Translated by Google
Electrical Circuits I, Electrical Circuits II, Digital Logic Design I, Matlab, Calculus I, Integration I, Arduino, Electrical Machines.
From 5.03 £ /h
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)
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)
Extra information
nothing
Location
At student's location :
- Around Cairo, Egypt
Online from Egypt
About Me
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
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
• 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
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
• 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
Age
Teenagers (13-17 years old)
Adults (18-64 years old)
Student level
Beginner
Intermediate
Advanced
Duration
90 minutes
120 minutes
The class is taught in
Arabic
English
Skills
Availability of a typical week
(GMT -05:00)
New York
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
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
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