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Courses
Engineering
Chemical Engineering
Fundamentals of Transport Process – II
Curriculum
1 Section
40 Lessons
10 Weeks
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Fundamentals of Transport Process - II
40
2.1
Mod-01 Lec-01 Review of Fundamentals of Transport Processors I
2.2
Mod-01 Lec-02 Introduction
2.3
Mod-01 Lec-03 Vectors and Tensors
2.4
Mod-01 Lec-04 Vector calculus
2.5
Mod-01 Lec-05 Vector calculus
2.6
Mod-01 Lec-06 Curvilinear co-ordinates
2.7
Mod-01 Lec-07 Kinematics
2.8
Mod-01 Lec-08 Rate of deformation tensor
2.9
Mod-01 Lec-09 Mass conservation equation
2.10
Mod-01 Lec-10 Momentum conservation equation
2.11
Mod-01 Lec-11 Angular momentum conservation equation
2.12
Mod-01 Lec-12 Boundary conditions
2.13
Mod-01 Lec-13 Mechanical energy conservation
2.14
Mod-01 Lec-14 Unidirectional flow
2.15
Mod-01 Lec-15 Viscous flows
2.16
Mod-01 Lec-16 Viscous flows
2.17
Mod-01 Lec-17 Flow around a sphere
2.18
Mod-01 Lec-18 Force on moving sphere
2.19
Mod-01 Lec-19 Torque on rotating sphere
2.20
Mod-01 Lec-20 Effective viscosity of a suspension
2.21
Mod-01 Lec-21 Flow in a corner
2.22
Mod-01 Lec-22 Lubrication flow
2.23
Mod-01 Lec-23 Lubrication flow
2.24
Mod-01 Lec-24 Inertia of a low Reynolds number
2.25
Mod-01 Lec-25 Potential flow
2.26
Mod-01 Lec-26 Potential flow around a sphere
2.27
Mod-01 Lec-27 Two-dimensional potential flow
2.28
Mod-01 Lec-28 Two-dimensional potential flow
2.29
Mod-01 Lec-29 Flow around a cylinder
2.30
Mod-01 Lec-30 Conformal transforms in potential flow
2.31
Mod-01 Lec-31 Boundary layer theory
2.32
Mod-01 Lec-32 Boundary layer past a flat plate
2.33
Mod-01 Lec-33 Stagnation point flow
2.34
Mod-01 Lec-34 Falkner-Skan Boundary Layer Solutions
2.35
Mod-01 Lec-35 Falkner-Skan Boundary Layer Solutions
2.36
Mod-01 Lec-36 Vorticity Dynamics
2.37
Mod-01 Lec-37 Vorticity Dynamics
2.38
Mod-01 Lec-38 Turbulence
2.39
Mod-01 Lec-39 Turbulence
2.40
Mod-01 Lec-40 Turbulent flow in a channel
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