
AU Electromagnetic Field Theory and Transmission Lines Sem IV Unit 3 : Maxwells Equations(Introduction, Equation of continuity for the varying fields, Maxwells equations for time varying fields, Meaning of Maxwells equations, Conversion of differential form of Maxwells equations to integral form, Maxwells equations for static fields,
Characteristics of free space, Maxwells equations for free space, The Maxwells equations for static fields in free space, Proof of Maxwells equations, Sinusoidal time varying fields, Maxwells equations in phasor form, Influence of medium on the fields, Types of media, Summary of Maxwells equations for different cases, Boundary conditions, Proof of boundary conditions on E, D, H and B, Complete boundary conditions in scalar form, Boundary conditions in vector form, Time varying potentials, Retarded potentials, Maxwells equations approach to relate potentials, Fields and their sources, Helmoltz theorem, Lorentz gauge condition) 






3. Electromagnetic Waves(Physics) 
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Maxwell's equations (derivation and significance), Electromagnetic waves  Derivation of wave equation, Velocity of em waves, Relation between refractive index and permittivity, Plane em waves, Energy and momentum, Significance of Poynting vector
Title: Concise Physics BSc III semester Volume 3 (301)




4. Computational Algorithms for the Configuration Design (Aerodynamics Airworthiness)(Aeronautical Engineering) 
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Introduction, Theoretical Algorithms, Computational Algorithms, Optimization of Computational Grids , Parallel Computational Computing.
Title: Aerodynamics Airworthiness




5. Computational Algorithms for the Configuration Design (Aerodynamics Airworthiness)(Aeronautical Engineering) 
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• Introduction
• Theoretical Algorithms
• Computational Algorithms, Optimization of Computational Grids
• Parallel Computational Computing
Title: Aerodynamics Airworthiness









6. Microwave Transmission Lines(Microwave Engineering) 
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Compare the solution of (8.4) with that of (8.6). It is found that the general solution of the former equation contains an exponentially increasing function and an exponentially decreasing function. Depending on the boundary conditions available, we can determine which of the two components will be the real solution. In a similar fashion, it is found that the general solution of (8.6) contains two
......
Title: Microwave Engineering




7. Solved VTU Engneering Physics Model question paper1(VTU Engineering Physics) 
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Title: VTU Engineering physics




8. SolvedVTU Engineering Physics Model question paper2(VTU Engineering Physics) 
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Title: VTU Engineering physics




9. Basic Electrical(Basic Electrical Engineering
) 
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Basic Electrical Notes
Title: Basic Electrical





















10. Recent Advancements in Aerodynamics (Aerodynamics Airworthiness) (Aeronautical Engineering) 
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• Introduction
• High AnglesofAttack Computations
• Laminar and Unsteady Flows
• Numerical Optimisation
• Aeroelasticity
• Stealth Aerodynamics
Title: Aerodynamics Airworthiness




11. Introduction(Electronics and Communication) 
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An efficient modulation technique is required today to achieve higher to lower rate data transfer over a range of lower to higher distances and low power respectively. The answer right now comes as MultibandOFDM. It implements proficient orthogonal sub carrier generation blocks like FFT/IFFT or DWT/IDWT blocks to achieve spectral efficiency.
Title: FPGA IMPLEMENTATION OF OFDM ARCHITECTURE




12. Band Theory of Solids(Physics) 
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Elementary ideas regarding formation of energy bands, Bloch theorem; One dimensional KronigPenney model, Effective mass, Energy gap
Title: Concise Physics BSc V Semester Volume 6 (503)




13. Oscillations(Engineering Physics
) 
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Oscillations and vibrations are the most frequently occuring phenomena. It is very essential to understand the nature of oscillations and vibrations. Oscillation is a repeating motion that occurs when a time varying force acts on the system. Oscillations are periodic motions.
Title: ENGINEERING PHYSICS
Published on: 11/04/19
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Pages:
8








14. Vector Spaces(Mathematics) 
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Abstract algebra has three basic components: groups, rings and fields. Fields play a central role in algebra. Results in field theory find important applications in algebraic number theory. Field theory happens to be the language in which a number of classical problems such as the Greek's problem of ruler and compass constructions were rephrased and solved.
Title: Math 1.1 Algebra




15. Electromagnetism(Basic Electrical Engineering ) 
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Oersted's Discovery ◘ Important Terms and Units ◘ Relation between
Magnetic Flux and MMF (Ohm's Law for Magnetic Circuits)
◘ Electromagnetic Induction ◘ Faraday's Law of Electromagnetic
Induction ◘ Lenz's Law ◘ Types of Induced EMFs ◘ SelfInducedEMF
◘ Coefficient of SelfInduction on SelfInductance ◘ Inductance
of a Solenoid ψ
......
Title: Basic Electrical Engineering




16. Chapter 11(Physics) 
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Title: New Edges of Physics
Published on: 23/01/19
Author:
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Pages:
12








17. Introduction to Finite Element Method(Finite Element Method) 
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Introduction, General Description of the Finite Element Method, List of Steps Involved in the Finite Element Method, Engineering Applications of Finite Element Method, Advantages of the Finite Element Method.
Title: Finite Element Method





19. Flying Qualities Regarding Unstable Fighter Aircraft(Aerodynamics Airworthiness) (Aeronautical Engineering) 
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• Introductioob, Flying Qualities Commitment, Stability Derivatives Considerations, Control Law Aspects ,
• RealTime Software Synthesiz
• Design and Test Conditions
Title: Aerodynamics Airworthiness




20. A.C. Circuits (Fundamentals of Alternating Quantities)(Basic Electrical Engineering ) 
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Alternating Quantity ◘ Nature of Alternating Quantities ◘ Generation of
AC Electricity ◘ Measurement of Alternating Quantities ◘ Mathematical
Treatment: The RootMeanSquareValue ◘ The Average Value of Alternating Current ◘ Wave Form Factors ◘ RMS Value, Average Value, Form Factor and
Peak Factor of a Sine Wave or a Sinusoidally Varying Quantity
......
Title: Basic Electrical Engineering





22. Factory AutomationCAD, CAM and CIM (Aircraft Production)(Aeronautical Engineering) 
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• Introduction • Computer aided design • Graphic software concepts • Design analysis • Computer aided manufacturing(CAM) • The apt programming system • Post processing • Workstation based programming systems • Direct numerical control or DNC • Computer integrated manufacturing • Group tec...
Title: Aircraft Production Technology and Mangement




23. Solved VTU EngineeringPhysics queston paper Jan 2019(VTU Engineering Physics) 
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Title: VTU Engineering physics





25. Wind Tunnel Testing (Aerodynamics Airworthiness) (Aeronautical Engineering) 
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• Introduction
• Measurements
• Gust Generation in Wind Tunnel
• Adaptive Wall Tunnel and Data Reduction
• Store Separation
Title: Aerodynamics Airworthiness






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