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ELECTROMAGNETIC FIELD THEORY |
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Unit |
Name of Topics |
No. of lecture |
Books |
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1 |
Review of vector analysis |
1 |
B1/Ch1 |
2 |
Rectangular, Cylinder and their transformation |
2 |
B1/Ch1 |
3 |
Spherical coordinates and their transformation |
2 |
B1/Ch1 |
4 |
Divergence gradient and curv in different coordinate systems. |
3 |
B1/Ch1,B2Ch1 |
5 |
Electric field intensity |
2 |
B1/Ch1,B2Ch2 |
6 |
Electric flux density |
2 |
B1/Ch3,B2Ch2 |
7 |
Energy and potential |
3 |
B1/Ch4,B2Ch2 |
8 |
Current and conductors |
2 |
B1/Ch5,B2Ch2 |
9 |
Dielectrics and capacitance |
2 |
B1/Ch5,B2Ch2 |
10 |
Poisson’s and laplace’s equation |
1 |
B1/Ch7,B2Ch2 |
11 |
Steady magnetic field |
2 |
B1/Ch8,B2Ch2 |
12 |
Magnetic forces and materials |
1 |
B1/Ch9,B2Ch3 |
13 |
Inductance |
1 |
B1/Ch9,B2Ch3 |
14 |
Time varying field and Maxwell’s equations |
2 |
B1/Ch10,B2Ch4 |
15 |
Uniform planes waves |
3 |
B1/Ch11,B2Ch5 |
16 |
Plane wave reflection and dispersion |
3 |
B1/Ch12,B2Ch5 |
17 |
Transmission lines |
3 |
B1/Ch13,B2Ch7 |
18 |
Guided waves |
3 |
B1/Ch14,B2Ch6 |
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BI |
Hayts/Engineering Electromagnetics/TMH |
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B2 |
Raju/electromagnetics Field Theory and Transmission Lines/Pearson |
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