Electricity and Magnetism

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A01=P.F. Kelly
AC Circuit
Ac Circuits
AC Source
AC Voltage Source
advanced circuit analysis
Ampère's Law
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calculus-based physics
Capacitance
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Charge Element
Charged Particles
classical electromagnetism textbook
Continuous Charge Distributions
Coulomb's Law
DC Circuits
Dielectrics
Dipoles
Electric Charge
Electric Current
Electric Dipole
Electric Field
Electric Flux
Electricity
electromagnetic wave propagation
Electromagnetic Waves
Electrostatic Equilibrium
Electrostatic Potential Energy
Emf
Energetics
Energy Density
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eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
Faraday's Law
Field Point
Gauss Law
Gauss law applications
Gauss's Law
Hall Effect
Inductance
inductance and capacitance
Kirchoff's Rules
Lc Circuits
Lorentz Force
Magnetic Field
Magnetic Force
Magnetic Sources
Magnetism
Maxwell equations derivation
Maxwell'S Equations
Momentum
Motional EMF
Non-zero Electric Field
Ohm's Law
Parallel Plate Capacitor
Perpendicular Bisector
Potential Difference
Potential Energy
Power Dissipation
Poynting Vector
RC Circuit
RC Circuits
RCL Circuit
Rcl Circuits
Resistance
Rl Circuits
RMS Current
Si Unit
Solenoids
Torque
Uniform Electric Field
Uniform Magnetic Field
Vacuum

Product details

  • ISBN 9781482206357
  • Weight: 940g
  • Dimensions: 178 x 254mm
  • Publication Date: 01 Dec 2014
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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The final volume in a three-part series, Electricity and Magnetism provides a detailed exposition of classical electric and magnetic fields and analyses of linear electric circuits. The book applies the principles of classical mechanics to systematically reveal the laws governing observed electric and magnetic phenomena. The text culminates in Maxwell's Equations, which, although only four in number, can completely describe all physical aspects of electromagnetism.

The specific topics covered in Electricity and Magnetism include:

  • Electric force, field, and potential
  • Gauss's Law for Electric Fields
  • Capacitance and networks of capacitors
  • Electric current
  • Resistance and networks of resistors
  • Kirchoff's Rules
  • Steady state and time-dependent DC circuit dynamics
  • Magnetic force and field
  • Production of magnetic fields
  • Ampère's Law
  • Gauss's Law for Magnetic Fields
  • Faraday's Law
  • Induction and inductance
  • AC-driven circuit dynamics and energetics
  • Maxwell's Equations and their plane-wave vacuum solutions

This text extends the rigorous calculus-based introduction to classical physics begun in Elements of Mechanics. It may be studied independently of the second volume, Properties of Materials. With more than four hundred and fifty problems included, it can serve as a primary textbook in an introductory physics course, as a student supplement, or as an exam review for graduate or professional studies.

P.F. Kelly is an associate professor of physics at Ave Maria University, Florida, USA. He previously held a faculty position at North Dakota State University, Fargo, USA. Prior to this, he undertook post-doctoral studies at the Center for Theoretical Physics, Massachusetts Institute of Technology, Cambridge, USA, and at the Winnipeg Institute for Theoretical Physics, University of Winnipeg, Manitoba, Canada. He holds a B.Sc from the University of Waterloo, Ontario, Canada, and an M.Sc and Ph.D from the University of Toronto, Ontario, Canada. His areas of interest include theoretical particle, gravitational, mathematical, and computational physics.

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