Engineering electromagnetics / William H. Hayt.
Tipo de material:
- 23 621.3 H426e
Contenidos parciales:
Chapter 1. Vector analysis.-- Chapter 2. Coulomb´s law and electric field intensity.-- Chapter 3. Electric flux density, Gauss´s Law, and divergence.-- Chapter 4. Energy and potential.-- Chapter 5. Conductors in electrostatics fields; capacitance.-- Chapter 6. Experimental mapping methods.-- Chapter 7. Poisson´s and Laplace´s equations.-- Chapter 8. The steady magnetic field.-- Chapter 9. Forces in steady magnetic field.-- Chapter 10. Time-varying fields and Maxwell´s equations.-- Chapter 11. Several applications of Maxwell´s equations.-- Chapter 12. Charged particles in electromagnetic fields.
Tipo de ítem | Biblioteca actual | Colección | Signatura topográfica | Copia número | Estado | Fecha de vencimiento | Código de barras | |
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Biblioteca Central TECNOLOGIA | Papel | 621.3 H426e (Navegar estantería(Abre debajo)) | Ej.1 | Disponible (Sin restricciones) | B2158 |
Incluye apéndices e índice.
Chapter 1. Vector analysis.-- Chapter 2. Coulomb´s law and electric field intensity.-- Chapter 3. Electric flux density, Gauss´s Law, and divergence.-- Chapter 4. Energy and potential.-- Chapter 5. Conductors in electrostatics fields; capacitance.-- Chapter 6. Experimental mapping methods.-- Chapter 7. Poisson´s and Laplace´s equations.-- Chapter 8. The steady magnetic field.-- Chapter 9. Forces in steady magnetic field.-- Chapter 10. Time-varying fields and Maxwell´s equations.-- Chapter 11. Several applications of Maxwell´s equations.-- Chapter 12. Charged particles in electromagnetic fields.
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