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Hi buddy I heard IIT Kanpur offered online program in National Programme on Technology Enhanced Learning (NPTEL) electrical engineering , can you here give me course structure of this program , bcoz I am also thinking to do this program
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#2
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Yes , Kanpur and offered NPTEL online program in electrical engineering , NPTEL program is to enhance the quality of engineering education in the country by developing curriculum based video and web courses. on your demand I am providing its course structure: Module 1 Chapter 1: Modelling Power System Components Chapter 2 : Transmission Line Models Chapter 3 : Network Admittance and Impedance Matrices Module 2 Chapter 4: Load Flow Studies Chapter 5: Economic Operation Of Power Systems Module 3 Chapter 6: Short Circuits Studies - Symmetrical Faults Chapter 7: Symmetrical Components and Representation of Faulted Network Chapter 8: Unsymmetrical Faults Module 4 Chapter 9: Transient Stability Chapter 10: Compensation of Power Transmission Systems Contact detail E-mail: aghosh@iitk.ac.in Telephone: +91-512-2597179 ( Work ) Fax: +91-512-2590063 Address Indian Institute of Technology Kanpur Kalyanpur Kanpur, Uttar Pradesh 208016
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#4
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The NPTEL course is created under the auspices of National Program on Technology Enhanced Learning (NPTEL). The text material has been developed over twenty years while teaching courses on Fluid Mechanics at the undergraduate level and at the introductory graduate level. Here I am providing you the contents of Fluid Mechanics subject so that you can understand the basic concepts of this subject. Module 1 Chapter 1: Introduction and Fundamental Concepts Definition of Stress Definition of Fluid Concept of Continum Fluid Properties Lecture 2 Distinction between Newtonian and Non-Newtonian Fluid Compressibility Surface Tension of Liquids Chapter 2 : Fluid Statics Lecture 3 Forces on Fluid Elements Normal Stresses in a Stationary Fluid Fundamental Equation of Fluid Statics Lecture 4 Units and Scales of Pressure Measurement Lecture 5 Hydrostatic Thrusts on Submerged Surfaces Stability of Unconstrained Bodies in Fluid Period of Oscillation Module 2 Chapter 3: Kinematics of Fluid Chapter 4: Conservation Equations and Analysis of Finite Control Volume Module 3 Chapter 5: Applications of Equations of Motion and Mechanical Energy Chapter 6: Principles of Physical Similarity and Dimensional Analysis Chapter 7: Flow of ideal Fluids Module 4 Chapter 8: Viscous Incompressible Flows Module 5 Chapter 9: Laminar Boundary Layers Chapter 10: Turbulent Flow Module 6 Chapter 11: Applications of Viscous Flows through Pipes Chapter 12: Compressible Flows
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