105]] | ||
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== ApL106 : Fluid Mechanics == | == ApL106 : Fluid Mechanics == | ||
Introduction to Fluids and the concept of viscosity, Flow visualization, Fluid Statics, Physical laws for a control volume including continuity, momentum and energy equations, Bernoulli equation, Differential equations of fluid motion, Navier Stokes equations, vorticity and potential flows, dimensional analysis and similitude, Boundary layer theory, 1-D compressible flow. | Introduction to Fluids and the concept of viscosity, Flow visualization, Fluid Statics, Physical laws for a control volume including continuity, momentum and energy equations, Bernoulli equation, Differential equations of fluid motion, Navier Stokes equations, vorticity and potential flows, dimensional analysis and similitude, Boundary layer theory, 1-D compressible flow. | ||
Latest revision as of 16:22, 14 April 2026
| ApL106 | |
|---|---|
| Fluid Mechanics | |
| Credits | 4 |
| Structure | 3-1-0 |
| Pre-requisites | APL100 |
| Overlaps | APL107, APL105 |
ApL106 : Fluid Mechanics
Introduction to Fluids and the concept of viscosity, Flow visualization, Fluid Statics, Physical laws for a control volume including continuity, momentum and energy equations, Bernoulli equation, Differential equations of fluid motion, Navier Stokes equations, vorticity and potential flows, dimensional analysis and similitude, Boundary layer theory, 1-D compressible flow.