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CZECH TECHNICAL UNIVERSITY IN PRAGUE
STUDY PLANS
2011/2012

Electromagnetic Field

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Code Completion Credits Range Language
AD1B17EMP Z,ZK 5 14+6s Czech
Lecturer:
Zbyněk Škvor, Jan Macháč (gar.)
Tutor:
Zbyněk Škvor, Jan Macháč (gar.), Vítězslav Pankrác
Supervisor:
Department of Electromagnetic Field
Synopsis:

This course gets its students acquinted with principles and applied electromagnetic field theory basics.

Requirements:

http://www.elmag.org/doku.php/k317:tep

Syllabus of lectures:

1. Basic principles, field soutces. Electrostatic field around charged balls, planes and lines

2. Potential, voltage, forces in homogeneous as well as inhomogeneous electric field. Interface between two dielectrics. Capacity.

3. Field superposition. Energy and forces.

4. Potential, voltage, power in homogeneous as well as inhomogeneous current field.

5. Stationary magnetic field, Amper's law, self and mutual inductance.

6. Interfaces between different media - relations between tangential and normal field components. Numerical electromagnetics.

7. Work, energy and force in magnetic field. Internal inductance of conductors.

8. Magnetic circuits, Hopkinson law.

9. Quasistationáry magnetic field, Faraday induction law.

10. Nonstationary field, complete system of Maxwell equations, power bilance.

11. Electromagnetic waves, plane harmonic wave.

12. Harmonic wave in arbitrary media, electric skin effect, heating.

13. Magnetic skin effect

14. Electromagnetic waves in communication - overwiev.

Syllabus of tutorials:

1. Scalar and vector fields, potential, field around a charged ball.

2. Electrostatic field. Capacitor comprising of two dielectrics. Capacity calculus for non-homogenous field.

3. Field analysis miking use of superposition. Task 1.

4. Current field, homog. and non-homog. Task 2

5. Analysis of magnetic fields. Determination of inductance.

6. Laboratory. Task 3.

7. Laboratory. Task 4.

8. Magnetic field analysis using Biot-Savart law.

9. Induced voltage. Task 5.

10. Magnetic forces, principle of virtual work.

11. Plane harmonic electromagnetic wave.

12. Harmonic wave in lossy media, skineffect, surface resistivity. Task 6.

13. Skineffect - magnetic sheet.

14. Task assesment.

Study Objective:

Basic understanding of electromagnetic effects, quantitative estimation of effects, ability to solve simple fields analytically, understanding of numerical electromagnetic field solver principles.

Study materials:

[1] Collin, R.E.: Field Theory of Guided Waves. 2nd Edit., IEEE Press, New York 1991

[2] Sadiku, M.N.O.: Elements of Electromagnetics. Saunders College Publishing. London, 1994

Note:
Time-table for winter semester 2011/2012:
06:00–08:0008:00–10:0010:00–12:0012:00–14:0014:00–16:0016:00–18:0018:00–20:0020:00–22:0022:00–24:00
Mon
Tue
Fri
roomT2:E1-105
Macháč J.
15:15–16:00
EVEN WEEK

(lecture parallel1)
Dejvice haly
Laborator
Thu
Fri
Time-table for summer semester 2011/2012:
Time-table is not available yet
The course is a part of the following study plans:
Generated on 2012-7-9
For updated information see http://bilakniha.cvut.cz/en/predmet12584604.html