from18.36USD/ h
Electrical engineering fundamentals basic circuits
1. Introduction to Electrical Circuits
• Basic concepts: charge, current, voltage, and power
• Passive and active circuit elements (resistors, capacitors, inductors, sources)
• Ohm’s Law and Kirchhoff’s Laws (KVL and KCL)
2. Circuit Analysis Techniques
• Series and parallel circuits
• Voltage and current division rules
• Node voltage method
• Mesh current method
• Source transformation
• Superposition theorem
• Thevenin’s and Norton’s theorems
3. Capacitors and Inductors
• Capacitance and inductance fundamentals
• Energy storage and release in capacitors and inductors
• Transient response in RC, RL, and RLC circuits
• Initial and final value theorems
4. First and Second-Order Circuits
• Natural and forced responses
• Step response analysis
• Time constants
• Overdamped, underdamped, and critically damped systems
5. Sinusoidal Steady-State Analysis
• AC sources and phasor representation
• Impedance and admittance
• AC circuit analysis using phasors
• Power in AC circuits: real, reactive, apparent power, and power factor
6. Frequency Response and Resonance
• Resonance in series and parallel RLC circuits
• Bandwidth and quality factor
• Bode plots (optional or advanced)
7. Three-Phase Circuits (Introductory Level)
• Star and Delta configurations
• Line and phase quantities
• Balanced three-phase power calculations
8. Circuit Simulation and Practical Applications
• Use of simulation tools such as PSPICE, Multisim, or MATLAB/Simulink
• Real-world applications and circuit design examples
• Basic concepts: charge, current, voltage, and power
• Passive and active circuit elements (resistors, capacitors, inductors, sources)
• Ohm’s Law and Kirchhoff’s Laws (KVL and KCL)
2. Circuit Analysis Techniques
• Series and parallel circuits
• Voltage and current division rules
• Node voltage method
• Mesh current method
• Source transformation
• Superposition theorem
• Thevenin’s and Norton’s theorems
3. Capacitors and Inductors
• Capacitance and inductance fundamentals
• Energy storage and release in capacitors and inductors
• Transient response in RC, RL, and RLC circuits
• Initial and final value theorems
4. First and Second-Order Circuits
• Natural and forced responses
• Step response analysis
• Time constants
• Overdamped, underdamped, and critically damped systems
5. Sinusoidal Steady-State Analysis
• AC sources and phasor representation
• Impedance and admittance
• AC circuit analysis using phasors
• Power in AC circuits: real, reactive, apparent power, and power factor
6. Frequency Response and Resonance
• Resonance in series and parallel RLC circuits
• Bandwidth and quality factor
• Bode plots (optional or advanced)
7. Three-Phase Circuits (Introductory Level)
• Star and Delta configurations
• Line and phase quantities
• Balanced three-phase power calculations
8. Circuit Simulation and Practical Applications
• Use of simulation tools such as PSPICE, Multisim, or MATLAB/Simulink
• Real-world applications and circuit design examples
Extra information
NoLocation
Online via webcam
General info
Age: | Children (7-12 years old) Teenagers (13-17 years old) Adults (18-64 years old) Seniors (65+ years old) |
---|---|
Student level: | Beginner Intermediate Advanced |
Duration: | 60 minutes |
The class is taught in: | Arabic, English |
About Me
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I am an experienced electrical engineering teacher passionate about helping students understand complex concepts with clarity and practical examples. With a strong background in both theory and hands-on applications, I strive to make learning engaging and accessible. I focus on building a solid foundation in electrical circuits, power systems, and electronics, while encouraging critical thinking and problem-solving skills. My goal is to support each student's progress and prepare them for real-world engineering challenges.Education
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Cairo/Electrical power/PHD/ GPA3.95• Over 10 years of teaching experience in higher education, delivering core and advanced courses such as Electrical Circuits, Power Systems, Electrical Machines, Renewable Energy Systems, and Control Systems
• Extensive experience in supervising undergraduate and postgraduate research projects in various fields of electrical engineering
• Strong background in simulation and analysis tools such as MATLAB/Simulink, PSCAD, ETAP, and AutoCAD Electrical
• Proven ability to design and conduct practical lab sessions, bridging the gap between theory and real-world applications
• Published multiple research papers in peer-reviewed journals and international conferences in the field of electrical engineering
• Dedicated to fostering a supportive and interactive learning environment that encourages student engagement and academic growth
• Regular participant in professional development programs, seminars, and engineering education workshops to stay updated with the latest teaching methodologies and technological advancements
• Excellent communication skills, with a clear and structured approach to explaining complex engineering concepts
• Passionate about inspiring the next generation of engineers through innovative teaching and mentorship
Experience / Qualifications
Translated by Google. Click to view original.
PhD in Electrical Engineering• Over 10 years of teaching experience in higher education, delivering core and advanced courses such as Electrical Circuits, Power Systems, Electrical Machines, Renewable Energy Systems, and Control Systems
• Extensive experience in supervising undergraduate and postgraduate research projects in various fields of electrical engineering
• Strong background in simulation and analysis tools such as MATLAB/Simulink, PSCAD, ETAP, and AutoCAD Electrical
• Proven ability to design and conduct practical lab sessions, bridging the gap between theory and real-world applications
• Published multiple research papers in peer-reviewed journals and international conferences in the field of electrical engineering
• Dedicated to fostering a supportive and interactive learning environment that encourages student engagement and academic growth
• Regular participant in professional development programs, seminars, and engineering education workshops to stay updated with the latest teaching methodologies and technological advancements
• Excellent communication skills, with a clear and structured approach to explaining complex engineering concepts
• Passionate about inspiring the next generation of engineers through innovative teaching and mentorship
Teaching assistant at the Department of Electrical Engineering, Faculty of Engineering, Cairo University, and a former teacher at Notatee Kuwait, with two years of university teaching experience
I can help you explain and solve issues related to the branches of electrical engineering (electrical machines - energy conversion - renewable energy - electronic circuits - mechatronics - electrical circuits - high voltage - electrical protection - electrical forces - automatic control - MATLAB - ETAP - Arduino - Pscad -Protues - Tinkercad - Labview - Revit)
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from $18.36Online via webcam
100% Satisfaction Guarantee
Good-fit Instructor Guarantee
If you are not satisfied after your first lesson, Apprentus will find you another instructor or will refund your first lesson.
Online reputation
- Instructor since September 2021
- Phone number verified
- Google connected
Availability of a typical week
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from $18.36Online via webcam
Good-fit Instructor Guarantee
If you are not satisfied after your first lesson, Apprentus will find you another instructor or will refund your first lesson.
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