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Since October 2021
Instructor since October 2021
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2 repeat students
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Training and Project Management on SolidWorks, CATIA, MATLAB/Simulink, ANSYS and Scilab
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From 41.66 C$ /h
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As an expert engineer and experienced trainer, I offer specialized training and personalized support for your projects in mechanical design, digital simulation and programming.

Skills and tools taught:
🛠️ SolidWorks: 3D modeling, assemblies, mechanical simulations and design optimization.
📐 CATIA: Advanced design, complex surfaces, and analysis of mechanical systems.
🔬 MATLAB/Simulink: Programming, dynamic modeling, and system simulations.
🔥 ANSYS: Finite element analysis (FEA), thermodynamics, and structural mechanics.
📊 Scilab: Numerical calculation, scientific programming, and modeling.

Who is this training for?
🎓 Students in mechanical, aeronautical, or industrial engineering.
🏭 Professionals wishing to improve or integrate these tools into their projects.
🚀 Passionate about CAD, simulation and advanced engineering.

Why choose my training?
✔️ Practical methodology with concrete cases and targeted exercises.
✔️ Support for your academic or industrial projects.
✔️ Training adapted to beginner, intermediate and advanced levels.
✔️ Complete educational materials: tutorials, exercises and source files.

Course format:

Organization: Individual or group sessions.
Modalities: Online or in person depending on your preferences.
Flexibility: Duration and pace adapted to your needs.
Extra information
Associate professor and trainer of mechanical engineering capable of teaching and training university students for:
COMPETITION PREPARATION
TIPE SUPERVISION (CPGE)
REALIZATION OF PROJECTS
REALIZATION OF HOMEWORK OR AT HOME
Location
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At student's location :
  • Around Paris, France
  • Around Casablanca, Morocco
  • Around Lausanne, Switzerland
  • Around Brussels, Belgium
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At teacher's location :
  • Montréal, QC, Canada
  • Québec, QC, Canada
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Online from France
About Me
Associate professor and doctor in mechanical engineering, I give additional courses in order to combine my teaching passion and my expertise. My commitment aims to guide students towards academic excellence, inspiring them to explore mechanical engineering and develop essential skills for their professional future.
Education
2020 – 2023 Doctorate in mechanical engineering

Subject: Dynamics of poly-articulated mechanical systems: Case of
cooperative industrial multi-robot systems.

2019 – 2020 Master’s degree specialized in mechanical engineering
National School of Arts and Crafts (ENSAM).
2010 – 2013 Preparation cycle for external mechanical engineering aggregation


Higher normal school of technical education
Academy of Poitier, France.
Experience / Qualifications
Currently
Associate Professor in Preparatory Classes for Grandes Ecoles (CPGE)
Professor of “industrial engineering sciences & Mechanical Engineering” for the MP and TSI sectors. CPGE.

2022 – 2023
Part-time professor at the Ecole Normale Supérieure de l'enseignement technique (ENSET)

2020 – 2023
Part-time professor of Mechanical Construction & CAD
Higher school of aeronautics and high technology, SUPAERO

2021 – 2022 Professor of engineering sciences and sciences
digital and technology Lycée Français Louis Massignon.
Age
Children (7-12 years old)
Teenagers (13-17 years old)
Adults (18-64 years old)
Seniors (65+ years old)
Student level
Intermediate
Advanced
Duration
60 minutes
The class is taught in
French
English
Reviews
Availability of a typical week
(GMT -05:00)
New York
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At teacher's location and 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
As an experienced teacher with a PhD in mechanical engineering, I offer specialized courses to master essential concepts in mechanical engineering:

Modules taught:
🔹 Continuous Media Mechanics (MMC): Introduction and in-depth study of the basics of continuous media mechanics, behavior laws, and practical applications.
🔹 Elasticity: Study of deformations and stresses in elastic solids, theory and resolution of complex problems.
🔹 Strength of Materials (RDM): Analysis and calculation of stresses, deformations, and dimensioning of mechanical structures.

Who are these courses for?
🎓 Students in preparatory classes, engineering schools, or technical faculties.
🏗️ Professionals wishing to strengthen their knowledge in mechanical engineering.

Why choose my courses?
✔️ Courses adapted to beginner to advanced levels.
✔️ Teaching based on concrete examples and typical exercises.
✔️ Personalized support for your projects, exams or competitions.
✔️ Clear and detailed course materials provided in each session.

Course organization:

Format: Individual or group lessons.
Modality: Online or in person (depending on your location).
Duration: Flexible depending on your objectives.
Read more
Graduated from the external aggregation in Industrial Sciences and holder of a doctorate in mechanical engineering, I offer courses adapted for students of technical schools and faculties. My expertise allows me to offer quality support to master the fundamental and advanced concepts of the following disciplines:

Courses offered:
🔧 Solid mechanics: Analysis and understanding of mechanical phenomena.
📐 Rational mechanics: Resolution of mechanical systems using rigorous approaches.
⚙️ Strength of Materials (RDM) and Mechanical Materials (MMC): Understanding the mechanical properties of structures and materials.
🏗️ Mechanical construction: Design, dimensioning, and production of mechanical systems.
💻 Industrial computing: Programming and automation in an industrial context.

Why choose my courses?
✔️ Clear and structured teaching methodology.
✔️ Practical and theoretical experiences adapted to academic expectations.
✔️ Preparation for exams, competitions, and technical projects.

Course format:

Target audience: Students from leading universities, technical faculties, and engineering training centers.
Organization: Individual or group courses, in person or online.
Teaching materials: Corrected exercises, detailed summaries, and practical simulations.
Read more
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Cyril
Course description:

This comprehensive course is designed for architects, designers, engineers, and creatives who are passionate about 3D modeling and parametrics. You will learn to master Rhino 3D, a powerful 3D modeling software, as well as Grasshopper, a parametric plugin that allows you to generate complex shapes using visual programming.

Course objectives:

Learn how to use Rhino's basic and advanced tools to create accurate and detailed 3D models.
Master the concepts of parametric modeling using Grasshopper to generate dynamic and adaptive shapes.
Understand how Rhino and Grasshopper integrate to automate design processes and improve efficiency.
Create real-world projects ranging from designing simple geometric shapes to complex, custom structures.
Course content :

Introduction to Rhino 3D: Interface, basic commands, and navigation in the 3D workspace.
Advanced modeling techniques: Creation of surfaces, solids and networks of curves.
Introduction to Grasshopper: Understanding the logic of visual programming and its applications in parametric design.
Parametric Design: Using Grasshopper to create complex shapes based on variables and constraints.
Practical application: Completing a complete project by combining Rhino and Grasshopper, from design to completion.
Prerequisites: No specific prerequisites are necessary for this course. However, a basic knowledge of 3D design or modeling software is a plus.

Target audience :

Architects and designers wishing to deepen their skills in 3D modeling and parametric design.
Engineers and technicians interested in design automation and the integration of digital solutions into their creative process.
Methodology: The course combines theoretical explanations with practical exercises and case studies. Question-and-answer sessions and workshops will allow participants to work on personal projects throughout the training.
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Similar classes
arrow icon previousarrow icon next
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Cyril
Course description:

This comprehensive course is designed for architects, designers, engineers, and creatives who are passionate about 3D modeling and parametrics. You will learn to master Rhino 3D, a powerful 3D modeling software, as well as Grasshopper, a parametric plugin that allows you to generate complex shapes using visual programming.

Course objectives:

Learn how to use Rhino's basic and advanced tools to create accurate and detailed 3D models.
Master the concepts of parametric modeling using Grasshopper to generate dynamic and adaptive shapes.
Understand how Rhino and Grasshopper integrate to automate design processes and improve efficiency.
Create real-world projects ranging from designing simple geometric shapes to complex, custom structures.
Course content :

Introduction to Rhino 3D: Interface, basic commands, and navigation in the 3D workspace.
Advanced modeling techniques: Creation of surfaces, solids and networks of curves.
Introduction to Grasshopper: Understanding the logic of visual programming and its applications in parametric design.
Parametric Design: Using Grasshopper to create complex shapes based on variables and constraints.
Practical application: Completing a complete project by combining Rhino and Grasshopper, from design to completion.
Prerequisites: No specific prerequisites are necessary for this course. However, a basic knowledge of 3D design or modeling software is a plus.

Target audience :

Architects and designers wishing to deepen their skills in 3D modeling and parametric design.
Engineers and technicians interested in design automation and the integration of digital solutions into their creative process.
Methodology: The course combines theoretical explanations with practical exercises and case studies. Question-and-answer sessions and workshops will allow participants to work on personal projects throughout the training.
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