Microwave #2. The Physics Behind Radio Freq: Gauss, Faraday & Ampere’s Laws That Changed Everything @technologiesdiscussion1676
Microwave #2. The Physics Behind Radio Freq: Gauss, Faraday & Ampere’s Laws That Changed Everything  @technologiesdiscussion1676
Uploaded June 2025 | Updated September 2026, 1 week ago
Microwave Engineering playlist.
youtube.com/watch?v=09n9ZyErKCI&list=PLFxhgwM1F4yyiTGc8ovO4Zqzs67lhEE-_

For access to this presentation materials, membership is required: I need the Material PPT
Sent me an email to Technologies.Discussion@gmail.com
If you need the whole playlist material, send me email and we discuss.
Give me some time to response. Thanks.

Microwave #2. Maxwell’s Equations Explained SIMPLY: Gauss, Faraday & Ampere’s Law for All to Know.
Microwave #2. Maxwell’s Equations EXPLAINED (Gauss, Faraday, Ampere) Easiest Breakdown for Beginner!
Microwave #2. Maxwell's Equations (Gauss: Electric & Magnetic Field, Faraday & Ampère Law) Explained

Maxwell's equations are a set of four fundamental laws that describe how electric and magnetic fields interact and propagate. They form the foundation of classical electromagnetism, optics, and electric circuits, and even lead to the prediction of electromagnetic waves (like light). Here they are in both integral and differential forms:

1. Gauss’s Law for Electricity
Describes how electric charges produce electric fields.

2. Gauss’s Law for Magnetism
States that there are no "magnetic charges" (monopoles).

3. Faraday’s Law of Induction
Describes how a changing magnetic field induces an electric field.

4. Ampère’s Law (with Maxwell’s Correction)
Describes how electric currents and changing electric fields produce magnetic fields.
Microwave #2. The Physics Behind Radio Freq: Gauss, Faraday & Ampere’s Laws That Changed EverythingAntenna Radiation Pattern: Why 3D Makes Patterns Easier to Visualize While 2D Better Reveals GainStep-by-Step Guide: Converting S-Parameters to ABCD Parameters & Vice Versa for Cascaded Circuits.FSK: Frequency Shift Keying. Digital Data is Transmitted by Changing the Freq of a Carrier.Multiple Access #1. Transmission Modes Made Simple: A Guide to Simplex, Half Duplex & Full Duplex.Disadvantage of Higher Modulation Schemes (QPSK, 16PSK, QAM): Reduced Noise Immunity & Sensitivity.EMC #71. Transient Immunity (IEC / EN 61000-4-4): Electrical Fast Transient EFT/ Burst Immunity TestFreq Modulation #5. How to Use Carson’s (Approximate) & Bessel Functions to Calculate Bandwidth.3 Parameters (Absorption + Reflection + Multiple Reflection) Controlling EMC Shielding EffectivenessSatellite Bands: 1) L-Band, 2) S-Band, 3) C-Band, 4) X-Band, 5) Ku-Band, 6) Ka-Band & 7) V-BandWhy Dipole Antenna Needs to be λ/2 Half Wavelength | Standing Wave Radiation Pattern Explained.Wire @ DC (Perfect Short Circuit). Wire @ AC (High Freq) not Longer Short Circuit at Microwave Freq.
Technologies Discussion |

Microwave #2. The Physics Behind Radio Freq: Gauss, Faraday & Ampere’s Laws That Changed Everything

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER