CIRCUIT THEORY AND FIELD THEORY and its applicatiobns
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Circuit Theory:
1) This analysis is originated by its own.
2) Applicable only for portion of radiofrequency range.
3) It is dependent and independent parameter, I and V are directly obtained from the given circuit.
4) Parameters of medium are not involved.
5) Laplace Transform is employed.
6) Z, Y and H parameters are used.
7) Low power is involved.
8) Simple to understand.
9) 2 Dimensional analysis.
10) Frequency is used for reference.
11) Lumped components are used.
Field Theory:
1) Evolved from transmission ratio.
2) Not applicable for portion of radiofrequency range.
3) Not directly obtained from E and H.
4) Parameters (Permeability and Permitiviy) are analysed in the medium.
5) Maxwell's equation is used.
6) S parameter is used.
7) High Power is involved.
8) Needs visualisation effect.
9) 3 Dimensional analysis.
10) Wavelength is used as reference.
11) Distributed components are used.
1) This analysis is originated by its own.
2) Applicable only for portion of radiofrequency range.
3) It is dependent and independent parameter, I and V are directly obtained from the given circuit.
4) Parameters of medium are not involved.
5) Laplace Transform is employed.
6) Z, Y and H parameters are used.
7) Low power is involved.
8) Simple to understand.
9) 2 Dimensional analysis.
10) Frequency is used for reference.
11) Lumped components are used.
Field Theory:
1) Evolved from transmission ratio.
2) Not applicable for portion of radiofrequency range.
3) Not directly obtained from E and H.
4) Parameters (Permeability and Permitiviy) are analysed in the medium.
5) Maxwell's equation is used.
6) S parameter is used.
7) High Power is involved.
8) Needs visualisation effect.
9) 3 Dimensional analysis.
10) Wavelength is used as reference.
11) Distributed components are used.
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