## Electromagnetic fieldsThis revised edition provides patient guidance in its clear and organized presentation of problems. It is rich in variety, large in number and provides very careful treatment of relativity. One outstanding feature is the inclusion of simple, standard examples demonstrated in different methods that will allow students to enhance and understand their calculating abilities. There are over 145 worked examples; virtually all of the standard problems are included. |

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Page 110

These

definition. These considerations will also be helpful to us when we face the

problem of describing the effects of matter in electrostatics, since, for our

purposes, we ...

These

**quantities**are called electric multipoles and we will give them a specificdefinition. These considerations will also be helpful to us when we face the

problem of describing the effects of matter in electrostatics, since, for our

purposes, we ...

Page 271

If we now substitute (17-25) into (17-3) and (17-8), we will get the induced emf

and the line integral of the electric field in the moving system. If we label these

...

If we now substitute (17-25) into (17-3) and (17-8), we will get the induced emf

and the line integral of the electric field in the moving system. If we label these

**quantities**with a prime, and use (1-23) again, we find that <?' =(f>E' ds = - f—da +...

Page 370

In this pure form, however, this system is seldom used anymore and we will not

describe it further. Nevertheless, it should be pointed out that it is very common to

find

In this pure form, however, this system is seldom used anymore and we will not

describe it further. Nevertheless, it should be pointed out that it is very common to

find

**quantities**measured in this system but not given in statamperes, statfarads, ...### What people are saying - Write a review

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angle assume axes axis becomes bound charge boundary conditions bounding surface calculate capacitance capacitor cavity charge density charge distribution charge q circuit conductor const constant convenient corresponding Coulomb's law current density curve cylinder defined dielectric dipole direction displacement distance divergence theorem electric field electromagnetic electrostatic energy equal equipotential evaluate example Exercise expression field point flux force free charge frequency function given illustrated in Figure induction infinitely long integral integrand Laplace's equation line charge line integral located Lorentz transformation magnetic magnitude Maxwell's equations obtained origin parallel particle perpendicular plane wave plates point charge polarized position vector potential difference quantities rectangular coordinates region result scalar potential shown in Figure solenoid sphere of radius spherical surface integral tangential components theorem total charge unit vectors vacuum vector potential velocity volume write written xy plane zero