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Mod-01 Lec-01 Introduction |
Mechanical Engineering |
33 min |
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Mod-01 Lec-02 Flow Classifications |
Mechanical Engineering |
32 min |
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Mod-01 Lec-03 Laws of Convection |
Mechanical Engineering |
40 min |
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Mod-01 Lec-04 Scalar Transport Equations |
Mechanical Engineering |
29 min |
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Mod-01 Lec-05 Laminar Boundary Layers |
Mechanical Engineering |
51 min |
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Mod-01 Lec-06 Similarity Method |
Mechanical Engineering |
40 min |
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Mod-01 Lec-07 Similaity Solution Velocity BL |
Mechanical Engineering |
37 min |
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Mod-01 Lec-08 Similaity Solns Temperature BL-I |
Mechanical Engineering |
38 min |
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Mod-01 Lec-09 Similaity Solution Temperature BL-II |
Mechanical Engineering |
37 min |
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Mod-01 Lec-10 Integral BL Equations |
Mechanical Engineering |
26 min |
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Mod-01 Lec-11 Integral Solns Laminar Velocity BL |
Mechanical Engineering |
48 min |
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Mod-01 Lec-12 Integral Solns Laminar Temperature BL |
Mechanical Engineering |
44 min |
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Mod-01 Lec-13 Superposition Theory |
Mechanical Engineering |
29 min |
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Mod-01 Lec-14 Laminar Internal Flows |
Mechanical Engineering |
44 min |
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Mod-01 Lec-15 Fully-Developed Laminar Flows- 1 |
Mechanical Engineering |
31 min |
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Mod-01 Lec-16 Fully-Developed Laminar Flows- 2 |
Mechanical Engineering |
35 min |
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Mod-01 Lec-17 Fully-Developed Laminar Flows Heat Transfer – 1 |
Mechanical Engineering |
49 min |
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Mod-01 Lec-18 Fully-Developed Laminar Flows Heat Transfer – 2 |
Mechanical Engineering |
49 min |
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Mod-01 Lec-19 Laminar Internal Developing Flows Heat Transfer |
Mechanical Engineering |
34 min |
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Mod-01 Lec-20 Superposition Technique |
Mechanical Engineering |
26 min |
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Mod-01 Lec-21 Nature of Turbulent Flows |
Mechanical Engineering |
47 min |
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Mod-01 Lec-22A Sustaining Mechanism of Turbulence- 1 |
Mechanical Engineering |
47 min |
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Mod-01 Lec-22B Sustaining Mechanism of Turbulence- 1 |
Mechanical Engineering |
33 min |
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Mod-01 Lec-23 Sustaining Mechanism of Turbulence- 2 |
Mechanical Engineering |
42 min |
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Mod-01 Lec-24 Near-Wall Turbulent Flows – 1 |
Mechanical Engineering |
51 min |
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Mod-01 Lec-25 Near-Wall Turbulent Flows – 2 |
Mechanical Engineering |
31 min |
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Mod-01 Lec-26 Turbulence Models – 1 |
Mechanical Engineering |
41 min |
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Mod-01 Lec-27 Turbulence Models – 2 |
Mechanical Engineering |
43 min |
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Mod-01 Lec-28 Turbulence Models – 3 |
Mechanical Engineering |
49 min |
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Mod-01 Lec-29 Prediction of Turbulent Flows |
Mechanical Engineering |
52 min |
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Mod-01 Lec-30 Prediction of Turbulent Heat Transfer |
Mechanical Engineering |
41 min |
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Mod-01 Lec-31 Convective Mass Transfer |
Mechanical Engineering |
49 min |
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Mod-01 Lec-32 Stefan Flow Model |
Mechanical Engineering |
46 min |
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Mod-01 Lec-33 Couette Flow Model |
Mechanical Engineering |
33 min |
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Mod-01 Lec-34 Reynolds Flow Model |
Mechanical Engineering |
45 min |
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Mod-01 Lec-35 Boundary Layer Flow Model |
Mechanical Engineering |
32 min |
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Mod-01 Lec-36 Evaluation of g and Nw |
Mechanical Engineering |
28 min |
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Mod-01 Lec-37 Diffusion Mass Transfer Problems |
Mechanical Engineering |
43 min |
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Mod-01 Lec-38 Convective MT Couette Flow |
Mechanical Engineering |
39 min |
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Mod-01 Lec-39 Convective MT Reynolds Flow Model – 1 |
Mechanical Engineering |
46 min |
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Mod-01 Lec-40 Convective MT Reynolds Flow Model – 2 |
Mechanical Engineering |
44 min |
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Mod-01 Lec-41 Natural Convection |
Mechanical Engineering |
52 min |
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Mod-01 Lec-42 Diffusion Jet Flames |
Mechanical Engineering |
49 min |
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