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(יצירת דף עם התוכן " Electrostatics: Coulomb's law; electric field and potential; flux and Gauss' law (integral and differential forms); capacitive conductors and electrostatic energy;...")
 
שורה 1: שורה 1:
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Electrostatics: Coulomb's law; electric field and potential; flux and Gauss' law (integral and differential forms); capacitive* conductors and electrostatic energy; method of mirror charges; electric field in matter, electric dipole, polarization, dielectric materials, boundary conditions
  
Electrostatics: Coulomb's law; electric field and potential; flux and Gauss' law (integral and differential forms); capacitive conductors and electrostatic energy; method of mirror charges; electric field in matter, electric dipole, polarization, dielectric materials, boundary conditions
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Electric current: charge conservation; Ohm's law; DC circuits*
Electric current: charge conservation; Ohm's law; DC circuits
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Magnetic field: Lorentz force; Ampere's law (integral and differential forms); Biot-Savart's law; vector potential
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Magnetic field: Lorentz force; Ampere's law (integral and differential forms); Biot-Savart's law; vector potential*
Inductance: inductance and time-dependent effects; Faraday's and Lenz's laws of inductance; magnetic energy
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Maxwell's equations: displacement current; consequences
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Inductance: inductance and time-dependent effects; Faraday's and Lenz's laws of inductance; magnetic energy*
Magnetic field in matter: magnetic dipole; diamagnetic, paramagnetic and ferromagnetic materials
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Maxwell's equations: displacement current; consequences*
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Magnetic field in matter: magnetic dipole; diamagnetic, paramagnetic and ferromagnetic materials*

גרסה מ־23:48, 2 בפברואר 2013

Electrostatics: Coulomb's law; electric field and potential; flux and Gauss' law (integral and differential forms); capacitive* conductors and electrostatic energy; method of mirror charges; electric field in matter, electric dipole, polarization, dielectric materials, boundary conditions

Electric current: charge conservation; Ohm's law; DC circuits*

Magnetic field: Lorentz force; Ampere's law (integral and differential forms); Biot-Savart's law; vector potential*

Inductance: inductance and time-dependent effects; Faraday's and Lenz's laws of inductance; magnetic energy*

Maxwell's equations: displacement current; consequences*

Magnetic field in matter: magnetic dipole; diamagnetic, paramagnetic and ferromagnetic materials*