| Catatan Tambahan | Silabus singkat :
1. Persamaan Maxwell dalam bentuk integal : sistem koordinat, analisa vektor, integral vektor, hukum Coulomb, hukum Biot-Savart, hukum Lorenz, hukum Maxwell bentuk integral.
2. Persamaan Maxwell dalam bentuk differensial : vektor differensiasi, gradient, divergensi, curl dari vektor, penurunan hukum Maxwell bentuk differensial, definisi gelombang datar, konsep fasor dan real-time, persamaan gelombang datar pada ruang bebas, konsep polarisasi pada gelombang datar.
3. Persamaan Maxwell dan perambatan gelombang datar pada medium bukan ruang bebas : fenomena konduksi, polarisasi, dan magnetisasi pada material, penurunan hukum Maxwell pada material, penurunan persamaan gelombang datar pada material, konsep redamana pada gelombang datar, teorema Poynting.
4. Gelombang datar menumbuk tegak lurus pada perbatasan, kosep pantulan, pantulan pada 2 medium, multiple interfaces, penggunaan Smithchart
5. Gelombang datar menumbuk perbatasan dengan membentuk sudut sembarang, persamaan gelombang datar dengan arah rambat miring, pantulan oleh konduktor sempurna, pantulan oleh dielektrik, sudut-sudut istimewa. | Course description :
1. Maxwell's equations in integal form: coordinate system, vector analysis, vector integrals, Coulomb's law, Biot-Savart's law, Lorenz's law, Maxwell's law of integral forms.
2. Maxwell's equations in differential forms: differentiation vector, gradient, divergence, curl of vector, Maxwell's law of differential shapes, definition of flat waves, fasor and real-time concepts, flat wave equations in free space, polarization concepts in flat waves.
3. Maxwell's equation and flat-wave propagation in a medium instead of free space: the phenomenon of conduction, polarization, and magnetization in materials, Maxwell's law decreasing in materials, decreasing flat-wave equations in materials, the concept of deterrence in flat waves, Poynting's theorem.
4. Flat wave transmits perpendicular to the border, reflection concept, reflection on 2 mediums, multiple interfaces, use of Smithchart
5. Flat wave hits the boundary by forming any angle, the equation of flat wave with the direction of slanted propagation, reflection by perfect conductor, reflection by dielectric, special angles. |
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