Udemy - Fluid Mechanics - Basic mathematical derivations

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Udemy - Fluid Mechanics - Basic mathematical derivations (Size: 912.6 MB)
  1. Bernoullis equation.mp4 52.8 MB
  1. Density, Specific gravity and Viscosity.mp4 39.9 MB
  1. Orificemeter.mp4 51.3 MB
  1. Stream line, stream tube, path line, streak line.mp4 53.3 MB
  1.1 1.Density, Specific gravity and Viscosity.pdf 139 KB
  1.1 1.Orifice meter.pdf 144.9 KB
  1.1 1.Stream line, tube, path line, streak line.pdf 150.4 KB
  1.1 Bernoulli's equation.pdf 330.5 KB
  10. Similarity Laws and Distorted models-(Part-1).mp4 55.3 MB
  10.1 10.Similarity Laws and Distorted models-(Part-1).pdf 53.4 KB
  11. Similarity Laws and Distorted models-(Part-2).mp4 44.8 MB
  11.1 11.Similarity Laws and Distorted models-(Part-2).pdf 137.9 KB
  2. Dynamic viscosity, kinematic viscosity and Newton's law of viscosity.mp4 20.9 MB
  2. Momentum equation - Pipe bend application.mp4 31.1 MB
  2. Steady and Unsteady flows.mp4 24.2 MB
  2. Venturimeter.mp4 27.8 MB
  2.1 2.Dynamic viscosity, kinematic viscosity and Newton's law of viscosity.pdf 208.1 KB
  2.1 2.Steady and Unsteady flows.pdf 140 KB
  2.1 2.Venturimeter.pdf 133.1 KB
  2.1 Momentum equation - Pipe bend application.pdf 142.5 KB
  3. Laminar and turbulent flows.mp4 20.6 MB
  3. Momentum equation - Jet propulsion - Reaction of Jet.mp4 31.3 MB
  3. Venturimeter with U-Tube Manometer.mp4 11.9 MB
  3.1 3.Laminar and turbulent flows.pdf 29.2 KB
  3.1 3.Venturimeter with U-Tube Manometer.pdf 33.8 KB
  3.1 Momentum equation - Jet propulsion - Reaction of Jet.pdf 227.4 KB
  4. Orifice tank mounted on frictionless wheels- An application of Momentum equation.mp4 29 MB
  4. Pitot tube.mp4 42.1 MB
  4. Rotational flow.mp4 17.8 MB
  4.1 4.Pitot tube.pdf 143.7 KB
  4.1 4.Rotational flow.pdf 50.9 KB
  4.1 Orifice tank mounted on frictionless wheels- An application of Momentum equation.pdf 109.6 KB
  5. Continuity equation.mp4 24.6 MB
  5. Hot wire anemometer.mp4 42.6 MB
  5. Vortex flow.mp4 22.6 MB
  5.1 5.Continuity equation.pdf 156.4 KB
  5.1 5.Hot wire anemometer.pdf 139.1 KB
  5.1 Vortex flow.pdf 163.4 KB
  6. Flow through notches and weirs-(Part-1).mp4 40.6 MB
  6. Forced Vortex Flow.mp4 13.8 MB
  6. Velocity potential function.mp4 23.4 MB
  6.1 6.Flow through notches and weirs-Part-1.pdf 48.6 KB
  6.1 6.Velocity potential function.pdf 50.3 KB
  6.1 Forced Vortex flow.pdf 47.1 KB
  7. Flow through notches and weirs-(Part-2).mp4 14.4 MB
  7. Stream Function.mp4 21.2 MB
  7. Surface and Body forces.mp4 15.1 MB
  7.1 7.Flow through notches and weirs-Part-2.pdf 49.1 KB
  7.1 7.Stream function.pdf 49.5 KB
  7.1 Surface and body forces.pdf 226.3 KB
  8. Flow through notches and weirs-(Part-3) and Viscometers.mp4 82.3 MB
  8.1 8.Flow through notches and weirs (Part-3) and Viscometers.pdf 167.8 KB
  9. Flow through Nozzles.mp4 54.9 MB
  9.1 9.Flow through nozzles.pdf 80.4 KB
  Bonus Resources.txt 409.6 B
  Get Bonus Downloads Here.url 204.8 B
  ▲ 56 total files

Description


Fluid Mechanics - Basic mathematical derivations
https://CourseLala.com

Published 11/2022
Created by Dr. G.V.S.S. Sharma
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English | Duration: 27 Lectures ( 4h 0m ) | Size: 912 MB

A first level introductory course

What you'll learn
Understand of the concepts in fluid statics
Infer the mathematical derivations and concepts confirming to the field of fluid kinematics
Interpret the mathematical derivations pertaining to fluid dynamics
Develop an understanding on fluid flow measurement aspects

Requirements
An understanding in mathematical calculus shall be helpful for the learners of this course

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