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Mod-01 Lec-01 Lecture-01-Introduction |
Mechanical Engineering |
58 min |
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Mod-01 Lec-02 Lecture-02-Estimation of Flow Patterns |
Mechanical Engineering |
51 min |
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Mod-01 Lec-03 Lecture-03-Estimation of Flow Patterns (Contd.) |
Mechanical Engineering |
56 min |
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Mod-01 Lec-04 Lecture-04-Flow Pattern Maps Fascinating Taylor Bubbles |
Mechanical Engineering |
53 min |
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Mod-01 Lec-05 Lecture-05-Definitions and Common Terminologies |
Mechanical Engineering |
54 min |
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Mod-01 Lec-06 Lecture-06-Definitions and Common Terminologies (Contd.) |
Mechanical Engineering |
55 min |
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Mod-01 Lec-07 Lecture-07-Simple Analytical Models |
Mechanical Engineering |
54 min |
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Mod-01 Lec-08 Lecture-08-The Homogeneous Flow Theory |
Mechanical Engineering |
51 min |
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Mod-01 Lec-09 Lecture-09-The Homogeneous Flow Theory (Contd.) |
Mechanical Engineering |
54 min |
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Mod-01 Lec-10 Lecture-10-Compressible Flow A Recapitulation |
Mechanical Engineering |
56 min |
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Mod-01 Lec-11 Lecture-11-Compressible Flow A Recapitulation (Contd.) |
Mechanical Engineering |
53 min |
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Mod-01 Lec-12 Lecture-12-Choked Flow Condition for Homogeneous Flow |
Mechanical Engineering |
51 min |
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Mod-01 Lec-13 Lecture-13 -Drift Flux Model |
Mechanical Engineering |
50 min |
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Mod-01 Lec-14 Lecture-14-Drift Flux Model (Contd…1) |
Mechanical Engineering |
53 min |
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Mod-01 Lec-15 Lecture-15-Drift Flux Model (Contd…2) |
Mechanical Engineering |
53 min |
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Mod-01 Lec-16 Lecture-16-Drift Flux Model (Contd.) |
Mechanical Engineering |
54 min |
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Mod-01 Lec-17 Lecture-17-Separated Flow Model |
Mechanical Engineering |
52 min |
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Mod-01 Lec-18 Lecture-18-Separated Flow Model (Contd…1) |
Mechanical Engineering |
57 min |
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Mod-01 Lec-19 Lecture-Separated Flow Model |
Mechanical Engineering |
54 min |
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Mod-01 Lec-20 Lecture-20-Separated Flow Model – Condition of Choking |
Mechanical Engineering |
48 min |
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Mod-01 Lec-21 Lecture-21-Separated Flow Model – Condition of Choking (Contd.) |
Mechanical Engineering |
53 min |
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Mod-01 Lec-22 Lecture-22-Separated Flow Model – |
Mechanical Engineering |
53 min |
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Mod-01 lec-23 Lecture-23-Separated Flow Model |
Mechanical Engineering |
51 min |
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Mod-01 Lec-24 Lecture-24-Separated Flow Model |
Mechanical Engineering |
48 min |
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Mod-01 Lec-25 Lecture-25-Separated Flow Model |
Mechanical Engineering |
54 min |
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Mod-01 Lec-26 Lecture-26-Analysis of Specific Flow Regimes |
Mechanical Engineering |
53 min |
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Mod-01 Lec-27 Lecture-27-Analysis of Specific Flow Regimes (Contd.) |
Mechanical Engineering |
56 min |
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Mod-01 Lec-28 Lecture-28-Analysis of Specific Flow Regimes – Slug Flow (Contd.) |
Mechanical Engineering |
58 min |
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Mod-01 Lec-29 Lecture-29-Two Phase Flow with Phase Change – An Introduction to Boiling Hea |
Mechanical Engineering |
53 min |
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Mod-01 Lec-30 Lecture-30- Bubble Growth |
Mechanical Engineering |
52 min |
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Mod-01 Lec-31 Lecture-31-Different Types of Nucleation |
Mechanical Engineering |
54 min |
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Mod-01 Lec-32 Lecture-32-Ibullition from Hot Surfaces |
Mechanical Engineering |
54 min |
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Mod-01 Lec-33 Lecture-33-Cycle of Bubble Growth and Departure |
Mechanical Engineering |
57 min |
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Mod-01 Lec-34 Lecture-34-Heat Transfer in Different Regimes of Boiling |
Mechanical Engineering |
51 min |
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Mod-01 Lec-35 Lecture-35-Heat transfer in Different Regimes of Boiling(Contd.) |
Mechanical Engineering |
54 min |
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Mod-01 Lec-36 Lectre-36-Critical Heat Flux, Film Boiling |
Mechanical Engineering |
56 min |
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Mod-01 Lec-37 Lecture-37-Measurement Techniques for Two-phase flow Parameters |
Mechanical Engineering |
53 min |
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Mod-01 Lec-38 Lecture-38-Measurement Techniques for Two-phase flow Parameters |
Mechanical Engineering |
56 min |
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Mod-01 Lec-39 Lecture-39- Measurement Techniques for Two-phase flow Parameters – |
Mechanical Engineering |
52 min |
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Mod-01 Lec-40 Lecture-40 |
Mechanical Engineering |
54 min |
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