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Since June 2022
Instructor since June 2022
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Engineering Sciences, and Technology (all levels)
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From 35 C$ /h
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Engineering science and mechanical engineering
additional courses in preparatory classes, high school and higher
Systems mechanics:
 General theorems
 Energy approach
 Harmonic study
 Thermodynamics
Industrialization:
 Product Material Process Relationship
 Process optimization
 Continuous improvement, maintenance and production management, Quality and control
Automatique :
 Automation and control of systems
Extra information
Remote work
Location
location type icon
Online from Morocco
About Me
Associate Professor and Doctor of Industrial Engineering Sciences and Mechanical Engineering and Artificial Intelligence
with an experience of more than 15 years in the classroom as a teacher, I teach courses in:
technical drawing
mechanical Engineering
electrical engineering
mechanical engineering
3D software and simulation
Education
PhD in mechanical engineering and artificial intelligence
Associate professor in industrial engineering sciences and mechanical engineering
master in mechanical engineering
baccalaureate in electronics
Experience / Qualifications
15 years as a teacher
in high school and in preparatory classes for the Grandes Ecoles of engineers with courses provided in higher education
Age
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
French
English
Arabic
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
Supervision of
industrial projects
TIPE for preparatory classes
Bac + levels ....
field: mechanical, electrical, electromechanical and industrial engineering
The realization and follow-up of the end-of-study industrial project with software simulations
Read more
Associate Professor and Doctor of Industrial Engineering Sciences and Mechanical Engineering and Artificial Intelligence
provides courses in:
Systems Engineering:
 Functional Analysis, SysML, Technical Drawing
Modeling of multi-technical systems:
 Material modeling
 Modeling of structures and mechanisms
 Modeling of energy systems
 Order modeling
Systems design:
 Description tools used in the design phase, system engineering, characterization of a part and
of a mechanism
Systems mechanics:
 General theorems
 Energy approach
 Harmonic study
 Thermodynamics
Industrialization:
 Product Material Process Relationship
 Process optimization
 Continuous improvement, maintenance and production management, Quality and control
Automatique :
 Automation and control of systems
Computer science :
 MS Office, SolidWorks, Solid Edge, Matlab, ANSYS, Digimat, ...
Read more
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I hold a PhD in Mechanical Engineering and currently work as a post-doctoral researcher in the Aerospace Engineering Faculty at TU Delft (Delft University of Technology).

My extensive teaching experience covers a wide range of engineering courses, including:

- Mathematics: algebra, linear algebra, probability, calculus, differential equations, intellectual math, and advanced engineering mathematics.

- Mechanical Engineering: Statics, Dynamics, Mechanics of materials, Mechanical design, control, vibration, Fluid Mechanics, Thermodynamics, Heat transfer, Engineering drawing, Applied Mechanics, Composite Structures, Flight, Machine Elements, Manufacturing, 3D printing, and more.

- Physics: mechanics, momentum and energy, electricity, charge and current, electric and magnetic fields, waves, particle physics, nuclear decay, astrophysics, cosmology, oscillations, etc.

- CAD/CAM Software: Autocad, Solidworks.

- Mechanical Design Packages: ANSYS, APDL programming, ABAQUS, MATLAB, Symbolic MATLAB, LS-DYNA.

My research and teaching interests are diverse, including:
• Additive manufacturing
• Mechanical metamaterials
• Acoustical metamaterials
• Electromagnetic metamaterials
• Aeroacoustics
• Soft matter and soft robotics
• Fatigue and fracture mechanics
• Experimental mechanics
• Multiscale numerical modelling
• Biomaterials
• Porous materials
• Manufacturing of medical devices and implants
• Deep learning
• Image processing
• Topology optimization
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• Self-folding and self-assembly structures
• Tissue engineering
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I understand that not all teachers excel in teaching Engineering and Mathematics courses and explaining their importance to students. Courses with strong mathematical backgrounds may become boring for students who lack a solid mathematical basis. To address this, I take a student-centered approach, starting from the basics to actively engage all students, including those with weaker mathematical backgrounds. I also provide practical examples to demonstrate the real-world significance of what they are learning, inspiring and fostering their interest in the subject matter.

If you have any additional questions before starting a class, please feel free to ask me. I am here to assist! :)
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Do you aspire to master mathematics, physics and engineering at a university level? Do you want to exceed your limits and excel in these demanding fields? Do not search anymore ! Our tailor-made private lessons are there for you.

Why choose our courses?

Unparalleled Expertise: Our professors are experts in their field, with extensive experience in university teaching. They are ready to guide you towards success.

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Who can benefit from our courses?

High school students preparing for their baccalaureate or entrance exams to engineering schools.

University students pursuing a degree in mathematics, physics or engineering.

Professionals looking to acquire or deepen technical skills.

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Helping others understand difficult topics and skills is something that I am very passionate about as an empathetic person. I have 6 years of experience teaching Physics and Maths to kids from unprivileged backgrounds both in a homework schools as well as via private teaching. In private teaching, I have experience tutoring people with learning disabilities (ADHD, Dyslexia, Discalculia and more), younger kids of ages 7-12 and older students preparing for their final baccalaureate exams in advanced maths/physics curriculums.


In my classes, I aim to:

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- clearly explain and break down topics
- give context and or example applications of topics (to improve understanding and memorization)
- help with ADHD & other learning disabilities
- give practical advice for university applications (eg. UCAS in the UK) and discuss the exciting Physics research/work and projects you can work on later in life.


Physics has a plethora of useful and fascinating applications, from the detection of Gravitational Waves and Gamma-Ray Bursts to the development of novel Medical Imaging techniques and Nano-technology (eg: smartphones). It is a subject that I am very passionate about and I hope to make use of my years of experience and extensive knowledge to help you understand and love the subject! My lessons will always be tailored to the individual needs of the student, so please do not hesitate to contact me if you have questions!
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Hello, I am a doctoral student in electrical engineering and associate professor in engineering sciences, experienced in the field of electrical engineering, I offer courses in engineering sciences (Electronics, automatics, electrical engineering, automation, programming).
Computational Sciences and Technology SNT
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[ENG]: Infrared (IR) spectroscopy is a powerful analytical technique used to study the vibrational patterns of molecules. It is widely used in the fields of chemistry, biochemistry and materials science to identify and characterize chemical compounds. Understanding the interpretation of infrared spectra is crucial for accurate analysis of complex samples.
In this online course, you will learn the basics of infrared spectroscopy and its application in chemical analysis. You will learn how to interpret infrared spectra, including identifying characteristic peaks and understanding their relationship to specific chemical functional groups and ligands. You will also learn how to use infrared spectroscopy for quantitative analysis, and how to analyze complex spectra.

By the end of this course, you will have a strong foundation in infrared spectroscopy and will be able to analyze and interpret infrared spectra with confidence. This course is suitable for students and professionals in the fields of chemistry, biochemistry and materials science who wish to expand their knowledge of analytical techniques

Join us to unleash the potential of infrared spectroscopy in your research and analysis.

[French]: La Spectroscopie infrarouge (IR) is an analytical technique for permanently performing vibrational modes of molecules. It is large in the domains of chimie, biochemistry and materia science to identifier and react to chemical compositions. Comprendre l'interpretation des Specters IR is essential for analyzing précise d'échantillons complexes.

Color formations in line, the broad application of infrared conformational rules and the application of its son in chimique analysis. Numerous opinions and comments on the infrared spectra, the testimony in the selected images and the close relationship between the artistic groups and the relationships between chimeric species. également également à utiliser la Spectroscopie IR for quantitative analysis and spectrum complex analyzer.

Accurate disc formation, solid base and IR spectroscopy et al are able to analyze and interpret infrared spectra in confidence. These courses are addressed to students and professions in the fields of chemistry, the body, biochemistry and the science of matériaux that souhaitent élargir leurs connexiones des analytical technologies.

Rejoin us to edit the effective IR spectroscopie in your searches and analysis.
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This preparation session is dedicated to students aiming for preparatory classes for scientific Grandes Ecoles (CPGE), with a particular focus on the subjects of Physics and Engineering Sciences. The goal is to strengthen the foundations and deepen the knowledge to succeed.

1. Mechanics:
Kinematics: Study of rectilinear and circular movements, position vectors, speed and acceleration.
Dynamics: Newton's laws, work and energy, kinetic energy theorem.

2. Electromagnetism / Electrokinetics:
Electrostatics: Electric charges and fields, electric potential, capacitance.
Magnetostatics: Magnetic fields, Lorentz forces, electromagnetic induction.
Alternating Currents: RLC circuits, resonance, impedance.

3. Thermodynamics:
Principles of thermodynamics: Internal energy, heat, work, first and second principles.
Ideal and real gases: Equations of state, thermodynamic transformations.

4. Industrial sciences:
Automatic Linear, Kinematic, Static.

For more information and to register for the preparation session, please contact me.

Good preparation and success in your studies!

.
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Hello everyone and have a nice day,

As a teacher, teacher, student, teacher, professional teacher, and professional student/coaching/unterstützung in MATLAB/Simulink/embedded programme/automatic code generation...etc., you can also contact him.

Use this device for your Master Elektrotechnik-Ingenieur with a new academic design and installation tool in the basic model and use the Matlab/Simulink-Model for embedded System and Regelung on the E-Motoren with a fan and pass it. and Anforderungen.

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I am a PhD-qualified engineer, university professor, researcher, technical trainer, designer, and multidisciplinary consultant with more than 30 years of experience across engineering, teaching, project work, CAD, technical drawing, 3D modelling, GIS, visualization, information systems, and professional problem solving.

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PHYSICS & APPLIED ENGINEERING SCIENCE
• Mechanics: motion, forces, Newton’s laws, work, energy, momentum, and rotational motion
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• Fluids, pressure, buoyancy, density, and basic fluid mechanics
• Heat, temperature, thermodynamics, and energy transfer
• Waves, oscillations, sound, optics, electricity, and magnetism according to the learner’s level
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• Units, dimensions, vectors, graphs, and interpretation of experimental or engineering data
• Connecting physical principles to engineering design, calculations, and real-world technical problems

CHEMISTRY & ENGINEERING MATERIALS
• Atomic structure, chemical bonding, molecular structure, and periodic trends
• Stoichiometry, chemical reactions, solutions, concentrations, gases, and equilibrium
• Acids, bases, oxidation-reduction, and introductory thermochemistry
• Properties and behaviour of engineering materials
• Metals, polymers, ceramics, composites, and material-selection principles when relevant
• Connecting chemical principles to materials, manufacturing, environmental, and engineering applications

ENGINEERING DESIGN & PROBLEM SOLVING
• Understanding and structuring engineering problems
• Translating requirements into technical objectives
• Identifying constraints, assumptions, variables, and criteria
• Engineering calculations and quantitative reasoning
• Applied mechanics and engineering fundamentals when relevant
• Dimensional reasoning and unit consistency
• Design alternatives and trade-off analysis
• Verification and reasonableness checking
• Engineering decision making
• Design methodology and iterative improvement
• Interpreting technical specifications
• Connecting analysis to drawings, models, and deliverables
• Engineering-management and multidisciplinary project contexts

AUTOCAD & TECHNICAL DRAFTING
• AutoCAD interface and efficient workflows
• Coordinate systems and precise geometric construction
• 2D drafting fundamentals
• Layers, properties, object organization, and standards
• Blocks and reusable drawing content
• Dimensions, annotations, text, and hatching
• Model space and paper space
• Layouts, viewports, scales, and plotting
• Technical drawing principles
• Reading and interpreting engineering drawings
• Plans, sections, elevations, and details
• Drawing organization and documentation quality
• Advanced drafting workflows
• AutoCAD 3D concepts when relevant
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BIM & REVIT WORKFLOWS
• BIM concepts and model-based thinking
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My goal is to help you become an independent technical problem solver who can analyze, design, model, verify, visualize, and communicate solutions with confidence.
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I'm a working MEP engineer, currently building Python automation for Revit workflows daily - plan checks, model coordination, and repetitive drafting tasks. I teach other engineers, architects, and BIM professionals how to do the same, using pyRevit and real project workflows, not toy examples.

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pyRevit fundamentals and setup
Automating repetitive Revit tasks (model checks, plan generation, data extraction)
Writing custom scripts for your firm's specific workflows
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Professeur agrégé de Sciences de l'ingénieur, j’aide élèves et étudiants à réussir examens et concours. J’interviens aux classes préparatoires (MPSI, MP, PSI...) et jusqu’à l’université (Licence ). Ma méthode : comprendre le cours, pratiquer avec rigueur, structurer le raisonnement et attaquer des exercices et problèmes bien choisis. Chaque séance inclut exercices ciblés, conseils méthodologiques, et suivi personnalisé. Vous recevez un enregistrement vidéo plus un PDF annoté après chaque cours. Cours en ligne via Google Meet, 7 jours sur 7, avec flexibilité horaire. Je reste joignable entre les séances pour répondre aux questions. Contactez-moi pour un premier échange.
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In-depth study of mathematical concepts up to post-baccalaureate level.

Application of problem-solving methods to engineering sciences.

Coaching to find YOUR learning method and succeed in all your exams

Computer skills refresher course

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### Courses in Mathematics, Physics, Chemistry and Engineering Sciences

As an engineering student in **mechatronics and instrumentation**, I offer private lessons tailored to the level and objectives of each student, **from middle school to higher education**.

My approach is progressive, clear, and geared towards understanding. The goal is to enable the student to **understand the concepts, master the problem-solving methods, and gradually gain autonomy**, rather than simply memorizing formulas.

**Mathematics:** algebra, functions, derivatives, integrals, differential equations, matrices, probability and statistics, with exercises adapted to the student's level.

**Physics and Chemistry:** mechanics, electricity, electromagnetism, thermodynamics, waves and physical phenomena, as well as the basics of chemistry. Concepts are explained through examples and concrete applications.

**Mechanics:** kinematics, statics, dynamics, energy, strength of materials, mechanical systems and modeling.

**Electricity and Electrotechnics:** electrical circuits, fundamental laws, direct and alternating current, electrical power, three-phase systems, electrical machines and basics of electrotechnics.

**Electronics:** electronic components, diodes, transistors, amplifiers, analog and digital circuits, as well as the basics of embedded systems.

My background in **mechatronics engineering and instrumentation** allows me to link different disciplines and offer a concrete approach through examples from **industry, automation, mechanical and electrical systems and instrumentation**.

Depending on the needs, the courses can be devoted to **understanding the course material, exercises, preparing for exams and tests, refresher courses or further study**.

Each session is tailored to the student's level in order to gradually build an effective working method and genuine autonomy.
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As a civil engineer with an EPFL degree, I have been working in a design office since 2020: excavations, retaining walls, foundations, numerical modeling, and site supervision. I mentor junior engineers and interns in this role, and I write reports explaining these calculations to clients who are not engineers.

I support students from EPFL, HES and vocational schools in the branches that filter: statics, strength of materials, reinforced concrete, soil mechanics and foundations.

We work on your past exams and series. For geotechnics and foundations, I show you how these calculations are actually carried out in the office and according to which standards, which makes the material much more understandable than a formula learned by heart.

I also cover technical professional maturity and preparation for admission to a University of Applied Sciences.

Tools I use daily: PLAXIS, GEO5, K-REA, AutoCAD and reading execution plans.

Online courses with a shared whiteboard, or in person in the Neuchâtel region.
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I hold a PhD in Mechanical Engineering and currently work as a post-doctoral researcher in the Aerospace Engineering Faculty at TU Delft (Delft University of Technology).

My extensive teaching experience covers a wide range of engineering courses, including:

- Mathematics: algebra, linear algebra, probability, calculus, differential equations, intellectual math, and advanced engineering mathematics.

- Mechanical Engineering: Statics, Dynamics, Mechanics of materials, Mechanical design, control, vibration, Fluid Mechanics, Thermodynamics, Heat transfer, Engineering drawing, Applied Mechanics, Composite Structures, Flight, Machine Elements, Manufacturing, 3D printing, and more.

- Physics: mechanics, momentum and energy, electricity, charge and current, electric and magnetic fields, waves, particle physics, nuclear decay, astrophysics, cosmology, oscillations, etc.

- CAD/CAM Software: Autocad, Solidworks.

- Mechanical Design Packages: ANSYS, APDL programming, ABAQUS, MATLAB, Symbolic MATLAB, LS-DYNA.

My research and teaching interests are diverse, including:
• Additive manufacturing
• Mechanical metamaterials
• Acoustical metamaterials
• Electromagnetic metamaterials
• Aeroacoustics
• Soft matter and soft robotics
• Fatigue and fracture mechanics
• Experimental mechanics
• Multiscale numerical modelling
• Biomaterials
• Porous materials
• Manufacturing of medical devices and implants
• Deep learning
• Image processing
• Topology optimization
• Origami and Kirigami structures
• Self-folding and self-assembly structures
• Tissue engineering
• Permeability in porous materials
• Fluid-Solid Interaction

I understand that not all teachers excel in teaching Engineering and Mathematics courses and explaining their importance to students. Courses with strong mathematical backgrounds may become boring for students who lack a solid mathematical basis. To address this, I take a student-centered approach, starting from the basics to actively engage all students, including those with weaker mathematical backgrounds. I also provide practical examples to demonstrate the real-world significance of what they are learning, inspiring and fostering their interest in the subject matter.

If you have any additional questions before starting a class, please feel free to ask me. I am here to assist! :)
verified badge
Do you aspire to master mathematics, physics and engineering at a university level? Do you want to exceed your limits and excel in these demanding fields? Do not search anymore ! Our tailor-made private lessons are there for you.

Why choose our courses?

Unparalleled Expertise: Our professors are experts in their field, with extensive experience in university teaching. They are ready to guide you towards success.

Personalized Program: We tailor each course to your specific needs, from understanding fundamental concepts to solving complex problems.

Total Flexibility: Choose the schedule that suits you best. Whether you are an active student or a professional, we adapt to your schedule.

Constant Support: You will benefit from continuous monitoring between classes to answer all your questions and concerns.

Quality Teaching Materials: We provide high-quality learning resources to support your progress.

Who can benefit from our courses?

High school students preparing for their baccalaureate or entrance exams to engineering schools.

University students pursuing a degree in mathematics, physics or engineering.

Professionals looking to acquire or deepen technical skills.

Join us today!

Excellence doesn't wait. Contact us now to book your first lesson. Together we will build a bright future based on a solid understanding of mathematics, physics and engineering.
verified badge
Passionate & empathetic teacher. I have a Master's in Physics with honors from the University of Leicester (which was featured at the time as a top 5 Physics university in the UK by The Guardian) and a - french - European School diploma in which I achieved 90% in Physics and 85% in Maths.

Helping others understand difficult topics and skills is something that I am very passionate about as an empathetic person. I have 6 years of experience teaching Physics and Maths to kids from unprivileged backgrounds both in a homework schools as well as via private teaching. In private teaching, I have experience tutoring people with learning disabilities (ADHD, Dyslexia, Discalculia and more), younger kids of ages 7-12 and older students preparing for their final baccalaureate exams in advanced maths/physics curriculums.


In my classes, I aim to:

- help students achieve better grades in exams/tests in all branches of Physics & Maths
- clearly explain and break down topics
- give context and or example applications of topics (to improve understanding and memorization)
- help with ADHD & other learning disabilities
- give practical advice for university applications (eg. UCAS in the UK) and discuss the exciting Physics research/work and projects you can work on later in life.


Physics has a plethora of useful and fascinating applications, from the detection of Gravitational Waves and Gamma-Ray Bursts to the development of novel Medical Imaging techniques and Nano-technology (eg: smartphones). It is a subject that I am very passionate about and I hope to make use of my years of experience and extensive knowledge to help you understand and love the subject! My lessons will always be tailored to the individual needs of the student, so please do not hesitate to contact me if you have questions!
verified badge
===================Satisfied or refunded=======================
Hello, I am a doctoral student in electrical engineering and associate professor in engineering sciences, experienced in the field of electrical engineering, I offer courses in engineering sciences (Electronics, automatics, electrical engineering, automation, programming).
Computational Sciences and Technology SNT
IS engineering sciences
Numerical and computer science SNI
Digital electronics
Analog electronic
electromagnetism
Signal processing and data acquisition
Automatic (discrete, continuous)
electrical engineering (transformers, electrical machines, switching power supply)
C/C++ Programming, Assembler, ARM, STM32
renewable energy (wind, PV-solar)
RDM - strength of materials mechanics of solids
Python and SYSML
PIC microcontroller
Microprocessor
MATLAB, proteus
Preparation for competitions
Supervision of graduation projects
CAPLP Electrotechnical and Electronic Electrical Engineering
CAPLP and BTS subjects and answers
Correction caplp 2017 CAPLP 2018 CAPLP 2019 CAPLP 2020
CORRECTION OF BTS TESTS
verified badge
[ENG]: Infrared (IR) spectroscopy is a powerful analytical technique used to study the vibrational patterns of molecules. It is widely used in the fields of chemistry, biochemistry and materials science to identify and characterize chemical compounds. Understanding the interpretation of infrared spectra is crucial for accurate analysis of complex samples.
In this online course, you will learn the basics of infrared spectroscopy and its application in chemical analysis. You will learn how to interpret infrared spectra, including identifying characteristic peaks and understanding their relationship to specific chemical functional groups and ligands. You will also learn how to use infrared spectroscopy for quantitative analysis, and how to analyze complex spectra.

By the end of this course, you will have a strong foundation in infrared spectroscopy and will be able to analyze and interpret infrared spectra with confidence. This course is suitable for students and professionals in the fields of chemistry, biochemistry and materials science who wish to expand their knowledge of analytical techniques

Join us to unleash the potential of infrared spectroscopy in your research and analysis.

[French]: La Spectroscopie infrarouge (IR) is an analytical technique for permanently performing vibrational modes of molecules. It is large in the domains of chimie, biochemistry and materia science to identifier and react to chemical compositions. Comprendre l'interpretation des Specters IR is essential for analyzing précise d'échantillons complexes.

Color formations in line, the broad application of infrared conformational rules and the application of its son in chimique analysis. Numerous opinions and comments on the infrared spectra, the testimony in the selected images and the close relationship between the artistic groups and the relationships between chimeric species. également également à utiliser la Spectroscopie IR for quantitative analysis and spectrum complex analyzer.

Accurate disc formation, solid base and IR spectroscopy et al are able to analyze and interpret infrared spectra in confidence. These courses are addressed to students and professions in the fields of chemistry, the body, biochemistry and the science of matériaux that souhaitent élargir leurs connexiones des analytical technologies.

Rejoin us to edit the effective IR spectroscopie in your searches and analysis.
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This preparation session is dedicated to students aiming for preparatory classes for scientific Grandes Ecoles (CPGE), with a particular focus on the subjects of Physics and Engineering Sciences. The goal is to strengthen the foundations and deepen the knowledge to succeed.

1. Mechanics:
Kinematics: Study of rectilinear and circular movements, position vectors, speed and acceleration.
Dynamics: Newton's laws, work and energy, kinetic energy theorem.

2. Electromagnetism / Electrokinetics:
Electrostatics: Electric charges and fields, electric potential, capacitance.
Magnetostatics: Magnetic fields, Lorentz forces, electromagnetic induction.
Alternating Currents: RLC circuits, resonance, impedance.

3. Thermodynamics:
Principles of thermodynamics: Internal energy, heat, work, first and second principles.
Ideal and real gases: Equations of state, thermodynamic transformations.

4. Industrial sciences:
Automatic Linear, Kinematic, Static.

For more information and to register for the preparation session, please contact me.

Good preparation and success in your studies!

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Mechanics of Materials is a foundational course in engineering that explores the behavior of materials under various loading conditions. In this course, students study the relationship between external forces applied to a material and the resulting internal stresses and strains. Topics covered include axial loading, torsion, bending, and combined loading, as well as stress and strain analysis in beams, columns, and shafts. Through theoretical concepts and practical applications, students learn to analyze and design structural components to ensure they can withstand the loads placed upon them while maintaining structural integrity and safety. Mechanics of Materials is essential for engineers in fields such as civil, mechanical, aerospace, and materials engineering, providing a fundamental understanding of how materials behave under different mechanical conditions.
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Hello everyone and have a nice day,

As a teacher, teacher, student, teacher, professional teacher, and professional student/coaching/unterstützung in MATLAB/Simulink/embedded programme/automatic code generation...etc., you can also contact him.

Use this device for your Master Elektrotechnik-Ingenieur with a new academic design and installation tool in the basic model and use the Matlab/Simulink-Model for embedded System and Regelung on the E-Motoren with a fan and pass it. and Anforderungen.

For more information, please contact us. Unterstützung professionelle in Matlab, Simulink, C, Microcontroller and embedded Programmierung an.

There is a lot of expertise in this article, too:
- Matlab, Simulink,
- S-Functions, Simulink Modelle, Model Basierte Programmierung and Code Generation,
- Electrical drives and E-Motoren,
- STM32 Microcontroller,
- Rapid Prototyping mittels dSPACE HiL-Systeme and Echtzeit-Systeme,
- Power electronics / Leistungselektronik,
- Betreuung and Unterstützung während verschiedenenenenenen der projecterbeiten,
- ...

There is a lot of contact with you.

Very nice greetings
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This class is designed for engineering students and pre-university students who want to build a solid foundation in the most essential math topics used in engineering and technical fields.
→ Calculus
→ Linear Algebra
→ Ordinary and Partial Differential Equations (ODEs & PDEs)
→ Numerical Analysis

Whether you're currently struggling with these subjects or preparing to study engineering soon, this course will help you understand the core concepts in a clear, step-by-step, and application-focused way, with examples that actually make sense in real life and engineering scenarios.
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Engineering and design become much easier when analysis, geometry, technical representation, digital modelling, spatial reasoning, and visual communication are connected within one coherent problem-solving process.

I am a PhD-qualified engineer, university professor, researcher, technical trainer, designer, and multidisciplinary consultant with more than 30 years of experience across engineering, teaching, project work, CAD, technical drawing, 3D modelling, GIS, visualization, information systems, and professional problem solving.

This class provides a personalized pathway for school and university students, engineering and design learners, architects and technicians, researchers, professionals, career changers, and adult learners. Depending on your goals, we can focus deeply on one specialized area or connect several areas within a complete technical workflow.

PHYSICS & APPLIED ENGINEERING SCIENCE
• Mechanics: motion, forces, Newton’s laws, work, energy, momentum, and rotational motion
• Statics, dynamics, equilibrium, torque, and engineering applications
• Fluids, pressure, buoyancy, density, and basic fluid mechanics
• Heat, temperature, thermodynamics, and energy transfer
• Waves, oscillations, sound, optics, electricity, and magnetism according to the learner’s level
• Mathematical modelling of physical systems
• Units, dimensions, vectors, graphs, and interpretation of experimental or engineering data
• Connecting physical principles to engineering design, calculations, and real-world technical problems

CHEMISTRY & ENGINEERING MATERIALS
• Atomic structure, chemical bonding, molecular structure, and periodic trends
• Stoichiometry, chemical reactions, solutions, concentrations, gases, and equilibrium
• Acids, bases, oxidation-reduction, and introductory thermochemistry
• Properties and behaviour of engineering materials
• Metals, polymers, ceramics, composites, and material-selection principles when relevant
• Connecting chemical principles to materials, manufacturing, environmental, and engineering applications

ENGINEERING DESIGN & PROBLEM SOLVING
• Understanding and structuring engineering problems
• Translating requirements into technical objectives
• Identifying constraints, assumptions, variables, and criteria
• Engineering calculations and quantitative reasoning
• Applied mechanics and engineering fundamentals when relevant
• Dimensional reasoning and unit consistency
• Design alternatives and trade-off analysis
• Verification and reasonableness checking
• Engineering decision making
• Design methodology and iterative improvement
• Interpreting technical specifications
• Connecting analysis to drawings, models, and deliverables
• Engineering-management and multidisciplinary project contexts

AUTOCAD & TECHNICAL DRAFTING
• AutoCAD interface and efficient workflows
• Coordinate systems and precise geometric construction
• 2D drafting fundamentals
• Layers, properties, object organization, and standards
• Blocks and reusable drawing content
• Dimensions, annotations, text, and hatching
• Model space and paper space
• Layouts, viewports, scales, and plotting
• Technical drawing principles
• Reading and interpreting engineering drawings
• Plans, sections, elevations, and details
• Drawing organization and documentation quality
• Advanced drafting workflows
• AutoCAD 3D concepts when relevant
• Improving speed, accuracy, and drawing consistency

BIM & REVIT WORKFLOWS
• BIM concepts and model-based thinking
• Revit project organization
• Levels and grids
• Walls, floors, roofs, and building elements
• Doors, windows, components, and families
• Views, sections, elevations, and schedules
• Annotation and documentation workflows
• Sheets and presentation standards
• View templates and graphical consistency
• Family-library organization
• BIM coordination principles
• Connecting models to professional documentation
• Developing structured Revit templates and repeatable workflows

3D MODELLING & PARAMETRIC DESIGN
• 3D geometric thinking
• Curves, surfaces, solids, and meshes
• Constructive and feature-based modelling concepts
• Precision modelling
• Product and engineering geometry
• Architectural and spatial modelling
• Rhino 3D workflows
• Grasshopper and visual parametric thinking
• Parameters, relationships, dependencies, and constraints
• Algorithmic generation of geometry
• Reusable and adaptive design logic
• Design iterations and controlled variation
• SolidWorks and Inventor workflows when relevant
• 3D Studio Max and visualization contexts when relevant
• Connecting models to drawings, analysis, fabrication, or presentation

CAD/CAM & MANUFACTURING WORKFLOWS
• From CAD geometry to manufacturable components
• Design-for-manufacturing principles
• Introduction to CAM concepts and machining strategies
• CNC fundamentals, coordinate systems, tools, operations, and toolpaths when relevant
• SolidWorks CAD/CAM workflows
• Verification, simulation, and interpretation of manufacturing outputs

GIS, MAPPING & SPATIAL ANALYSIS
• Foundations of Geographic Information Systems
• Spatial data models
• Vector and raster concepts
• Coordinate systems and projections
• Georeferencing
• Spatial data collection and organization
• Attribute data and database relationships
• Geodatabases
• Selection and spatial queries
• Buffering, overlay, proximity, and spatial analysis
• Thematic mapping
• Cartographic principles
• Spatial patterns and decision support
• ArcGIS Desktop and ArcGIS Pro workflows when relevant
• Remote-sensing and imagery concepts when relevant
• Integrating maps, analysis, and professional reporting

GRAPHIC DESIGN & VISUAL COMMUNICATION
• Principles of visual communication
• Composition and layout
• Visual hierarchy
• Typography
• Colour and contrast
• Image preparation and editing
• Vector graphics and illustration
• Technical diagrams and infographics
• Maps and spatial presentation
• Engineering and architectural presentation
• Portfolio and project-board development
• Presentation graphics
• Adobe Photoshop workflows
• Adobe Illustrator workflows
• Adobe InDesign workflows
• Connecting technical accuracy with visual clarity

Depending on your objectives, practical work may involve AutoCAD, Revit, BIM workflows, Rhino, Grasshopper, SolidWorks, Inventor, 3ds Max, ArcGIS Desktop, ArcGIS Pro, QGIS, Adobe Photoshop, Illustrator, InDesign, SketchUp, Figma, Canva or other relevant technical and design tools.

My teaching approach follows a structured workflow:
define the problem → understand the requirements → analyze the constraints → develop the geometry or data structure → create the drawing, model, or spatial analysis → verify accuracy → refine the solution → communicate it clearly

I do not simply demonstrate isolated commands. I help you understand why a workflow is appropriate, how information should be structured, how accuracy can be verified, how alternative solutions can be evaluated, and how the final technical idea should be communicated professionally.

We can work with your course syllabus, engineering problem, technical drawing, CAD file, Revit/BIM model, 3D model, parametric definition, GIS dataset, map, design project, portfolio, graphic layout, or professional workflow challenge.

Whether you are learning your first CAD commands, solving an engineering problem, developing a BIM workflow, building a 3D or parametric model, conducting spatial analysis, or improving technical visual communication, I will adapt the sessions to your level, objectives, and pace.

My goal is to help you become an independent technical problem solver who can analyze, design, model, verify, visualize, and communicate solutions with confidence.
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I'm a working MEP engineer, currently building Python automation for Revit workflows daily - plan checks, model coordination, and repetitive drafting tasks. I teach other engineers, architects, and BIM professionals how to do the same, using pyRevit and real project workflows, not toy examples.

Topics include:
pyRevit fundamentals and setup
Automating repetitive Revit tasks (model checks, plan generation, data extraction)
Writing custom scripts for your firm's specific workflows
Applying Python automation to real MEP/BIM projects
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Professeur agrégé de Sciences de l'ingénieur, j’aide élèves et étudiants à réussir examens et concours. J’interviens aux classes préparatoires (MPSI, MP, PSI...) et jusqu’à l’université (Licence ). Ma méthode : comprendre le cours, pratiquer avec rigueur, structurer le raisonnement et attaquer des exercices et problèmes bien choisis. Chaque séance inclut exercices ciblés, conseils méthodologiques, et suivi personnalisé. Vous recevez un enregistrement vidéo plus un PDF annoté après chaque cours. Cours en ligne via Google Meet, 7 jours sur 7, avec flexibilité horaire. Je reste joignable entre les séances pour répondre aux questions. Contactez-moi pour un premier échange.
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In-depth study of mathematical concepts up to post-baccalaureate level.

Application of problem-solving methods to engineering sciences.

Coaching to find YOUR learning method and succeed in all your exams

Computer skills refresher course

Learning 3D modeling and engineering software
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### Courses in Mathematics, Physics, Chemistry and Engineering Sciences

As an engineering student in **mechatronics and instrumentation**, I offer private lessons tailored to the level and objectives of each student, **from middle school to higher education**.

My approach is progressive, clear, and geared towards understanding. The goal is to enable the student to **understand the concepts, master the problem-solving methods, and gradually gain autonomy**, rather than simply memorizing formulas.

**Mathematics:** algebra, functions, derivatives, integrals, differential equations, matrices, probability and statistics, with exercises adapted to the student's level.

**Physics and Chemistry:** mechanics, electricity, electromagnetism, thermodynamics, waves and physical phenomena, as well as the basics of chemistry. Concepts are explained through examples and concrete applications.

**Mechanics:** kinematics, statics, dynamics, energy, strength of materials, mechanical systems and modeling.

**Electricity and Electrotechnics:** electrical circuits, fundamental laws, direct and alternating current, electrical power, three-phase systems, electrical machines and basics of electrotechnics.

**Electronics:** electronic components, diodes, transistors, amplifiers, analog and digital circuits, as well as the basics of embedded systems.

My background in **mechatronics engineering and instrumentation** allows me to link different disciplines and offer a concrete approach through examples from **industry, automation, mechanical and electrical systems and instrumentation**.

Depending on the needs, the courses can be devoted to **understanding the course material, exercises, preparing for exams and tests, refresher courses or further study**.

Each session is tailored to the student's level in order to gradually build an effective working method and genuine autonomy.
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As a civil engineer with an EPFL degree, I have been working in a design office since 2020: excavations, retaining walls, foundations, numerical modeling, and site supervision. I mentor junior engineers and interns in this role, and I write reports explaining these calculations to clients who are not engineers.

I support students from EPFL, HES and vocational schools in the branches that filter: statics, strength of materials, reinforced concrete, soil mechanics and foundations.

We work on your past exams and series. For geotechnics and foundations, I show you how these calculations are actually carried out in the office and according to which standards, which makes the material much more understandable than a formula learned by heart.

I also cover technical professional maturity and preparation for admission to a University of Applied Sciences.

Tools I use daily: PLAXIS, GEO5, K-REA, AutoCAD and reading execution plans.

Online courses with a shared whiteboard, or in person in the Neuchâtel region.
Good-fit Instructor Guarantee
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