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1 |
Introduction to Electromagnetic Theory: Basic concepts, fundamental interactions, units and vector analysis
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2 |
Electric Charge and Electric Field: Coulomb’s law, electric field and field lines
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3 |
Electric Flux and Gauss’s Law: Electric flux, Gauss’s law and applications
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4 |
Electric Potential: Electric potential, potential difference, potential due to continuous charge distributions
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5 |
Conductors, Dielectrics and Capacitance: Properties of conductors and dielectrics, capacitors and capacitance
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6 |
Electrostatic Energy: Energy stored in electric fields, energy density and electrostatic boundary conditions
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7 |
Magnetostatic Fields: Magnetic force, Biot–Savart law and magnetic fields of current distributions
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8 |
Midterm Examination
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9 |
Ampère’s Law: Ampère’s circuital law and its applications to symmetric current distributions
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10 |
Magnetic Materials: Magnetic dipoles, magnetization, magnetic susceptibility and boundary conditions
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11 |
Electromagnetic Induction: Faraday’s law, Lenz’s law, motional emf and induced electric fields
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12 |
Maxwell’s Equations: Displacement current and integral and differential forms of Maxwell’s equations
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13 |
Electromagnetic Waves – Introduction: Wave equations, propagation of electromagnetic waves and basic properties
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14 |
Final Examination
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15 |
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16 |
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17 |
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18 |
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19 |
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20 |
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