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Introduction to Fluid Mechanics @UCGVEDIsHfjIR2U5UxJw8-zg@youtube.com

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Lecture 45: Application of RTT: Conservation of linear momentum
33:08
Lecture 44: Problems and Solutions
26:33
Lecture 43: Problems and Solutions
18:34
Lecture 42: Application of RTT: Conservation of mass
41:01
Lecture 41: Reynolds Transport Theorem (RTT)
27:19
Lecture 40: Application of Bernoulli’s equation (Part III)
31:47
Lecture 39: Application of Bernoulli’s equation (Part II)
34:59
Lecture 38: Application of Bernoulli’s equation (Part I)
35:40
Lecture 36: Problems and Solutions
24:59
Lecture 37: Problems and Solutions
23:15
Euler’s equation in streamline coordinates
29:30
Lecture 34: Bernoulli’s equation (Part III)
28:36
Lecture 33: Bernoulli’s equation (Part II)
32:41
Lecture 32: Bernoulli’s equation (Part I)
25:30
Lecture 31: Euler's equation
37:42
Lecture 30 : Circulation, Velocity Potential
29:10
Lecture 28 : Deformation of fluid elements (Part III)
28:55
Lecture 27 : Deformation of fluid elements (Part II)
20:45
Lecture 29 : Stream Function
18:47
Lecture 26 : Problems and Solutions
33:51
Lecture 16: Force on a surface immersed in fluid (Part I)
27:12
Lecture 17: Force on a surface immersed in fluid (Part II)
31:16
Lecture 18: Force on a surface immersed in fluid (Part III), Stability of solid bodies in fluid (Par
27:41
Lecture 19: Stability of solid bodies in fluid (Part II)
31:28
Lecture 20: Fluid under rigid body motion
27:43
Lecture 21: Lagrangian and Eulerian approaches
31:26
Lecture 22: Concept of different flow lines
27:50
Lecture 23: Acceleration of fluid flow
30:13
Lecture 24: Deformation of fluid elements (Part I)
39:00
Lecture 25: Derivation of continuity equation
23:46
Lecture 15: Manometers
35:08
Lecture 14: Governing equation of fluid statics
22:47
Lecture 13: Surface Tension (Part II)
30:14
Lecture 12: Surface Tension (Part I)
27:15
Lecture 11: Problems and Solutions
27:24
Lecture 10: Some illustrative examples solved.
30:18
Lecture 9: Non-Newtonian fluids
25:16
Lecture 8: Kinematic viscosity, Reynolds number
31:00
Lecture 7: Viscosity, Newtonian fluid
32:09
Lecture 6: Density, Bulk Modulus, Viscosity
24:07
Lecture 2: Macroscopic and microscopic point of views
32:42
Lecture 1: Motivations of studying fluid mechanics
26:03
Lecture 3: Concept of traction vector
28:51
Lecture 4: Cauchy's theorem
23:17
Lecture 5: Concept of pressure in a fluid