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Choice-based Credit-based B Sc (Physics) courses
              ā€“ Electromagnetism ā€“
                          Bhas Bapat
           Physical Research Laboratory, Ahmedabad

                         31 October 2011




             Choice-based Credit Courses ā€“ Electromagnetism
31 October 2011                                                         1

                                                 Outline

1. Introduction

2. Credit Modules

3. Remarks on Methodology

4. Suggestions for Module Contents

5. Electrostatics : A viewpoint




Choice-based Credit Courses ā€“ Electromagnetism             Bhas Bapat, PRL
31 October 2011                                                                        2

                         1a. Electromagnetism : What is it?

Description of the eļ¬€ects of charged particles on each other.

Various ā€œļ¬‚avoursā€: electrostatics, magnetostatics, electricity and magnetism,
electromagnetism, electrodynamics. Do not mean the same thing.

Electromagnetism covers electricity and magnetism, but not radiation (accelerated
charged particles radiate) ā€“ electrostatics, magnetostatics, electricity and magnetism
are sub-domains.

Electrodynamics is the all-encompassing term ā€“ study of uniform and accelerated
motion of charged particles ā€“ includes the phenomena of electricity, magnetism and
radiation.

At the B Sc level we restrict ourselves to Electromagnetism.




Choice-based Credit Courses ā€“ Electromagnetism                            Bhas Bapat, PRL
31 October 2011                                                                        3

 1b. Role of Electromagnetism in the development of Physics

Ability to describe the eļ¬€ect of electric and magnetic ļ¬elds on matter.

Understanding the structure of atoms and molecules (Quantum Mechanics and
Electrodynamics).

One of the pillars of the special theory of relativity (Maxwellā€™s equations are
invariant under Lorentz transformation).

Clearly, a fundamental component of physics, must be studied by all Physics
students.




Choice-based Credit Courses ā€“ Electromagnetism                            Bhas Bapat, PRL
31 October 2011                                                                     4

                              2a. Suggested Credit Modules

1. Electrostatics (in vacuum and in continuous media) [Compulsory]

2. Magnetostatics (in vacuum and in continuous media) [Compulsory]

3. Time varying ļ¬elds, ļ¬elds of moving charges [Compulsory]

4. Maxwellā€™s Equations, Electromagnetic waves [Elective]

5. Current Electricity, circuits, theorems, AC and DC, capacitive and inductive
   circuits, devices [Elective]

6. Applications of electromagnetism in Physics Research [Elective]

Some of the above could be divided or re-organised, if needed, for proper teaching.

Choice-based Credit Courses ā€“ Electromagnetism                         Bhas Bapat, PRL
31 October 2011                                                             5

                                                 2b. Books

1. Introduction To Electrodynamics, 3/E
   D J Griļ¬ƒths
   Publisher: Ubs-Bangalore, Price Approx Rs 250.

2. Foundations of Electromagnetic Theory , 3/E
   J. R. Reitz, F. J. Milford, R. W. Christy
   Publisher: Narosa, Price Approx Rs 250.
   4/E, Publisher: Pearson Educational, Price Approx Rs 400.




Choice-based Credit Courses ā€“ Electromagnetism                 Bhas Bapat, PRL
31 October 2011                                                                       6

                               3a. Remarks on Methodology

ā€¢ Need to lay greater stress on problem solving than merely proving laws/theorems
  and covering standard situations.

ā€¢ Use of graphical teaching aids (accurate, well-drawn, and imaginative diagrams)
  will enormously beneļ¬t students in the early sessions.

ā€¢ Necessary mathematics should be introduced as need arises; if introduced as a
  pre-requisite, it becomes too abstract and uninteresting for most students.

ā€¢ Also keep in mind that analogies helpful only up to a point; misleading when
  taken too far.

ā€¢ Historical perspective is often helpful. Should be given to improve clarity, not to
  present the chronology of the development of the subject.


Choice-based Credit Courses ā€“ Electromagnetism                           Bhas Bapat, PRL
31 October 2011                                                                    7

                        3b. Diļ¬ƒculties faced in studying EM

Vector nature of the EM ļ¬elds make the equations and mathematics diļ¬ƒcult
(requires substantial leap of imagination and mathematical skill on part of the
student).

Most student are ill-equipped to appreciate the nuances of vectors and symmetries.

Need to stress symmetries in a problem/situation and exploiting the symmetries to
simplify problems.

The concept of a ļ¬eld takes time to digest.




Choice-based Credit Courses ā€“ Electromagnetism                        Bhas Bapat, PRL
31 October 2011                                                                       8

                    4a. Electrostatics (vacuum, free charges)
Coulombā€™s Law, Force between several particles ā€“ vector addition.
Concept of a source charge and a test charge, electric ļ¬eld, vector nature of the
electric ļ¬eld (discuss scalar and vector ļ¬elds with examples), spherical symmetry,
breaking of a spherical symmetry.
Calculation of electric ļ¬eld due to simple charge distributions (integral method,
exploiting symmetries)
Work done by a moving charge, path independence, concept of a gradient, potential
energy, conservative and non-conservative ļ¬eld.
Divergence of a vector ļ¬eld, Line integral, Surface integral, Gauss divergence
theorem, rotational vector ļ¬elds, curl of a vector, Stokes theorem.
Charge distributions and application of Gaussā€™ Law to calculate ļ¬elds.
Force and Torque between dipole/monopole and dipole/dipole.

Choice-based Credit Courses ā€“ Electromagnetism                           Bhas Bapat, PRL
31 October 2011                                                                         9

                     4a. Electrostatics (in continuous media)

Capacitance and dielectric constant, conductors and insulators, microscopic view of
dielectrics, dipole moment, polarization.

Gausss law in dielectric media, electric displacement, the three electric vectors
E , D, P .

Boundary conditions at a dielectric surface, polarizability and susceptibility.




Choice-based Credit Courses ā€“ Electromagnetism                             Bhas Bapat, PRL
31 October 2011                                                                   10

                                         4b. Magnetostatics

Origin of B (naturally occurring magnetism).

Magnetic eļ¬€ects of steady current: Lorentz force, magnetic force on a current
carrying conductor.

Amperes circuital law, application of the law, the Biot-Savart Law and its
applications.

Magnetic properties of a small current loop, current loop in an external magnetic
ļ¬eld.

Magnetization, Magnetic pole density, magnetic intensity, the relation between
H, B, M.

Magnetic properties of materials, types of magnets, hysteresis in ferromagnetic
materials, permeability, remnance.


Choice-based Credit Courses ā€“ Electromagnetism                        Bhas Bapat, PRL
31 October 2011                                                                   11

                  4c. Electromagnetic Fields of moving charges

Lorentz force on a charge moving in combined E and B ļ¬elds.

Force in a co-moving reference frame.

Interchangeability of forces due to E and B separately in diļ¬€erent frames of
reference.

Relativistic Transformation

Time varying ļ¬elds ā€“ Faradayā€™s Law, Charge conservation and Displacement Current.




Choice-based Credit Courses ā€“ Electromagnetism                        Bhas Bapat, PRL
31 October 2011                                                                 12

        4d. Maxwellā€™s Equations and Electromagnetic Waves

Maxwellā€™s Equations.

Propagation of time varying electromagnetic ļ¬elds, wave equation.

Boundary conditions and their implications to wave propagations ā€“ refraction,
diļ¬€raction

This course will have pre-requisites




Choice-based Credit Courses ā€“ Electromagnetism                      Bhas Bapat, PRL
31 October 2011                                                                      13

                          4e. Current Electricity and Circuits

Simple circuits, concepts of currents, potential drop, resistance, capacitance and
inductance.

Circuit theorems.

DC and AC circuits, inductive, capacitive and resistive loads. Losses in circuits.

Mechanical eļ¬€ects of current: heat and motion, electromotive applications (motors
and genertors).

Generation and transmission of electric power.

This course will have pre-requisites




Choice-based Credit Courses ā€“ Electromagnetism                           Bhas Bapat, PRL
31 October 2011                                                                   14

     4f. Application of electromagnetism in Physics Research

Creation and manipulation of charged particles (ion and electron sources)

Creation of electric and magnetic ļ¬elds

Acceleration of charged particles (DC and RF accelerator designs)

Generation and conļ¬nement of plasmas

Atmospheric Physics: Ionospheric processes, probing of the atmosphere by radio
waves, propagation of radio waves in the atmosphere etc.

Radio Communication: ā€œwindowsā€ in the atmosphere, design of antennas, and
radars, communication using EM waves

Electron Microscopy, Hall Probes, NMR

This course will have pre-requisites

Choice-based Credit Courses ā€“ Electromagnetism                        Bhas Bapat, PRL
31 October 2011                                                                      15

                              5. Electrostatics : A viewpoint

Coulombā€™s Law ā€“ 1/r 2 behaviour, stress on the direction of the force.

Concept of a source charge and a test charge ā€“ convey that the force is always
radial ā€“ idea of a ļ¬eld ā€“ vector nature of the ļ¬eld. Lines of force.

Various coordinate systems ā€“ usefulness of diļ¬€erent systems in diļ¬€erent situations.

Go over from the ļ¬eld due to a point charge to that due to two charges, due to a
line charge etc.

Underline the symmetry of the problem and hence the eļ¬ƒcacy of a particular
coordinate system ā€“ link between a symmetry and redundancy of one or more
coordinates in the description of the ļ¬eld.

Calculation of the electric ļ¬eld for simple charge distributions.



Choice-based Credit Courses ā€“ Electromagnetism                           Bhas Bapat, PRL
31 October 2011                                                                              16

                              5. Electrostatics : A viewpoint

Vector integration ā€“ introduce diļ¬€erential length, area, volume elements in various
coordinate systems.

Stress the diļ¬€erence between ļ¬eld point and source point, e.g.


                                                            r Ė†
                                                     Ļ(r ) (Ė† āˆ’ r ) d 3r
                                         E=
                                                 V        |r āˆ’ r |2


Simpliļ¬cation of the ļ¬eld calculation ā€“ introduce the electric potential (ļ¬rst for a
point charge then for a collection of charges) ā€“ either from the point of view of
work done in moving a test charge, or merely as a mathematical device.

Equipotential surface, ļ¬eld lines,                      concept of a gradient (to be shown
geometrically/pictorially)

Choice-based Credit Courses ā€“ Electromagnetism                                   Bhas Bapat, PRL
31 October 2011                                                                  17

                              5. Electrostatics : A viewpoint

(Mathematical) properties of vectors ļ¬elds, signiļ¬cance of 1/r 2 nature of the
electrostatic force.

Gaussā€™ Law, Laplace Equation, Poisson Equation.

Application of Gaussā€™ Law to calculation of electric ļ¬eld and to obtain boundary
conditions.




Choice-based Credit Courses ā€“ Electromagnetism                       Bhas Bapat, PRL
31 October 2011                                                                     18

                                                 Summary

Break-up the electromagnetic theory topics into a few mandatory and few elective
modules.

Elective modules will have pre-requisites, including some from other topics (Q.Mech,
Solid State, Mechanics).

Build up mathematics concurrently with the mandatory modules as per need.

Stress on the vector nature, symmetries etc.

Employ graphical/visual aids to teach vector analysis and properties of EM ļ¬elds.

Include problem solving in all mandatory modules.




Choice-based Credit Courses ā€“ Electromagnetism                          Bhas Bapat, PRL

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B sc ama-emtheory

  • 1. Choice-based Credit-based B Sc (Physics) courses ā€“ Electromagnetism ā€“ Bhas Bapat Physical Research Laboratory, Ahmedabad 31 October 2011 Choice-based Credit Courses ā€“ Electromagnetism
  • 2. 31 October 2011 1 Outline 1. Introduction 2. Credit Modules 3. Remarks on Methodology 4. Suggestions for Module Contents 5. Electrostatics : A viewpoint Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 3. 31 October 2011 2 1a. Electromagnetism : What is it? Description of the eļ¬€ects of charged particles on each other. Various ā€œļ¬‚avoursā€: electrostatics, magnetostatics, electricity and magnetism, electromagnetism, electrodynamics. Do not mean the same thing. Electromagnetism covers electricity and magnetism, but not radiation (accelerated charged particles radiate) ā€“ electrostatics, magnetostatics, electricity and magnetism are sub-domains. Electrodynamics is the all-encompassing term ā€“ study of uniform and accelerated motion of charged particles ā€“ includes the phenomena of electricity, magnetism and radiation. At the B Sc level we restrict ourselves to Electromagnetism. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 4. 31 October 2011 3 1b. Role of Electromagnetism in the development of Physics Ability to describe the eļ¬€ect of electric and magnetic ļ¬elds on matter. Understanding the structure of atoms and molecules (Quantum Mechanics and Electrodynamics). One of the pillars of the special theory of relativity (Maxwellā€™s equations are invariant under Lorentz transformation). Clearly, a fundamental component of physics, must be studied by all Physics students. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 5. 31 October 2011 4 2a. Suggested Credit Modules 1. Electrostatics (in vacuum and in continuous media) [Compulsory] 2. Magnetostatics (in vacuum and in continuous media) [Compulsory] 3. Time varying ļ¬elds, ļ¬elds of moving charges [Compulsory] 4. Maxwellā€™s Equations, Electromagnetic waves [Elective] 5. Current Electricity, circuits, theorems, AC and DC, capacitive and inductive circuits, devices [Elective] 6. Applications of electromagnetism in Physics Research [Elective] Some of the above could be divided or re-organised, if needed, for proper teaching. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 6. 31 October 2011 5 2b. Books 1. Introduction To Electrodynamics, 3/E D J Griļ¬ƒths Publisher: Ubs-Bangalore, Price Approx Rs 250. 2. Foundations of Electromagnetic Theory , 3/E J. R. Reitz, F. J. Milford, R. W. Christy Publisher: Narosa, Price Approx Rs 250. 4/E, Publisher: Pearson Educational, Price Approx Rs 400. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 7. 31 October 2011 6 3a. Remarks on Methodology ā€¢ Need to lay greater stress on problem solving than merely proving laws/theorems and covering standard situations. ā€¢ Use of graphical teaching aids (accurate, well-drawn, and imaginative diagrams) will enormously beneļ¬t students in the early sessions. ā€¢ Necessary mathematics should be introduced as need arises; if introduced as a pre-requisite, it becomes too abstract and uninteresting for most students. ā€¢ Also keep in mind that analogies helpful only up to a point; misleading when taken too far. ā€¢ Historical perspective is often helpful. Should be given to improve clarity, not to present the chronology of the development of the subject. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 8. 31 October 2011 7 3b. Diļ¬ƒculties faced in studying EM Vector nature of the EM ļ¬elds make the equations and mathematics diļ¬ƒcult (requires substantial leap of imagination and mathematical skill on part of the student). Most student are ill-equipped to appreciate the nuances of vectors and symmetries. Need to stress symmetries in a problem/situation and exploiting the symmetries to simplify problems. The concept of a ļ¬eld takes time to digest. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 9. 31 October 2011 8 4a. Electrostatics (vacuum, free charges) Coulombā€™s Law, Force between several particles ā€“ vector addition. Concept of a source charge and a test charge, electric ļ¬eld, vector nature of the electric ļ¬eld (discuss scalar and vector ļ¬elds with examples), spherical symmetry, breaking of a spherical symmetry. Calculation of electric ļ¬eld due to simple charge distributions (integral method, exploiting symmetries) Work done by a moving charge, path independence, concept of a gradient, potential energy, conservative and non-conservative ļ¬eld. Divergence of a vector ļ¬eld, Line integral, Surface integral, Gauss divergence theorem, rotational vector ļ¬elds, curl of a vector, Stokes theorem. Charge distributions and application of Gaussā€™ Law to calculate ļ¬elds. Force and Torque between dipole/monopole and dipole/dipole. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 10. 31 October 2011 9 4a. Electrostatics (in continuous media) Capacitance and dielectric constant, conductors and insulators, microscopic view of dielectrics, dipole moment, polarization. Gausss law in dielectric media, electric displacement, the three electric vectors E , D, P . Boundary conditions at a dielectric surface, polarizability and susceptibility. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 11. 31 October 2011 10 4b. Magnetostatics Origin of B (naturally occurring magnetism). Magnetic eļ¬€ects of steady current: Lorentz force, magnetic force on a current carrying conductor. Amperes circuital law, application of the law, the Biot-Savart Law and its applications. Magnetic properties of a small current loop, current loop in an external magnetic ļ¬eld. Magnetization, Magnetic pole density, magnetic intensity, the relation between H, B, M. Magnetic properties of materials, types of magnets, hysteresis in ferromagnetic materials, permeability, remnance. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 12. 31 October 2011 11 4c. Electromagnetic Fields of moving charges Lorentz force on a charge moving in combined E and B ļ¬elds. Force in a co-moving reference frame. Interchangeability of forces due to E and B separately in diļ¬€erent frames of reference. Relativistic Transformation Time varying ļ¬elds ā€“ Faradayā€™s Law, Charge conservation and Displacement Current. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 13. 31 October 2011 12 4d. Maxwellā€™s Equations and Electromagnetic Waves Maxwellā€™s Equations. Propagation of time varying electromagnetic ļ¬elds, wave equation. Boundary conditions and their implications to wave propagations ā€“ refraction, diļ¬€raction This course will have pre-requisites Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 14. 31 October 2011 13 4e. Current Electricity and Circuits Simple circuits, concepts of currents, potential drop, resistance, capacitance and inductance. Circuit theorems. DC and AC circuits, inductive, capacitive and resistive loads. Losses in circuits. Mechanical eļ¬€ects of current: heat and motion, electromotive applications (motors and genertors). Generation and transmission of electric power. This course will have pre-requisites Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 15. 31 October 2011 14 4f. Application of electromagnetism in Physics Research Creation and manipulation of charged particles (ion and electron sources) Creation of electric and magnetic ļ¬elds Acceleration of charged particles (DC and RF accelerator designs) Generation and conļ¬nement of plasmas Atmospheric Physics: Ionospheric processes, probing of the atmosphere by radio waves, propagation of radio waves in the atmosphere etc. Radio Communication: ā€œwindowsā€ in the atmosphere, design of antennas, and radars, communication using EM waves Electron Microscopy, Hall Probes, NMR This course will have pre-requisites Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 16. 31 October 2011 15 5. Electrostatics : A viewpoint Coulombā€™s Law ā€“ 1/r 2 behaviour, stress on the direction of the force. Concept of a source charge and a test charge ā€“ convey that the force is always radial ā€“ idea of a ļ¬eld ā€“ vector nature of the ļ¬eld. Lines of force. Various coordinate systems ā€“ usefulness of diļ¬€erent systems in diļ¬€erent situations. Go over from the ļ¬eld due to a point charge to that due to two charges, due to a line charge etc. Underline the symmetry of the problem and hence the eļ¬ƒcacy of a particular coordinate system ā€“ link between a symmetry and redundancy of one or more coordinates in the description of the ļ¬eld. Calculation of the electric ļ¬eld for simple charge distributions. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 17. 31 October 2011 16 5. Electrostatics : A viewpoint Vector integration ā€“ introduce diļ¬€erential length, area, volume elements in various coordinate systems. Stress the diļ¬€erence between ļ¬eld point and source point, e.g. r Ė† Ļ(r ) (Ė† āˆ’ r ) d 3r E= V |r āˆ’ r |2 Simpliļ¬cation of the ļ¬eld calculation ā€“ introduce the electric potential (ļ¬rst for a point charge then for a collection of charges) ā€“ either from the point of view of work done in moving a test charge, or merely as a mathematical device. Equipotential surface, ļ¬eld lines, concept of a gradient (to be shown geometrically/pictorially) Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 18. 31 October 2011 17 5. Electrostatics : A viewpoint (Mathematical) properties of vectors ļ¬elds, signiļ¬cance of 1/r 2 nature of the electrostatic force. Gaussā€™ Law, Laplace Equation, Poisson Equation. Application of Gaussā€™ Law to calculation of electric ļ¬eld and to obtain boundary conditions. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL
  • 19. 31 October 2011 18 Summary Break-up the electromagnetic theory topics into a few mandatory and few elective modules. Elective modules will have pre-requisites, including some from other topics (Q.Mech, Solid State, Mechanics). Build up mathematics concurrently with the mandatory modules as per need. Stress on the vector nature, symmetries etc. Employ graphical/visual aids to teach vector analysis and properties of EM ļ¬elds. Include problem solving in all mandatory modules. Choice-based Credit Courses ā€“ Electromagnetism Bhas Bapat, PRL