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Since February 2021
Instructor since February 2021
Translated by GoogleSee original
Electrical and Electronics Engineering, Microcontroller Projects
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From 26 C$ /h
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Teaching electrical and electronic engineering subjects through examples and practical explanations
Examples of subjects that I can teach in Arabic and English:
Microcontroller - Arduino - Embedded System - Electrical Machine - Power Electronics - Digital System Design - Digital Circuit - Programming in C
And some other core subjects for electrical and electronic engineering major


I am able to teach the Electrical and Electronics Engineering Subject with practical examples, some courses that I can teach:
Microcontroller - Embedded System - Electrical Machine - Power Electronics - Digital System Design - Digital Circuit - Programming in C.
Location
location type icon
Online from Turkey
About Me
- I emphasize that the student understands the basic idea and the process not just memorization without understanding
- Simplification method for understanding the concept
- A cooperative and understanding personality of students' levels
Education
Bachelor of Electrical and Electronics Engineering - 7 years of experience in teaching electrical and electronics engineering in the practical section in the academic field - Supervising graduation projects for electrical and electronic engineering students
Experience / Qualifications
7 years experience in teaching electrical and electronics engineering in the practical department in the academic field - Supervising graduation projects for electrical and electronic engineering students
Age
Teenagers (13-17 years old)
Adults (18-64 years old)
Student level
Beginner
Intermediate
Advanced
Duration
30 minutes
45 minutes
60 minutes
90 minutes
120 minutes
The class is taught in
Arabic
English
Reviews
Availability of a typical week
(GMT -04:00)
New York
at teacher icon
Online via webcam
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
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Do you dream of mastering the art of electronic design, advanced programming and creating awesome robots? Do not look any further ! I offer personalized courses that will guide you into the exciting world of engineering, with an emphasis on electronics, programming and robotics.

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I'm actively supporting students from top universities worldwide, including:

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• Imperial College London (+ Business School) (ICL)
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• King’s College London (KCL)

The Netherlands:
• Delft University of Technology (TUDelft)
• University of Amsterdam (UvA)
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Switzerland:
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Australia:
• Queensland University of Technology (QUT)
• University of Queensland (UQ)
• Griffith University
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My name is Anh, and I was born and raised in the U.K. With over 10 years of international experience tutoring Maths, Sciences, and Engineering from Middle School to University Level, I’ve supported over 80 students worldwide in unlocking their full potential.

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* Voltage, current, power, efficiency
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* Solution of resistance networks with resistors in parallel and in series
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* Analog-to-digital and digital-to-analog conversion of signals
* Signal sampling, Nyquist theorem, aliasing, quantization
* Fourier Theorem and Transformation
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* Fourier-based analysis and synthesis of signals
* Passive and active filters
* LTI systems, folding
* Laplace, impedance, transfer function, frequency response, Bode plot
* Diode circuits
* Transistor (BJT) basic circuits
* Basic op-amp circuits
* Audio signal chain
* Microphones, preamplifiers, power amplifiers, loudspeakers
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Basics of electricity
electric current
electrical potential
The difference between power and electrical energy
Electrical resistance, its types, and methods of connection
How to calculate total resistance
How to calculate the total current in an electrical circuit and the current flowing through a branch
How to calculate the potential difference between two points
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HI, I’m Ali, an expert tutor in Electronics and Electrical Engineering with strong foundations in circuit design, simulation, and practical hardware systems.

Online lessons

If Electricity and Electronics make sense in class, but everything starts falling apart when the question becomes a real circuit, a phasor problem, an RLC response, or a simulation task, you are not alone.

Most students do not struggle because they are not capable.
They struggle because nobody has shown them how to think through the physical system properly, choose the right troubleshooting method, and present the solution with confidence.

That is exactly where I help.

WHAT MAKES MY TEACHING DIFFERENT
I do not teach Electrical Engineering, Electronics, and Circuit Theory as isolated topics.

I teach them as one connected system.

With my Electronics Engineering background and extensive hands-on experience in hardware systems design, my approach is always:

Model & Simulate

Solve & Optimise

Verify (Hardware/Software)

Improve & Troubleshoot

This means you do not just memorise formulas for one test. You learn how to approach unfamiliar engineering problems, schematic designs, and hardware constraints with structure, logic, and control.

WHO THIS PROFILE IS FOR
This profile is built for you if:

you understand parts of the topic, but struggle to connect theory to practical hardware implementation under pressure

you can follow solved textbook examples, but get stuck when starting circuit designs or simulations alone

your circuit setup, phasors, Laplace work, or PCB layouts break down mid-solution

you need technical help that is clear, structured, and highly relevant to your engineering modules or lab projects

you want a practical engineering method, not vague motivation

you want to become independent, mastering industry-standard tools instead of relying on memorised steps

WHAT YOU WILL ACTUALLY IMPROVE
I focus on the parts of Electronics and Electrical Engineering that usually decide whether a student feels in control, or completely stuck.

That includes improving how you handle:

Electrical Circuits, Mesh/Nodal Circuit Analysis, AC and DC Circuits

Phasors, complex impedance, and RLC Circuits

Circuit Simulations (Proteus, LTspice, Multisim, KiCad, Altium Designer)

Hardware Design, PCB Layout, and routing constraints

Analogue and Digital Electronics, Electronic Devices, and VLSI/SoC concepts

Signals & Systems, Signal Processing, and Control Systems block diagrams

Digital Logic Design (DLD), Boolean Algebra, K-Maps, and State Machines (FSM)

Embedded Systems, microcontrollers, and integrating Machine Learning into hardware

Applied Mathematics for Engineers, Calculus, Differential Equations, Fourier Analysis, and Laplace Transforms

WHAT I HELP STUDENTS DO
Most students come to me because they want more than a basic theoretical explanation.

They want to be able to:

read the engineering question or schematic properly

identify what the circuit or system is actually doing

choose the correct analysis method faster

set up the software simulations cleanly and debug errors

avoid common hardware and design mistakes

finish with a working layout or solution they can justify

SUBJECT AREAS I SUPPORT
My main subject support is built around:

Electronics Engineering

Circuit Design & Simulation

Electrical Engineering Foundations

Digital Logic Design

Within that, I regularly position lessons around high-value areas such as:

Circuit Analysis (AC/DC) & Phasors

PCB Layout & Hardware Prototyping

Embedded Systems & Microcontrollers

Control Systems & Signal Processing

Digital Logic Design & Digital Systems

Solid State Devices & VLSI Concepts

For students on broader technical pathways (like Mechatronics, Robotics, or Automation), I can also support connected areas like programming, sensor integration, and machine learning applications when they are part of your course demands.

HOW MY ENGINEERING BACKGROUND HELPS
My Electronics Engineering background, combined with practical industry exposure in testing labs, grid stations, and professional freelance PCB design, is useful here for one reason:

it pushes disciplined, real-world technical thinking.

Instead of rushing to formulas, I train students to understand the circuit model and software verification first. That changes everything.

It helps you see:

what the components and systems are actually doing

why one simulation tool or design choice fits better than another

where errors and noise usually enter the solution

how to verify the hardware design before moving to fabrication

That is the difference between copying worked examples and actually understanding engineering.

HOW THE SUPPORT FEELS
Students usually work well with me because the sessions are:

structured, calm, and technical

practical and focused on real design improvement

You do not get vague advice. You get direction, software walkthroughs, and a debugging method you can keep using after the lesson ends. This is especially useful for students preparing for exams, difficult university modules, lab tasks, or Final Year Projects (FYPs).

WHY THIS APPROACH WORKS
A lot of students spend hours watching tutorials, but still cannot design a circuit or solve questions independently. Passive exposure is not the same as technical control.

My goal is to make you someone who can start the question or design with confidence, move through the layout or working without panicking, and build stronger engineering performance over time.

BEFORE WE START, FIT CHECK
To make the first lesson useful from the start, send:

Level / Degree Course

Exam board or university module guidelines

Exam date, project deadline, or timeline

3 priority topics or software tools you want to master

The exact point where you get stuck

1 to 3 questions, project briefs, or screenshots
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This hands-on training pathway is designed to help students kickstart any project, specifically tailored for OT labs and industrial applications. Starting from absolute scratch, students will build a strong foundation in Python programming through practical, industry-relevant concepts.

Curriculum Outline: |
01 - Python Environment Setup & Basics |
02 - Python Variables, Numbers, Bytes & Hex |
03 - Control Flow Logic Functions |
04 - Data Structures (Lists, Tuples, Dictionaries & Sets) |
05 - String Formatting, Comprehensions & Exception Handling |
06 - File IO, Pathlib & Context Managers |
07 - Object-Oriented Programming (Classes & OOP) |
08 - Standard Library, Modules & Networking Basics |

Assessment & Evaluation:
Students will take a mini-test after the completion of each module. Additionally, an Audit & Performance Evaluation report will be sent following the tests.
Duration:
5 days to 15 days (depending on the pace of the cohort)
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COURSE OBJECTIVES AND PEDAGOGICAL APPROACH

Resumption and deepening of fundamental concepts through exercises with course reminders.

Put the student in a situation of questioning and research.

Respond to individual issues and questions

Exercise training in order to achieve real mastery of the content.

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Specific preparation for higher education requirements (in-depth content, increase in work capacity, enrichment of scientific background)

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I'm actively supporting students from top universities worldwide, including:

UK:
• Imperial College London (+ Business School) (ICL)
• University College London (UCL)
• King’s College London (KCL)

The Netherlands:
• Delft University of Technology (TUDelft)
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• Queensland University of Technology (QUT)
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My name is Anh, and I was born and raised in the U.K. With over 10 years of international experience tutoring Maths, Sciences, and Engineering from Middle School to University Level, I’ve supported over 80 students worldwide in unlocking their full potential.

I have a fun, ambitious, and outgoing personality, and I’m passionate about music, cooking, and trying new things. In my tutoring and mentoring, I am patient, adaptable, and committed to meeting the unique needs of each student.

I work as an Engineering Specialist/Consultant, holding:
• Master’s degree in Aeronautical Engineering from Imperial College London,
• AAA* A-Level in Further Maths and Physics,

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Digital electronics
Analog electronic
electromagnetism
Automatic
electrical engineering (transformers, electrical machines, switching power supply)
C / c ++ programming, Assembler, ARM, STM32
renewable energy (wind, PV)
engineering Sciences
RDM
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PIC microcontroller
Microprocessor

These courses allow the student to get back to level and regain confidence in all scientific subjects, as well as effectively preparing him for the Baccalaureate, Preparatory Classes or various exams.

COURSE OBJECTIVES AND PEDAGOGICAL APPROACH

Resumption and deepening of fundamental concepts through exercises with course reminders.

Put the student in a situation of questioning and research.

Respond to individual issues and questions

Exercise training in order to achieve real mastery of the content.

Learn to build theoretical reasoning from observable facts or hypotheses.

Specific preparation for higher education requirements (in-depth content, increase in work capacity, enrichment of scientific background)

This educational approach is effective since it has often led me to interesting results with my students.

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What I cover:

Circuit analysis (DC and AC, Kirchhoff's laws, Thevenin / Norton, op-amps)
Digital electronics and logic design
Signals and Systems, Digital Signal Processing (DSP)
Control systems (Laplace, transfer functions, stability, frequency response)
Embedded systems and microcontroller basics
Power electronics fundamentals
University coursework, lab reports, dissertation and project support
Exam preparation for engineering modules

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I start by figuring out exactly which concepts are tripping you up — most students are stuck on one or two key ideas, and once those click, everything else falls into place. I use plenty of worked examples, real circuit diagrams, and clear explanations of the maths behind each topic. For project and dissertation work, I can help you plan, debug, and present your work properly.
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Identifying different electronic components: resistors, capacitors, diodes, transistors, and sensors.

Understanding correct electrical connections

Reading electronic circuits and working with breadboards

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Introduction to Arduino boards

Explanation of the C++ programming language used with Arduino

How to download code and test projects step by step

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Connecting sensors and smart switches

Lighting and electrical appliance control

Designing a system that controls the home using a mobile phone

Introduction to the Internet of Things (IoT) and its connection to home control

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Creating simple control interfaces

Connect using Wi-Fi or Bluetooth

Remote device operation and sensor monitoring

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Real Arduino circuit experiment

Using simulation software such as Tinkercad and Proteus

Practical projects ready for implementation

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Beginners in the field of electronics

Students interested in Arduino programming

Who wants to create a smart home project?

Anyone who wants to understand how electronics work in a simple and practical way
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I am a Master’s student in Telecommunications Engineering at the University of Bologna, with a current GPA of 29.54/30 and a previous academic background in Control Engineering.

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Hello! My name is Sandra. I completed my undergraduate degree in Electronics and Communications Engineering in Mexico City. Following that, I earned my Master's degree in Communications Systems and Signal Processing in England, and my PhD in Physics, focusing on the acoustics of musical instruments, in Scotland.

I have been teaching electronics and electrical engineering since 1999 at various universities and in different countries, and I can do this equally well in German, English or Spanish.

If you are currently having difficulty following the electronics or electrical engineering lectures at your school, college or university, or if you want to prepare for an exam, or if you are looking for further opportunities to practice your knowledge, or if you generally want to learn about electronics or electrical engineering, I would be happy to help you!

Topics that I often cover include:

* Voltage, current, power, efficiency
* Ohm's and Kirchhoff's laws
* Solution of resistance networks with resistors in parallel and in series
* Solving circuits using the mesh and knot method
* Solving circuits using the superposition theorem
* Backup voltage and current sources
* Electric and magnetic fields
* Circuits with capacitors and inductors in direct current (step response)
* Circuits with capacitors and inductors in alternating current
* Power in alternating current, power correction
* Three-phase current
* Analog-to-digital and digital-to-analog conversion of signals
* Signal sampling, Nyquist theorem, aliasing, quantization
* Fourier Theorem and Transformation
* DFT, frequency resolution, spectral leakage, window functions
* Spectrogram, frequency and time resolution
* Fourier-based analysis and synthesis of signals
* Passive and active filters
* LTI systems, folding
* Laplace, impedance, transfer function, frequency response, Bode plot
* Diode circuits
* Transistor (BJT) basic circuits
* Basic op-amp circuits
* Audio signal chain
* Microphones, preamplifiers, power amplifiers, loudspeakers
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Basics of electricity
electric current
electrical potential
The difference between power and electrical energy
Electrical resistance, its types, and methods of connection
How to calculate total resistance
How to calculate the total current in an electrical circuit and the current flowing through a branch
How to calculate the potential difference between two points
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HI, I’m Ali, an expert tutor in Electronics and Electrical Engineering with strong foundations in circuit design, simulation, and practical hardware systems.

Online lessons

If Electricity and Electronics make sense in class, but everything starts falling apart when the question becomes a real circuit, a phasor problem, an RLC response, or a simulation task, you are not alone.

Most students do not struggle because they are not capable.
They struggle because nobody has shown them how to think through the physical system properly, choose the right troubleshooting method, and present the solution with confidence.

That is exactly where I help.

WHAT MAKES MY TEACHING DIFFERENT
I do not teach Electrical Engineering, Electronics, and Circuit Theory as isolated topics.

I teach them as one connected system.

With my Electronics Engineering background and extensive hands-on experience in hardware systems design, my approach is always:

Model & Simulate

Solve & Optimise

Verify (Hardware/Software)

Improve & Troubleshoot

This means you do not just memorise formulas for one test. You learn how to approach unfamiliar engineering problems, schematic designs, and hardware constraints with structure, logic, and control.

WHO THIS PROFILE IS FOR
This profile is built for you if:

you understand parts of the topic, but struggle to connect theory to practical hardware implementation under pressure

you can follow solved textbook examples, but get stuck when starting circuit designs or simulations alone

your circuit setup, phasors, Laplace work, or PCB layouts break down mid-solution

you need technical help that is clear, structured, and highly relevant to your engineering modules or lab projects

you want a practical engineering method, not vague motivation

you want to become independent, mastering industry-standard tools instead of relying on memorised steps

WHAT YOU WILL ACTUALLY IMPROVE
I focus on the parts of Electronics and Electrical Engineering that usually decide whether a student feels in control, or completely stuck.

That includes improving how you handle:

Electrical Circuits, Mesh/Nodal Circuit Analysis, AC and DC Circuits

Phasors, complex impedance, and RLC Circuits

Circuit Simulations (Proteus, LTspice, Multisim, KiCad, Altium Designer)

Hardware Design, PCB Layout, and routing constraints

Analogue and Digital Electronics, Electronic Devices, and VLSI/SoC concepts

Signals & Systems, Signal Processing, and Control Systems block diagrams

Digital Logic Design (DLD), Boolean Algebra, K-Maps, and State Machines (FSM)

Embedded Systems, microcontrollers, and integrating Machine Learning into hardware

Applied Mathematics for Engineers, Calculus, Differential Equations, Fourier Analysis, and Laplace Transforms

WHAT I HELP STUDENTS DO
Most students come to me because they want more than a basic theoretical explanation.

They want to be able to:

read the engineering question or schematic properly

identify what the circuit or system is actually doing

choose the correct analysis method faster

set up the software simulations cleanly and debug errors

avoid common hardware and design mistakes

finish with a working layout or solution they can justify

SUBJECT AREAS I SUPPORT
My main subject support is built around:

Electronics Engineering

Circuit Design & Simulation

Electrical Engineering Foundations

Digital Logic Design

Within that, I regularly position lessons around high-value areas such as:

Circuit Analysis (AC/DC) & Phasors

PCB Layout & Hardware Prototyping

Embedded Systems & Microcontrollers

Control Systems & Signal Processing

Digital Logic Design & Digital Systems

Solid State Devices & VLSI Concepts

For students on broader technical pathways (like Mechatronics, Robotics, or Automation), I can also support connected areas like programming, sensor integration, and machine learning applications when they are part of your course demands.

HOW MY ENGINEERING BACKGROUND HELPS
My Electronics Engineering background, combined with practical industry exposure in testing labs, grid stations, and professional freelance PCB design, is useful here for one reason:

it pushes disciplined, real-world technical thinking.

Instead of rushing to formulas, I train students to understand the circuit model and software verification first. That changes everything.

It helps you see:

what the components and systems are actually doing

why one simulation tool or design choice fits better than another

where errors and noise usually enter the solution

how to verify the hardware design before moving to fabrication

That is the difference between copying worked examples and actually understanding engineering.

HOW THE SUPPORT FEELS
Students usually work well with me because the sessions are:

structured, calm, and technical

practical and focused on real design improvement

You do not get vague advice. You get direction, software walkthroughs, and a debugging method you can keep using after the lesson ends. This is especially useful for students preparing for exams, difficult university modules, lab tasks, or Final Year Projects (FYPs).

WHY THIS APPROACH WORKS
A lot of students spend hours watching tutorials, but still cannot design a circuit or solve questions independently. Passive exposure is not the same as technical control.

My goal is to make you someone who can start the question or design with confidence, move through the layout or working without panicking, and build stronger engineering performance over time.

BEFORE WE START, FIT CHECK
To make the first lesson useful from the start, send:

Level / Degree Course

Exam board or university module guidelines

Exam date, project deadline, or timeline

3 priority topics or software tools you want to master

The exact point where you get stuck

1 to 3 questions, project briefs, or screenshots
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This hands-on training pathway is designed to help students kickstart any project, specifically tailored for OT labs and industrial applications. Starting from absolute scratch, students will build a strong foundation in Python programming through practical, industry-relevant concepts.

Curriculum Outline: |
01 - Python Environment Setup & Basics |
02 - Python Variables, Numbers, Bytes & Hex |
03 - Control Flow Logic Functions |
04 - Data Structures (Lists, Tuples, Dictionaries & Sets) |
05 - String Formatting, Comprehensions & Exception Handling |
06 - File IO, Pathlib & Context Managers |
07 - Object-Oriented Programming (Classes & OOP) |
08 - Standard Library, Modules & Networking Basics |

Assessment & Evaluation:
Students will take a mini-test after the completion of each module. Additionally, an Audit & Performance Evaluation report will be sent following the tests.
Duration:
5 days to 15 days (depending on the pace of the cohort)
Good-fit Instructor Guarantee
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