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Engineering
Electrical Engineering
RF and Microwave Engineering
1. Foundations of RF and Microwave Engineering
2. Transmission Line Theory
3. Waveguide Theory and Analysis
4. Microwave Network Analysis
5. Passive RF and Microwave Components
6. Active RF and Microwave Components
7. Antennas and Wave Propagation
8. RF and Microwave Systems
9. RF and Microwave Measurement Techniques
10. Advanced Topics in RF and Microwave Engineering
3.
Waveguide Theory and Analysis
3.1.
Rectangular Waveguides
3.1.1.
Structure and Coordinate System
3.1.2.
Mode Analysis
3.1.2.1.
TE Modes
3.1.2.2.
TM Modes
3.1.2.3.
Mode Designation
3.1.3.
Cutoff Frequency
3.1.3.1.
Dominant Mode
3.1.3.2.
Higher-Order Modes
3.1.4.
Field Patterns
3.1.4.1.
Electric Field Distribution
3.1.4.2.
Magnetic Field Distribution
3.1.5.
Propagation Characteristics
3.1.5.1.
Phase Velocity
3.1.5.2.
Group Velocity
3.1.5.3.
Guide Wavelength
3.1.6.
Power Flow and Losses
3.1.6.1.
Power Transmission
3.1.6.2.
Attenuation Mechanisms
3.1.7.
Impedance Concepts
3.1.7.1.
Wave Impedance
3.1.7.2.
Characteristic Impedance
3.2.
Circular Waveguides
3.2.1.
Structure and Coordinate System
3.2.2.
Mode Analysis
3.2.2.1.
TE Modes
3.2.2.2.
TM Modes
3.2.2.3.
Mode Designation
3.2.3.
Cutoff Frequencies
3.2.4.
Field Patterns
3.3.
Waveguide Components
3.3.1.
Waveguide Transitions
3.3.2.
Bends and Twists
3.3.3.
Waveguide Flanges
3.3.4.
Waveguide Windows
3.3.5.
Waveguide Attenuators
3.3.6.
Waveguide Phase Shifters
3.4.
Cavity Resonators
3.4.1.
Rectangular Cavity Resonators
3.4.1.1.
Resonant Modes
3.4.1.2.
Quality Factor
3.4.2.
Circular Cavity Resonators
3.4.3.
Cavity Coupling
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2. Transmission Line Theory
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4. Microwave Network Analysis