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Since November 2020
Instructor since November 2020
Translated by GoogleSee original
Electrical engineering: IS (ATC - ADC -Transmit), electricity, electronics, power electronics, electrotechnics, automatic, ...
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From 46.96 $ /h
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Electrical engineering:
- Single-phase sinusoidal regime and three-phase sinusoidal regime
- transformers
- The direct current machine
- The asynchronous machine
- The synchronous machine

Power electronics:
- AC/DC converter (Rectifiers)
- DC/DC converter (Choppers)
- DC/AC converter (Inverters)
- AC/AC converter (Dimmers)

Analog and digital electronics:
- Semiconductors (diodes, transistors, etc.)
- Operational amplifiers
- analog and digital filters
- converters: CAN and CNA
- Combinational circuits and sequential circuits

Sensors and instrumentation.

Signal processing

Data transmission

Automatic:
- Concepts on automatic
- The correctors: P, PI, PID, phase advance, phase delay, ...
- Regulation and servoing

Control of electrical machines:
- Direct current machine control
- Control of the asynchronous machine
- Control of the synchronous machine

Industrial automation and IT
Location
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At student's location :
  • Around Mohammedia, Morocco
  • Around Rabat, Morocco
  • Around Settat, Morocco
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Online from Morocco
About Me
- Associate professor of industrial sciences for engineers - electrical engineering in preparatory classes for Grandes Ecoles (CPGE).

- State engineer in electrical engineering and telecommunications.

- PHD in the energy and electrical systems laboratory at ENSEM.
Education
2021 – Now PHD in the energy and electrical systems laboratory at ENSEM
2017 – 2019 Preparation cycle for aggregation in Electrical Engineering
2012 – 2015 State engineer diploma in Electrical Engineering & Telecommunications (GET) option networks and electrical controls
2009 – 2012 Bachelor of Science and Technology in Electronics and Computer Science (EI)
2008 – 2009 Baccalaureate mathematical sciences series -A-
Experience / Qualifications
Electrical engineering teacher at Anacours
Engineering science teacher at OmegaCours
trainer within the Moroccan social construction site association
Age
Teenagers (13-17 years old)
Adults (18-64 years old)
Student level
Beginner
Intermediate
Advanced
Duration
60 minutes
90 minutes
120 minutes
The class is taught in
French
English
Reviews
Availability of a typical week
(GMT -05:00)
New York
at teacher icon
Online via webcam
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At student's home
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
Electrostatic:
- Coulomb's law
- The electrostatic field
- Electrostatic potential
- Gauss's theorem
- Drivers in balance
- Capacitors
- Electrostatic energy

Magnetostatic:
- Magnetic force (Lorentz force)
- Laplace force
- Law of Biot and Savart
- Magnetic flux
- Ampère's theorem
- The vector potential

Electrokinetics:
- Concept of electric current and electric voltage
- Ohm's law
- generators and receivers
- Kirchhoff's laws (law of meshes, law of knots)
- Millman's theorem
- Superposition theorem
- Thévenin's theorem
- Norton's theorem
Read more
Similar classes
arrow icon previousarrow icon next
verified badge
Abdallah
By being an engineer who has experienced all the possibilities of stress that a student can encounter when understanding it, a teacher who has encumbered an experience for years, I have developed teaching and efficient methods in order to better explain to my students.
For me, a student needs a logical explanation of things and a personalized follow-up in order to be able to better advance and develop their own skills.

Distance courses:
-----------------------------------
I can give distance lessons perfectly since I have a tablet on which I can work in the same way as if it were a notebook. The student can see everything I do live through screen sharing, and all they need is to use a computer. At the end of the course, I send him a copy of all the work done, which allows me to make sure that he has kept a clean record of the course spent together.

Domains :
-------------------------------------------------- ------------------

* Analog electronic:
-------------------------------------------
- Semiconductor and PNP Junction
- Diodes and transistors
- Bipolar transistors and JFET (Static and dynamic analysis)
- Operational amplifier in linear and non-linear mode
- Frequency analysis (Bode, Nichols, Nyquist diagram ...)
- Analog filtering
- Analog Oscillator
- Converters: CAN and CNA
- Modulation
- Differential amplifier
- ...

* Electrical engineering:
--------------------------------
- Single-phase network
- Three-phase network
- Coil and magnetic circuit
- Single-phase and three-phase transformers
- Direct current machine (MCC)
- Asynchronous Machine (MAS)
- Synchronous Machine (MS)
- Speed variators
-....

* Power electronics:
----------------------------------------------
- Choppers
- Rectifiers
- Inverters
- Dimmers
- Speed variator
-....

* Digital Electronics:
-------------------------------------------
- Boolean algebra
- Combinatorial systems
- Sequential systems
- Counters and decounters
- Registers and memories
- ....

* Industrial Automation:
----------------------------------------
- Grafcet and GEMMA
- State graph / state diagram
- Programmable controllers (Siemens, Schnieder ...)
- Programmable circuits (Microcontrollers, arduino ...)
-....

* Linear automatic - Servo-control and regulation:
-------------------------------------------------- -----------------------------------
- Laplace transformation
- Transfer function
- Functional diagrams
- Dynamic performance of linear systems: Speed, Precision and Stability
- The correctors: P, PI, PID, phase advance, phase delay, ...
- Regulation and servoing
- Digital servo
-....

-------------------------------------------------- ---------------
Additional Information
Zoom or Google meet
Whiteboard

Anyway, I'll be there to help you move forward and love this area more.
Are you ready to experience this learning adventure with me?
verified badge
Khalil
Electrical engineering courses provide an in-depth understanding of concepts and applications related to electricity, electronics, and power systems. Here is a general description of typical courses that one may encounter during an electrical engineering program:

Electrical Circuits: This course is often the starting point and covers the basics of electrical circuits, including Kirchhoff's laws, direct current (DC) and alternating current (AC) circuit analysis, and the use calculation tools like resistors, capacitors and coils.

Analog and Digital Electronics: Students learn to design, analyze and solve problems related to electronic circuits, both analog and digital. This includes integrated circuit design, amplifiers, meters, microcontrollers, and much more.


Power Electronics: It focuses on the conversion, control, and distribution of electrical energy, including power converters, variable frequency drives, and uninterruptible power supplies (UPS).

Automation and Control: Students learn to design automatic control systems, using methods such as feedback theory, dynamic systems modeling, PID controllers, and real-time control system design.

Electricity and Energy: This course explores the generation, distribution, and management of electrical energy, including power grids, renewable energy, energy storage systems, and energy conservation.

Embedded Systems: It covers the design and programming of embedded systems, often used in applications such as automotive, aerospace, and consumer electronics.

Design Projects: Many programs include design projects where students apply their knowledge to solve real-world problems by designing electrical and electronic systems.
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Contact Souhail
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Similar classes
arrow icon previousarrow icon next
verified badge
Abdallah
By being an engineer who has experienced all the possibilities of stress that a student can encounter when understanding it, a teacher who has encumbered an experience for years, I have developed teaching and efficient methods in order to better explain to my students.
For me, a student needs a logical explanation of things and a personalized follow-up in order to be able to better advance and develop their own skills.

Distance courses:
-----------------------------------
I can give distance lessons perfectly since I have a tablet on which I can work in the same way as if it were a notebook. The student can see everything I do live through screen sharing, and all they need is to use a computer. At the end of the course, I send him a copy of all the work done, which allows me to make sure that he has kept a clean record of the course spent together.

Domains :
-------------------------------------------------- ------------------

* Analog electronic:
-------------------------------------------
- Semiconductor and PNP Junction
- Diodes and transistors
- Bipolar transistors and JFET (Static and dynamic analysis)
- Operational amplifier in linear and non-linear mode
- Frequency analysis (Bode, Nichols, Nyquist diagram ...)
- Analog filtering
- Analog Oscillator
- Converters: CAN and CNA
- Modulation
- Differential amplifier
- ...

* Electrical engineering:
--------------------------------
- Single-phase network
- Three-phase network
- Coil and magnetic circuit
- Single-phase and three-phase transformers
- Direct current machine (MCC)
- Asynchronous Machine (MAS)
- Synchronous Machine (MS)
- Speed variators
-....

* Power electronics:
----------------------------------------------
- Choppers
- Rectifiers
- Inverters
- Dimmers
- Speed variator
-....

* Digital Electronics:
-------------------------------------------
- Boolean algebra
- Combinatorial systems
- Sequential systems
- Counters and decounters
- Registers and memories
- ....

* Industrial Automation:
----------------------------------------
- Grafcet and GEMMA
- State graph / state diagram
- Programmable controllers (Siemens, Schnieder ...)
- Programmable circuits (Microcontrollers, arduino ...)
-....

* Linear automatic - Servo-control and regulation:
-------------------------------------------------- -----------------------------------
- Laplace transformation
- Transfer function
- Functional diagrams
- Dynamic performance of linear systems: Speed, Precision and Stability
- The correctors: P, PI, PID, phase advance, phase delay, ...
- Regulation and servoing
- Digital servo
-....

-------------------------------------------------- ---------------
Additional Information
Zoom or Google meet
Whiteboard

Anyway, I'll be there to help you move forward and love this area more.
Are you ready to experience this learning adventure with me?
verified badge
Khalil
Electrical engineering courses provide an in-depth understanding of concepts and applications related to electricity, electronics, and power systems. Here is a general description of typical courses that one may encounter during an electrical engineering program:

Electrical Circuits: This course is often the starting point and covers the basics of electrical circuits, including Kirchhoff's laws, direct current (DC) and alternating current (AC) circuit analysis, and the use calculation tools like resistors, capacitors and coils.

Analog and Digital Electronics: Students learn to design, analyze and solve problems related to electronic circuits, both analog and digital. This includes integrated circuit design, amplifiers, meters, microcontrollers, and much more.


Power Electronics: It focuses on the conversion, control, and distribution of electrical energy, including power converters, variable frequency drives, and uninterruptible power supplies (UPS).

Automation and Control: Students learn to design automatic control systems, using methods such as feedback theory, dynamic systems modeling, PID controllers, and real-time control system design.

Electricity and Energy: This course explores the generation, distribution, and management of electrical energy, including power grids, renewable energy, energy storage systems, and energy conservation.

Embedded Systems: It covers the design and programming of embedded systems, often used in applications such as automotive, aerospace, and consumer electronics.

Design Projects: Many programs include design projects where students apply their knowledge to solve real-world problems by designing electrical and electronic systems.
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