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Since November 2022
Instructor since November 2022
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Programming Class (Node.js, React, React Native, Java, Kotlin, Python)
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From 46 € /h
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I'm a mobile app developer entering my 5th year. I love programming and I love teaching people.
My area of expertise is helping you learn the basics of programming with JavaScript and land a job. Thank you

I'm a mobile app developer entering my 5th year. I love programming and I love teaching people.
My area of expertise is helping you learn the basics of programming with JavaScript and land a job. Thanks.
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At student's location :
  • Around Paris, France
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Online from France
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
English
French
Korean
Availability of a typical week
(GMT -04:00)
New York
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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
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Mamadou
In Science, Technology, Engineering and Mathematics (STEM) we don't understand things, we get used to it!

You are in college or high school (L, S, ES, STMG or STL) and you encounter difficulties in the disciplines of science in particular in mathematics, physics, chemistry or computer science (misunderstanding of the course, too hard exercises, methods of inappropriate work)?

Do not let the gaps accumulate and opt for quality support.
Well, become an artist in mathematics, physics or even programming now.

With more than 5 years of experience in coaching private lessons and training workshops, I followed more than 230 students from middle school, high school, bac + 2 in Maths-Physics and Computer Science. Passionate about science, in particular math-physics-computer science and especially teaching, I decided a few years ago to collaborate with tutoring companies and private schools.
Indeed, transmitting knowledge, seeing students evolving and following them during their schooling is a real challenge but also a real satisfaction.
I flourish particularly in teaching and I know perfectly the school programs and teach from primary to terminal.
Beyond the simple teaching of mathematics, I strive to establish a pleasant and relaxed working atmosphere to encourage students to gain confidence. Such a working atmosphere and personalized support allow students to find the winning mentality they need to succeed.

A pedagogue, attentive and enthusiastic, I offer simplified course materials as well as exercises and carry out regular assessments with the student and the parents to make a progress report.

Methodology :

My previous experiences have allowed me to identify in students with different profiles that the poor results in scientific subjects generally come from an inadequate methodology (not knowing how to read a statement, not knowing how to write mathematical reasoning ... ) and a lack of practice.
As a trainer, I consider that my role is not only to teach the subject, but to give you the necessary tools that will allow you to progress sustainably and achieve your academic and personal goals.
The first meeting aims to get to know the student starting from an analysis of their level, their strengths as well as their objectives, I define with him / her an educational strategy in terms of areas for improvement , working methods, frequency of lessons and supports used.
On the basis of the observation, I establish with the student and his parents an educational assessment (concepts to be reviewed as a priority, work method, duration and frequency of lessons) aiming to best meet the student's objectives.

Course of a typical session:

The courses are generally structured in 5 stages:
1. At the beginning of the session, I check with the student if he has done the work (homework, exercises, ...) requested by his teacher and I answer any questions he may ask: course points poorly assimilated, errors not understood ...

2. From there, I take up with the student the points of the poorly assimilated course and I review with him the mathematical methodology: how to read a statement correctly, how to solve a mathematical problem. If the student has a check, I analyze with him his old homework on the table to analyze his errors and do better during the next check.

3. I ask the student to do several exercises so that he can put into practice the concepts seen in class and appropriate the working methods seen together.

4. Evaluate the student's understanding (direct questions, direct application exercises, validation of student cards).

5. each lesson session, a summary point including:
at. The concepts to know and some typical examples
b. The main points of difficulty of the student
vs. Tips and strategies to overcome these difficulties

6. I give some exercises of a level of difficulty similar to those approached during the course to allow the student to review alone the concepts seen together and to assimilate his course durably. In case of difficulty, the student can at any time send me an email or call me so that I can help him from one session to another

7. Summary point - Report of the meeting
a- What was done during the session
b- What the student could remember
c- What the student should do for the next session.
A- Homework help point, partial, test, white bac: review the whole course, do one (or more) year (s) together, identify the pitfalls to avoid and the tips to know.
Internships are also organized during the holidays to allow my students to further improve their performance and strive for excellence.

Benefits / differentiation:
1- Free follow-up by phone (I would be available if the student has specific questions).
2- The course can reasonably overflow without problem
3- Patience and smile in all circumstances, proximity.
4- Orientation assistance.
I can move home, otherwise I also receive my students in the study room of my residence.
Interested? To all parents concerned about the educational situation of their children, do not wait until it is too late, contact me and take it in hand by reserving my lessons now!
verified badge
Join
Are you looking to deepen your knowledge of physics or master advanced techniques in Python programming? This course is designed to help you achieve a level of academic and technical excellence, whether you are a high school student, university student or professional looking to develop your skills.

With an interactive and effective teaching approach, you will benefit from personalized support to overcome obstacles, grasp complex concepts and improve your performance. Whether it is to succeed in difficult exams, high-level competitions or to create powerful applications in Python, this course will provide you with all the tools necessary to achieve your goals.

🎯 Why Choose This Course?
Advanced and Expertise Level: In-depth content and effective methodology to master complex topics in physics and programming.
Personalized Courses: Sessions adapted to your needs, your pace and your level.
Interactive Online Learning: Dynamic online courses with screen sharing and audio interaction for enjoyable and engaging learning.
Concrete Projects and Practical Applications: Development of practical projects to implement theoretical concepts.
Intensive Preparation for Exams and Competitions: Rigorous training with complex exercises and exam simulations to guarantee your success.
Flexibility and Comfort: Learn from home, according to your schedule, without having to travel.

🔬 Advanced Physics – From High School to University
This module offers a complete and in-depth program to prepare you for demanding secondary school exams, preparatory classes and scientific university courses:

1. Secondary Physics (High School and Preparatory Classes)
⚙️ Classical Mechanics: Kinematics, dynamics, Newton's laws, energy and work, oscillations.
🌊 Waves and Vibrations: Wave propagation, interference, diffraction, acoustics.
⚡ Electricity and Magnetism: Electric circuits, electrostatics, magnetostatics, electromagnetic induction.
🔦 Optics: Geometric optics (lenses, mirrors), wave optics (interference, diffraction).
🌡️ Thermodynamics: Laws of thermodynamics, thermodynamic cycles, entropy, changes of state.

2. University and Advanced Physics
🔄 Analytical Mechanics: Lagrangian, Hamiltonian, and generalized coordinates.
🌐 Advanced Electromagnetism: Maxwell's equations and the propagation of electromagnetic waves.
🧪 Quantum Physics: The postulates of quantum mechanics, the wave function, and the Schrödinger equation.
☢️ Nuclear and Particle Physics: The structure of the nucleus, radioactivity, and fundamental interactions.
🌌 Special Relativity: Lorentz transformations, time dilation, and length contraction.

3. Intensive Preparation for Exams and Competitions
📘 Scientific methodology: Learn to analyze statements, structure responses and write clearly and precisely.
📝 Application exercises and past papers: Intensive training to master the concepts and pass your exams.
🔎 Solve complex problems with detailed explanations and effective strategies.
⏰ Time management: Practical tips to improve your time management during exams.

🐍 Advanced Python Programming – Focused on Efficiency
This module will teach you how to program efficiently and effectively in Python, with an emphasis on best practices and advanced techniques:

1. Mastering Advanced Concepts in Python
🔠 Advanced Syntax and Best Practices: Deepening of Python concepts.
📦 Object-Oriented Programming (OOP): Abstract classes, interfaces, and design patterns in Python.
🔄 Functional Programming: Using lambda, map, filter, reduce, generators and iterators.
⚡ Asynchronous Programming: Implementing asyncio for fast and responsive applications.
🧪 Unit Testing and Code Quality: Use of pytest, code coverage, and CI/CD.

2. Performance Optimization
🚀 Algorithm Optimization: Analysis of algorithmic complexity and use of efficient data structures.
⚙️ Profiling and Debugging: Performance evaluation with cProfile and code improvement.
🔒 Security and Robustness: Writing secure code and handling exceptions appropriately.
3. Practical Projects and Advanced Applications
🌐 Web Applications: Building high-performance web applications using Flask and FastAPI.
📊 Data Science and Machine Learning: Exploitation of Pandas, NumPy, Scikit-learn and TensorFlow.
🕸️ Advanced Web Scraping: Complex data extraction using BeautifulSoup and Selenium.
🤖 Automation and Efficient Scripts: Automation of tasks and development of efficient scripts.

🧑‍🏫 Methodology and Pedagogical Approach:
Learning by doing: Each theoretical concept is directly implemented through practical exercises.
Interactive Online Teaching: Using audio and screen sharing for seamless communication and dynamic learning.
Personalized monitoring: Regular support to assess your progress and answer all your questions.
Concrete projects: Development of complete projects to apply your programming skills.
Motivation and Confidence: A positive and encouraging approach to build your confidence in your abilities.

🎓 For whom?
This course is intended for:

- High school and preparatory class students who aspire to academic excellence.
- University students in science and computer science wishing to deepen their knowledge.
- Candidates for scientific competitions who are preparing for physics and programming tests.
- Developers looking to improve their advanced Python skills.
- Researchers and engineers who use Python for complex scientific applications.

🔔 Register now! Don't miss the opportunity to master advanced physics while developing skills in optimized and efficient Python. Join our program "🚀 Advanced Courses - 🔬 Physics from High School to University & 🐍 Advanced Python Programming Focused on Efficiency!" and progress at your own pace with confidence and motivation!
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Contact Jee
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Similar classes
arrow icon previousarrow icon next
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Mamadou
In Science, Technology, Engineering and Mathematics (STEM) we don't understand things, we get used to it!

You are in college or high school (L, S, ES, STMG or STL) and you encounter difficulties in the disciplines of science in particular in mathematics, physics, chemistry or computer science (misunderstanding of the course, too hard exercises, methods of inappropriate work)?

Do not let the gaps accumulate and opt for quality support.
Well, become an artist in mathematics, physics or even programming now.

With more than 5 years of experience in coaching private lessons and training workshops, I followed more than 230 students from middle school, high school, bac + 2 in Maths-Physics and Computer Science. Passionate about science, in particular math-physics-computer science and especially teaching, I decided a few years ago to collaborate with tutoring companies and private schools.
Indeed, transmitting knowledge, seeing students evolving and following them during their schooling is a real challenge but also a real satisfaction.
I flourish particularly in teaching and I know perfectly the school programs and teach from primary to terminal.
Beyond the simple teaching of mathematics, I strive to establish a pleasant and relaxed working atmosphere to encourage students to gain confidence. Such a working atmosphere and personalized support allow students to find the winning mentality they need to succeed.

A pedagogue, attentive and enthusiastic, I offer simplified course materials as well as exercises and carry out regular assessments with the student and the parents to make a progress report.

Methodology :

My previous experiences have allowed me to identify in students with different profiles that the poor results in scientific subjects generally come from an inadequate methodology (not knowing how to read a statement, not knowing how to write mathematical reasoning ... ) and a lack of practice.
As a trainer, I consider that my role is not only to teach the subject, but to give you the necessary tools that will allow you to progress sustainably and achieve your academic and personal goals.
The first meeting aims to get to know the student starting from an analysis of their level, their strengths as well as their objectives, I define with him / her an educational strategy in terms of areas for improvement , working methods, frequency of lessons and supports used.
On the basis of the observation, I establish with the student and his parents an educational assessment (concepts to be reviewed as a priority, work method, duration and frequency of lessons) aiming to best meet the student's objectives.

Course of a typical session:

The courses are generally structured in 5 stages:
1. At the beginning of the session, I check with the student if he has done the work (homework, exercises, ...) requested by his teacher and I answer any questions he may ask: course points poorly assimilated, errors not understood ...

2. From there, I take up with the student the points of the poorly assimilated course and I review with him the mathematical methodology: how to read a statement correctly, how to solve a mathematical problem. If the student has a check, I analyze with him his old homework on the table to analyze his errors and do better during the next check.

3. I ask the student to do several exercises so that he can put into practice the concepts seen in class and appropriate the working methods seen together.

4. Evaluate the student's understanding (direct questions, direct application exercises, validation of student cards).

5. each lesson session, a summary point including:
at. The concepts to know and some typical examples
b. The main points of difficulty of the student
vs. Tips and strategies to overcome these difficulties

6. I give some exercises of a level of difficulty similar to those approached during the course to allow the student to review alone the concepts seen together and to assimilate his course durably. In case of difficulty, the student can at any time send me an email or call me so that I can help him from one session to another

7. Summary point - Report of the meeting
a- What was done during the session
b- What the student could remember
c- What the student should do for the next session.
A- Homework help point, partial, test, white bac: review the whole course, do one (or more) year (s) together, identify the pitfalls to avoid and the tips to know.
Internships are also organized during the holidays to allow my students to further improve their performance and strive for excellence.

Benefits / differentiation:
1- Free follow-up by phone (I would be available if the student has specific questions).
2- The course can reasonably overflow without problem
3- Patience and smile in all circumstances, proximity.
4- Orientation assistance.
I can move home, otherwise I also receive my students in the study room of my residence.
Interested? To all parents concerned about the educational situation of their children, do not wait until it is too late, contact me and take it in hand by reserving my lessons now!
verified badge
Join
Are you looking to deepen your knowledge of physics or master advanced techniques in Python programming? This course is designed to help you achieve a level of academic and technical excellence, whether you are a high school student, university student or professional looking to develop your skills.

With an interactive and effective teaching approach, you will benefit from personalized support to overcome obstacles, grasp complex concepts and improve your performance. Whether it is to succeed in difficult exams, high-level competitions or to create powerful applications in Python, this course will provide you with all the tools necessary to achieve your goals.

🎯 Why Choose This Course?
Advanced and Expertise Level: In-depth content and effective methodology to master complex topics in physics and programming.
Personalized Courses: Sessions adapted to your needs, your pace and your level.
Interactive Online Learning: Dynamic online courses with screen sharing and audio interaction for enjoyable and engaging learning.
Concrete Projects and Practical Applications: Development of practical projects to implement theoretical concepts.
Intensive Preparation for Exams and Competitions: Rigorous training with complex exercises and exam simulations to guarantee your success.
Flexibility and Comfort: Learn from home, according to your schedule, without having to travel.

🔬 Advanced Physics – From High School to University
This module offers a complete and in-depth program to prepare you for demanding secondary school exams, preparatory classes and scientific university courses:

1. Secondary Physics (High School and Preparatory Classes)
⚙️ Classical Mechanics: Kinematics, dynamics, Newton's laws, energy and work, oscillations.
🌊 Waves and Vibrations: Wave propagation, interference, diffraction, acoustics.
⚡ Electricity and Magnetism: Electric circuits, electrostatics, magnetostatics, electromagnetic induction.
🔦 Optics: Geometric optics (lenses, mirrors), wave optics (interference, diffraction).
🌡️ Thermodynamics: Laws of thermodynamics, thermodynamic cycles, entropy, changes of state.

2. University and Advanced Physics
🔄 Analytical Mechanics: Lagrangian, Hamiltonian, and generalized coordinates.
🌐 Advanced Electromagnetism: Maxwell's equations and the propagation of electromagnetic waves.
🧪 Quantum Physics: The postulates of quantum mechanics, the wave function, and the Schrödinger equation.
☢️ Nuclear and Particle Physics: The structure of the nucleus, radioactivity, and fundamental interactions.
🌌 Special Relativity: Lorentz transformations, time dilation, and length contraction.

3. Intensive Preparation for Exams and Competitions
📘 Scientific methodology: Learn to analyze statements, structure responses and write clearly and precisely.
📝 Application exercises and past papers: Intensive training to master the concepts and pass your exams.
🔎 Solve complex problems with detailed explanations and effective strategies.
⏰ Time management: Practical tips to improve your time management during exams.

🐍 Advanced Python Programming – Focused on Efficiency
This module will teach you how to program efficiently and effectively in Python, with an emphasis on best practices and advanced techniques:

1. Mastering Advanced Concepts in Python
🔠 Advanced Syntax and Best Practices: Deepening of Python concepts.
📦 Object-Oriented Programming (OOP): Abstract classes, interfaces, and design patterns in Python.
🔄 Functional Programming: Using lambda, map, filter, reduce, generators and iterators.
⚡ Asynchronous Programming: Implementing asyncio for fast and responsive applications.
🧪 Unit Testing and Code Quality: Use of pytest, code coverage, and CI/CD.

2. Performance Optimization
🚀 Algorithm Optimization: Analysis of algorithmic complexity and use of efficient data structures.
⚙️ Profiling and Debugging: Performance evaluation with cProfile and code improvement.
🔒 Security and Robustness: Writing secure code and handling exceptions appropriately.
3. Practical Projects and Advanced Applications
🌐 Web Applications: Building high-performance web applications using Flask and FastAPI.
📊 Data Science and Machine Learning: Exploitation of Pandas, NumPy, Scikit-learn and TensorFlow.
🕸️ Advanced Web Scraping: Complex data extraction using BeautifulSoup and Selenium.
🤖 Automation and Efficient Scripts: Automation of tasks and development of efficient scripts.

🧑‍🏫 Methodology and Pedagogical Approach:
Learning by doing: Each theoretical concept is directly implemented through practical exercises.
Interactive Online Teaching: Using audio and screen sharing for seamless communication and dynamic learning.
Personalized monitoring: Regular support to assess your progress and answer all your questions.
Concrete projects: Development of complete projects to apply your programming skills.
Motivation and Confidence: A positive and encouraging approach to build your confidence in your abilities.

🎓 For whom?
This course is intended for:

- High school and preparatory class students who aspire to academic excellence.
- University students in science and computer science wishing to deepen their knowledge.
- Candidates for scientific competitions who are preparing for physics and programming tests.
- Developers looking to improve their advanced Python skills.
- Researchers and engineers who use Python for complex scientific applications.

🔔 Register now! Don't miss the opportunity to master advanced physics while developing skills in optimized and efficient Python. Join our program "🚀 Advanced Courses - 🔬 Physics from High School to University & 🐍 Advanced Python Programming Focused on Efficiency!" and progress at your own pace with confidence and motivation!
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