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| 001 Convection heat transfer_en.vtt |
3.59Кб |
| 001 Convection heat transfer.mp4 |
40.32Мб |
| 001 Scope of the course_en.vtt |
4.75Кб |
| 001 Scope of the course.mp4 |
59.83Мб |
| 001 Thermal conductivity_en.vtt |
3.87Кб |
| 001 Thermal conductivity.mp4 |
57.93Мб |
| 001 Types of heat exchangers_en.vtt |
3.33Кб |
| 001 Types of heat exchangers.mp4 |
44.07Мб |
| 001 What is radiation_en.vtt |
7.71Кб |
| 001 What is radiation.mp4 |
90.26Мб |
| 002 Absorbtivity, Reflectivity, Transmitivity_en.vtt |
5.31Кб |
| 002 Absorbtivity, Reflectivity, Transmitivity.mp4 |
51.09Мб |
| 002 First law of thermodynamics_en.vtt |
10.50Кб |
| 002 First law of thermodynamics.mp4 |
62.65Мб |
| 002 Forced convection heat transfer_en.vtt |
10.30Кб |
| 002 Forced convection heat transfer.mp4 |
89.45Мб |
| 002 Heat conduction in gases_en.vtt |
5.75Кб |
| 002 Heat conduction in gases.mp4 |
53.67Мб |
| 002 Modes of heat transfer_en.vtt |
13.70Кб |
| 002 Modes of heat transfer.mp4 |
150.35Мб |
| 003 Classification of heat exchangers_en.vtt |
4.34Кб |
| 003 Classification of heat exchangers.mp4 |
33.89Мб |
| 003 Governing laws of heat transfer_en.vtt |
11.17Кб |
| 003 Governing laws of heat transfer.mp4 |
98.32Мб |
| 003 Interpretation Of Fourier's law_en.vtt |
4.59Кб |
| 003 Interpretation Of Fourier's law.mp4 |
31.97Мб |
| 003 Laws of thermal radiation_en.vtt |
2.86Кб |
| 003 Laws of thermal radiation.mp4 |
25.24Мб |
| 003 Physical significance of Reynolds Number in forced convection heat transfer_en.vtt |
2.50Кб |
| 003 Physical significance of Reynolds Number in forced convection heat transfer.mp4 |
29.06Мб |
| 004 Electrical analogy of heat transfer_en.vtt |
4.50Кб |
| 004 Electrical analogy of heat transfer.mp4 |
39.47Мб |
| 004 In compressible flow over flat surface_en.vtt |
3.71Кб |
| 004 In compressible flow over flat surface.mp4 |
36.36Мб |
| 004 MTD (Mean Temperature Difference)_en.vtt |
2.71Кб |
| 004 MTD (Mean Temperature Difference).mp4 |
23.89Мб |
| 004 Shape factor_en.vtt |
4.80Кб |
| 004 Shape factor.mp4 |
40.47Мб |
| 005 Conduction heat transfer through composite slab_en.vtt |
6.52Кб |
| 005 Conduction heat transfer through composite slab.mp4 |
54.99Мб |
| 005 LMTD Logarithmic Mean Temperature Difference (Parallel flow)_en.vtt |
5.45Кб |
| 005 LMTD Logarithmic Mean Temperature Difference (Parallel flow).mp4 |
43.23Мб |
| 005 Physical significance of Nu and Pr in forced convection heat transfer_en.vtt |
5.33Кб |
| 005 Physical significance of Nu and Pr in forced convection heat transfer.mp4 |
59.80Мб |
| 005 Radiation heat exchange_en.vtt |
3.41Кб |
| 005 Radiation heat exchange.mp4 |
34.05Мб |
| 006 BONUS Lecture.html |
2.89Кб |
| 006 Conduction-convection heat transfer through composite slab_en.vtt |
8.65Кб |
| 006 Conduction-convection heat transfer through composite slab.mp4 |
62.53Мб |
| 006 LMTD Logarithmic Mean Temperature Difference (Counter flow)_en.vtt |
2.38Кб |
| 006 LMTD Logarithmic Mean Temperature Difference (Counter flow).mp4 |
22.24Мб |
| 006 Thermal boundary layer - TBL_en.vtt |
2.83Кб |
| 006 Thermal boundary layer - TBL.mp4 |
25.19Мб |
| 007 Energy balance for differential control volume of TBL_en.vtt |
2.20Кб |
| 007 Energy balance for differential control volume of TBL.mp4 |
21.52Мб |
| 007 Radial conduction through hollow cylinder_en.vtt |
5.63Кб |
| 007 Radial conduction through hollow cylinder.mp4 |
42.77Мб |
| 007 Some special cases_en.vtt |
3.18Кб |
| 007 Some special cases.mp4 |
29.21Мб |
| 008 Effectiveness of heat exchanger_en.vtt |
2.22Кб |
| 008 Effectiveness of heat exchanger.mp4 |
21.95Мб |
| 008 Momentum equation of HBL & energy equation of TBL_en.vtt |
7.49Кб |
| 008 Momentum equation of HBL & energy equation of TBL.mp4 |
55.16Мб |
| 008 Radial conduction through composite cylinder_en.vtt |
2.89Кб |
| 008 Radial conduction through composite cylinder.mp4 |
26.07Мб |
| 009 Forced convection in flow through pipes and ducts_en.vtt |
3.58Кб |
| 009 Forced convection in flow through pipes and ducts.mp4 |
35.53Мб |
| 009 NTU and Fouling factor_en.vtt |
3.30Кб |
| 009 NTU and Fouling factor.mp4 |
31.12Мб |
| 009 Radial conduction-convection heat transfer through composite cylinder_en.vtt |
6.94Кб |
| 009 Radial conduction-convection heat transfer through composite cylinder.mp4 |
68.80Мб |
| 010 Critical radius of insulation_en.vtt |
8.47Кб |
| 010 Critical radius of insulation.mp4 |
102.22Мб |
| 010 Free_Natural convection_en.vtt |
1.90Кб |
| 010 Free_Natural convection.mp4 |
16.91Мб |
| 011 Radial conduction through hollow sphere_en.vtt |
3.76Кб |
| 011 Radial conduction through hollow sphere.mp4 |
32.03Мб |
| 012 Derivation of generalized heat conduction equation_en.vtt |
7.45Кб |
| 012 Derivation of generalized heat conduction equation.mp4 |
67.40Мб |
| 013 Heat generation in a slab_en.vtt |
9.58Кб |
| 013 Heat generation in a slab.mp4 |
72.45Мб |
| 014 Heat generation in a cylinder_en.vtt |
7.68Кб |
| 014 Heat generation in a cylinder.mp4 |
63.99Мб |
| 015 What are Fins __en.vtt |
1.91Кб |
| 015 What are Fins _.mp4 |
31.95Мб |
| 016 Analysis of rectangular fins_en.vtt |
13.29Кб |
| 016 Analysis of rectangular fins.mp4 |
100.35Мб |
| 017 Fin efficiency and effectiveness_en.vtt |
3.18Кб |
| 017 Fin efficiency and effectiveness.mp4 |
30.93Мб |
| 018 Unsteady_Transient conduction_en.vtt |
5.50Кб |
| 018 Unsteady_Transient conduction.mp4 |
52.64Мб |
| 29346760-HMT.pdf |
6.03Мб |
| Bonus Resources.txt |
357б |
| Get Bonus Downloads Here.url |
181б |