Electric Circuits (1.2 CEUs)

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This course divided into two sessions each session will be for 6 hours in duration.
It will be held on February 26&27 2026. And will be held again on Aug 25&26 ,2026
This course will be offered in 2027 on the following dates: Feb 1&2 - Sep 7&8.
Note: If you register and are unable to attend, access to a recording of the session will be provided. There is a no cancellation policy.

 

Course Description

 

Units, definitions, and simple circuits. Circuit analysis techniques. Inductance and capacitance. Source-free RL and RC circuits. The application of unit-step forcing functions. The RLC circuits. The sinusoidal forcing function. The phasor concept. The phasor relationships for R, L, and C. Impedance/admittance. The sinusoidal steady state response. Circuit analysis using matlab and SPICE.
 
Objective
Provide the student with the knowledge and proficiency to analyze R/L/C circuits applying the proper technique with DC, unit-step or sinusoidal forcing functions.
 
Target Audience
Engineers who want to equivalent his/her degree in any country

 
 
 
 

 

 

Dr.Hasan Farahneh

Dr. Hasan Farahneh, PhD in Electrical and Computer Engineering, is currently an Assistant Professor at JU.
He brings over 16 years of industry experience, having contributed to major projects with leading companies in the field.
Dr. Farahneh has an extensive record of accomplishments, including successful implementation of large-scale engineering initiatives and innovative research in electrical and computer engineering. He has published more than 40 articles in reputable journals and books, reflecting  his significant contributions to both academia and industry.                                                                                                                                                                                                                                                                                                                                      
This course covers a comprehensive range of electrical engineering fundamentals, beginning with basic electrical quantities, Ohm’s law, and the differences between practical and ideal sources. It then explores the analysis and simplification of series and parallel resistive circuits, followed by the application of nodal, mesh, and other circuit analysis techniques to determine optimal solutions. Learners will study the natural response of unforced RLC circuits, apply unit-step forcing functions to determine total circuit response, and understand sinusoidal forcing functions. The course also includes analyzing RLC circuits in the frequency domain and converting solutions back to the time domain.

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