Sinusoidal signals
0.00%
Basic Parameters of Sinusoidal Signals
0.00%
Leading and Lagging Signals
0.00%
eLi the iCe Man is CIVIL
0.00%
Signal Delay on Transmission Lines
0.00%
Engineering Design
0.00%
Complex numbers
0.00%
Review of Complex Numbers
0.00%
Operations with Complex Numbers
0.00%
Euler’s Formula
0.00%
Phasors
0.00%
Review of Phasors
0.00%
Kirchoff’s Laws
0.00%
Example of circuit analysis with phasors
0.00%
Waves on Transmission Lines
0.00%
Types of Transmission Lines
0.00%
Wave Equation
0.00%
Visualization of waves on lossless transmission lines
0.00%
Propagation constant and loss
0.00%
Transmission Line Impedance
0.00%
Reflection Coefficient
0.00%
Input impedance of a transmission line
0.00%
Forward voltage on a transmission line
0.00%
Traveling and Standing Waves
0.00%
Example Transmission Line Problem
0.00%
Smith Chart
0.00%
Smith Chart
0.00%
Impedance and admittance circles on the Smith Chart
0.00%
Impedance and Admittance on Smith Chart
0.00%
Electrical Length
0.00%
Input Reflection Coefficient and Impedance on Smith Chart
0.00%
Impedance Matching
0.00%
Power
0.00%
Power Transfer on a transmission line
0.00%
Simple impedance matching case
0.00%
Mixed Impedance Matching
0.00%
Transmission-line impedance matching
0.00%
Lumped element impedance matching
0.00%
Electrostatics
0.00%
Electrostatic Force
0.00%
Electrostatic Field
0.00%
Electrostatic Potential
0.00%
Electrostatic fields from distributed charges
0.00%
Calculation of electric field using Gauss’s Law
0.00%
Electrostatic Boundary Conditions
0.00%
Capacitance
0.00%
Method of images
0.00%
Magnetostatics
0.00%
Charged particles in static electric and magnetic fields
0.00%
Force on Conductors
0.00%
Force on Conductors
0.00%
Biot-Savart’s Law
0.00%
Ampere’s Law
0.00%
Inductance
0.00%
Changing electromagnetic fields
0.00%
Faraday’s Law
0.00%
Lenz’s Law
0.00%
Transformers
0.00%
Magnetic Coupling
0.00%
Flying ring
0.00%
Falling Magnet
0.00%
Voltage droop
0.00%

Overall
0%

https://ximera.osu.edu/certificate/H4sIAAAAAAACA2WMwQoCIRRFfyVcN%2FoUdcp99AO1aSf6CmEcwacQRP%2BerltduOfc%2B2G7z8gcu3akdrgTVnZkfYZj75Sxel6oc4xdzJaEPYeo7GoApNLGPvUoThbXMYu%2BzSsFyi6gF5A3qR1Ypw3XRj6GEUqvNB2BWeCGodWS%2FWvHlgIN3lLbJr78IwqlDgTfH7TuWJKzAAAA/XWY6%2F7IYZvpPCpuTjiBx8GrkycJw5yfYkjuRGDk46y3N6S%2B9CKgje%2B0rco7b0fqf%2B%2FrdxJE9XT3jz2O6XFFEdS5NRJ3hWzdQoKgRnotIljEO1m%2BqFDnVsFFUvjOPICCFbb0zg9TimhKEdsqg7wRWuFm63hmTc8rOvJKYNeo5YiGupJvJldRtphxnaBT%2BUck%2BVp0ET%2BAEcmwptAzvoz%2BR8VZ9vi0%2FBnp%2BRHqhiS%2FTByma312dIQr4bYjQBdmKFGtnjCBidPPsIxZTFPBIWIBp1GpGDJdSQWZQQBoyVUwlF6pyycWx3AN%2Beye9IcsX9yvNzqeGhgG4JeB2uLdhBj3Utg%3D%3D