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MOOC Massive Open Online Courses (Anno Accademico 2018/2019)

Physics II



Docenti video: Paolo Allia - Politecnico di Torino (Torino - Italy)

Videolezione

Lezione n. 1: Electrostatics
   Introduction

   Electrostatic Charges

   Charge Quantization

   Conservation of Charge

   Distribution of Charge

   Coulomb's Law

   Derivation of the Inverse Square Law
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Lezione n. 2: Electric Fields
   Lesson Content

   Introduction

   The Electric Field

   Electric Field Lines

   Electric Field of a Point Charge

   Electric Field of a Distribution of Charges

   Electric Field of an Electric Dipole

   Electric Dipole in an Electric Field
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Lezione n. 3: Gauss'Law and Applications
   Lesson Content

   Introduction

   Flux of an Electric Field

   Gauss’ Law

   Flux of a Point Charge

   Application of Gauss’ Law: Cylindrical Symmetry

   Application of Gauss’ Law: Planar Symmetry

   Application of Gauss’ Law: Spherical Symmetry

   Differential Form of Gauss’ Law
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Lezione n. 4: Electric Potential
   Lesson Content

   Electrostatic Potential Energy

   Electrostatic Potential

   Relation Between the Electric Field and the Potential

   The Electric Dipole

   Equipotential Surfaces

   Poisson Equation

   Laplace’s Equation

   Applications
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Lezione n. 5: Capacitance and Electric Field Energy
   Lesson Content

   Introduction

   Capacitance

   Capacitance of a Single Conductor

   Parallel-Plate Capacitor

   Units of Capacitance

   Capacitors in Parallel

   Capacitors in Series

   Systems of Conductors

   Electric Field Energy
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Lezione n. 6: Dielectrics
   Lesson Content

   Introduction

   Polarization

   Electric Susceptibility

   Electric Displacement
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Lezione n. 7: Electric Current and Resistance (I)
   Lesson Content

   Introduction

   Electric Current

   Resistance

   Conduction

   Ohm’s Law

   Resistivity
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Lezione n. 8: Electric Current and Resistance (II)
   Lesson Content

   Resistance Calculation

   Non-uniform Conductor

   Two Concentric Cylinders

   Resistors in Series

   Resistors in Parallel

   Joule Effect
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Lezione n. 9: Electric Circuits
   Lesson Content

   Introduction

   Electric Current

   Resistance

   Conduction

   Ohm’s Law

   Resistivity
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Lezione n. 10: Electric Circuits: Circuit Analysis (I)
   Lesson Content

   Resistance Calculation

   Non-uniform Conductor

   Two Concentric Cylinders

   Resistors in Series

   Resistors in Parallel

   Joule Effect
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Lezione n. 11: Electric Circuits: Circuit Analysis (II)
   Lesson Content

   Thévenin’s Theorem

   Theory of Maximum Power Transfer

   Unbalanced Wheatstone Bridge

   Norton’s Theorem

   Applications

   Superposition Theorem
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Lezione n. 12: Magnetic Fields
   Lesson Content

   Introduction

   Magnetic Field in Vacuum

   Magnetic Force on a Moving Charge

   Lorentz Force

   Hall Effect

   Magnetic Field Lines

   Magnetic Force on a Current

   Magnetic Force and Torque on a Current Loop
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Lezione n. 13: Magnetic Fields Due to Currents (I)
   Lesson Content

   Introduction

   Forces Between Two Currents

   Laplace Force Law

   Biot-Savart Law

   Applications of Biot-Savart Law

   The Divergence of The Magnetic Induction
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Lezione n. 14: Magnetic Fields Due to Currents (II)
   Lesson Content

   Introduction

   Ampere’s Law

   Applications of Ampere’s Law

   Forces Between Two Parallel Wires

   Differential Form of Ampere’s Law

   The Vector Potential

   The Magnetic Flux

   Gauge Invariance
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Lezione n. 15: Electromagnetic Introduction
   Lesson Content

   Introduction

   Experimental Approach

   Faraday’s Law

   Lenz’s Law

   Induction and Energy Transfer
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Lezione n. 16: Inductance
   Lesson Content

   Introduction

   Self-Inductance

   Self-inductance of a long solenoid

   Self-inductance of a toroid

   Mutual Inductance

   Two Coaxial Solenoids

   Energy of a Magnetic Field
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Lezione n. 17: Maxwell's Equations
   Lesson Content

   Electromagnetic Equations - static case

   Electromagnetic Equations - dynamic case

   Displacement Current

   Maxwell’s Equations in Vacuum

   Gauge Invariance

   Lorentz Gauge
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Lezione n. 18: Electromagnetic Energy - Poynting Vector
   Lesson Content

   Introduction

   Electromagnetic Energy

   Poynting Vector

   Examples
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Lezione n. 19: Alternating Current Circuits- First Order Circuits
   Lesson Content

   Introduction

   RC Circuit

   RL Circuit

   Reactance

   First Order Circuits
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Lezione n. 20: Alternating Current Circuits - Rc, Rl, RLC Circuits
   AC First Order Circuits

   Lesson Content

   RC Circuits

   RL Circuits

   AC Second Order Circuits

   Homogeneous Solution

   Particular Solution

   Resonance
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Lezione n. 21: Geometrical Optics: Reflection and Refraction
   Lesson Content

   Introduction

   Light Rays and Rectilinear Propagation

   Superposition Principle

   Theoretical Basis of Geometrical Optics

   Light

   Speed of Light

   Index of Refraction

   Fermat’s Principle

   Law of Reflection

   Law of Refraction

   Fermat’s Principle: Reflection

   Fermat’s Principle: Refraction

   Image Construction
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Lezione n. 22: Geometrical Optics: Spherical Surfaces
   Lesson Content

   Reflection from a Spherical Surface

   Concave Mirror

   Convex Mirror

   Sign convention

   Mirror Equation

   Image Construction

   Refraction at a Spherical Surface

   Convex Surface

   Concave Surface

   Refracting surface equation

   Lateral Magnification
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Lezione n. 23: Geometrical Optics: Lenses and Optical Instruments
   Lesson Content

   Introduction

   Prisms

   Lenses

   Types of lenses

   Thin Lens Approximation

   Compound Lenses

   Magnifiers and Microscopes

   The Telescope

   The Camera
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Lezione n. 24: Physical Options: Interference of Light
   Lesson Content

   Introduction

   Huygens Wave Theory

   Interference

   Young’s Double Slit Experiment

   Thin Films

   Thin Wedge

   Newton’s Rings

   Michelson’s Interferometer
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Lezione n. 25: Physical Options: Diffraction
   Lesson Content

   Introduction

   Fresnel Diffraction

   Fraunhofer Diffraction

   Horizontal Slit

   Circular Aperture

   Diffraction Grating
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