## 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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angle applied assume axis becomes bound boundary calculate called capacitor charge density charge distribution circuit comparing completely components conducting conductor consider constant convenient coordinates corresponding cylinder defined definition depend described dielectric dipole direction discussed distance effect electric field electromagnetic element energy equal equation evaluate exactly example Exercise expression final follows force frequency function given gives illustrated independent induction infinite integral involved length located magnetic magnitude material means moving normal obtained origin parallel particle perpendicular plane plates point charge polarized positive possible potential produced properties quantities radius region relation respect result satisfy sense separation shown in Figure side simply situation solution sphere substitute surface turns uniform unit vector volume wave write written zero