EMFT Book UPTU - 2018-2019 StudyChaCha

#1
May 8th, 2017, 05:58 PM
 Unregistered Guest Posts: n/a
EMFT Book UPTU

Can you tell me the books of Electromagnetic Field Theory EFT of B.Tech Electronics Engineering of Uttar Pradesh Technical University UPTU?
#2
May 8th, 2017, 06:13 PM
 Super Moderator Join Date: Apr 2013 Posts: 28,573
Re: EMFT Book UPTU

I am telling you the books of Electromagnetic Field Theory of B.Tech Electronics Engineering of Uttar Pradesh Technical University UPTU

UPTU B.Tech EE Electromagnetic Field Theory EFT Books

Text Book:

M. N. O. Sadiku, “Elements of Electromagnetics”, 4th , Ed, Oxford University Press.

Reference Books:

W. H. Hayt and J. A. Buck, “Electromagnetic field theory”, 7th Ed., TMH.
Pramanik-Electromagnetism: Vol.1-Theory, PHI Learning Pvt. Ltd

Syllabus-

I.

Coordinate systems and transformation: Cartesian coordinates, circular
cylindrical coordinates, spherical coordinates
Vector calculus: Differential length, area and volume, line surface and
volume integrals, del operator, gradient of a scalar, divergence of a vector and divergence theorem, curl of a vector and Stoke’s theorem,
Laplacian of a scalar.

II.

Electrostatics: Electrostatic fields, Coulombs law and field intensity, Electric field due to charge distribution, Electric flux density, Gausses’s Law – Maxwell’s equation, Electric dipole and flux lines, energy density in electrostatic fields.
Electric field in material space: Properties of materials, convection and
conduction currents, conductors, polarization in dielectrics, dielectric
constants, continuity equation and relaxation time, boundary condition. Electrostatic boundary value problems: Poission’s and Laplace’s equations, general procedures for soling Poission’s or Laplace’s equations, resistance and capacitance, method of images.

III.

Magnetostatics: Magneto-static fields, Biot-Savart’s Law, Ampere’s circuit law, Maxwell’s equation, application of ampere’s law, magnetic flux density-Maxwell’s equation, Maxwell’s equation for static fields, magnetic scalar and vector potential.
Magnetic forces, materials and devices: Forces due to magnetic field,
magnetic torque and moment, a magnetic dipole, magnetization in
materials, magnetic boundary conditions, inductors and inductances,
magnetic energy.

IV.

Waves and applications: Maxwell’s equation, Faraday’s Law, transformer and motional electromotive forces, displacement current, Maxwell’s equation in final form. Electromagnetic wave propagation: Wave propagation in lossy
dielectrics, plane waves in lossless dielectrics, plane wave in free space,
plain waves in good conductors, power and the pointing vector,

Contact-

Dr. A.P.J. Abdul Kalam Technical University
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