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from17.82EUR/ h
, Maths, CAD Auto desk inventor , Mechanical Engineering
Mechanical engineering is a broad field that covers various topics related to the design, analysis, and manufacturing of mechanical systems. Here’s a brief overview of the core subjects you would typically study during a mechanical engineering program at university:
Mathematics:
Calculus: For understanding changes in systems, modeling dynamic behavior, and analyzing forces and motions.
Linear Algebra: Used for solving systems of equations, matrix operations, and structural analysis.
Differential Equations: Essential for modeling physical systems that change over time (e.g., motion, heat, fluid flow).
Probability and Statistics: For analyzing data, reliability, and risks in engineering systems.
Physics:
Mechanics: Studying the forces and motion in solid bodies (statics and dynamics).
Thermodynamics: Understanding energy systems, heat transfer, and the conversion of energy between mechanical forms.
Fluid Mechanics: Focuses on the behavior of fluids (liquids and gases) in motion and at rest, which is essential for systems like pumps, engines, and turbines.
Material Science: Exploring the properties of materials and how they behave under various conditions (stress, temperature, etc.).
Statics and Dynamics:
Statics: Study of forces in equilibrium, such as the forces on structures or machines that are not moving.
Dynamics: Study of forces and motion in systems that are in motion, including vibrations, acceleration, and kinematics.
Strength of Materials:
Learning how materials respond to various forces, including stress, strain, bending, and torsion. This is essential for designing durable and safe structures and machines.
Manufacturing Processes:
Understanding different manufacturing techniques like casting, welding, machining, 3D printing, and material forming.
Concepts of production planning, quality control, and design for manufacturability.
Control Systems:
Study of systems that maintain desired outputs (e.g., in robotics or automated systems). This includes understanding feedback loops and stability.
Machine Design:
Focus on designing mechanical components (gears, shafts, bearings) to perform specific tasks reliably and efficiently.
Heat Transfer:
Studying how heat moves through materials and fluids, which is critical for applications like engines, HVAC systems, and electronics cooling.
Dynamics of Machinery:
The study of moving mechanical components, their vibrations, and how to design them to minimize failure and wear.
Computational Methods:
Learning how to use software tools (like CAD, FEM, and CFD) for designing, simulating, and analyzing mechanical systems.
Robotics and Automation:
Study of robotic systems, automation in manufacturing, and how to integrate mechanical components with electronic control systems.
Renewable Energy and Sustainability:
Topics related to sustainable engineering solutions, energy-efficient systems, and the use of renewable energy sources (wind, solar, etc.).
Mathematics:
Calculus: For understanding changes in systems, modeling dynamic behavior, and analyzing forces and motions.
Linear Algebra: Used for solving systems of equations, matrix operations, and structural analysis.
Differential Equations: Essential for modeling physical systems that change over time (e.g., motion, heat, fluid flow).
Probability and Statistics: For analyzing data, reliability, and risks in engineering systems.
Physics:
Mechanics: Studying the forces and motion in solid bodies (statics and dynamics).
Thermodynamics: Understanding energy systems, heat transfer, and the conversion of energy between mechanical forms.
Fluid Mechanics: Focuses on the behavior of fluids (liquids and gases) in motion and at rest, which is essential for systems like pumps, engines, and turbines.
Material Science: Exploring the properties of materials and how they behave under various conditions (stress, temperature, etc.).
Statics and Dynamics:
Statics: Study of forces in equilibrium, such as the forces on structures or machines that are not moving.
Dynamics: Study of forces and motion in systems that are in motion, including vibrations, acceleration, and kinematics.
Strength of Materials:
Learning how materials respond to various forces, including stress, strain, bending, and torsion. This is essential for designing durable and safe structures and machines.
Manufacturing Processes:
Understanding different manufacturing techniques like casting, welding, machining, 3D printing, and material forming.
Concepts of production planning, quality control, and design for manufacturability.
Control Systems:
Study of systems that maintain desired outputs (e.g., in robotics or automated systems). This includes understanding feedback loops and stability.
Machine Design:
Focus on designing mechanical components (gears, shafts, bearings) to perform specific tasks reliably and efficiently.
Heat Transfer:
Studying how heat moves through materials and fluids, which is critical for applications like engines, HVAC systems, and electronics cooling.
Dynamics of Machinery:
The study of moving mechanical components, their vibrations, and how to design them to minimize failure and wear.
Computational Methods:
Learning how to use software tools (like CAD, FEM, and CFD) for designing, simulating, and analyzing mechanical systems.
Robotics and Automation:
Study of robotic systems, automation in manufacturing, and how to integrate mechanical components with electronic control systems.
Renewable Energy and Sustainability:
Topics related to sustainable engineering solutions, energy-efficient systems, and the use of renewable energy sources (wind, solar, etc.).
Location
Online via webcam
At student's location: Around Castleford, United Kingdom








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General info
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: | Arabic, English |
About Me
I am a hardworking individual who always strives to do my best in all that I do. I am punctual, adaptable, and flexible.Skills
Languages:
• Arabic: Native
• English: Very Good
• French: Fair
Computer:
• SolidWorks
• AutoCAD
• Inventor
• MATLAB
• ADAMS
• CFD (ANSYS/Fluent)
Education
EducationB.Sc. in Mechanical Engineering
Sebha University, Libya (1996-2001)
• General Grade: 69% with honours
• Project: On internal combustion engine
• Project Grade: Excellent
M.Sc. in Applied Engineering
University of Tripoli, Libya (2005-2008)
• General Grade: 3.14 out of 4
• Thesis Title: Modelling and Control of Front Wheel Steering Vehicle Dynamics
• Premaster Courses:
o Finite Element Method
o Modern Control Theory
o Theory of Shell
o Advanced Theory of Elasticity
o Advanced Theory of Plasticity
o Linear and Non-linear Vibration
o Acoustics and Noise Control
Experience / Qualifications
Sebha University, Libya 2• Lecturer in Mechanical Engineering (2008-2012)
3- University of Huddersfield, UK
• PhD Researcher (2014-2018)
o Research on crosswind stability of ground vehicles using wind tunnel, CFD models, and multi-body dynamic techniques.
4- Further Education FE & Higher Education at Colleges
• Lecturer (Short Contract) (Feb 2019 – May 2019) at Darlington college
o Delivered lectures on Engineering fundamentals & principles, Engineering Design, and Pneumatic and Hydraulic systems.
•
• Work at Nissan on COVID time, then
Lecturer (Short Contract) (Feb 2021 – July 2021) at Gateshead college
o Delivered lectures on Engineering fundamentals & principles, Engineering Design, and Pneumatic and Hydraulic systems.
• Mechanical Engineering Lecturer (Feb 2022 – Present)
o Designed and delivered lectures for L2, T-level, BTEC(L3), HNC(L4) and up to L5 mechanical engineering students.
o Worked at New Durham College full academic year (2022-2023).
o Barnsley College(March 2024-July2024).
o Bury college (Sep2024-Present)
5- Nissan Company
• Mechanical Engineer (May 2019 – March 2021, June 2023 – October 2023)
o Worked in the Vehicle Quality Assurance Department.
Central Employment Agency / Adient Seating UK
• Production Department Worker (August 2021 – Feb 2022)
o Worked on the assembly line and performed inspection jobs.
Mechanical engineering is a broad field that covers various topics related to the design, analysis, and manufacturing of mechanical systems. Here’s a brief overview of the core subjects you would typically study during a mechanical engineering program at university:
Mathematics:
Calculus: For understanding changes in systems, modeling dynamic behavior, and analyzing forces and motions.
Linear Algebra: Used for solving systems of equations, matrix operations, and structural analysis.
Differential Equations: Essential for modeling physical systems that change over time (e.g., motion, heat, fluid flow).
Probability and Statistics: For analyzing data, reliability, and risks in engineering systems.
Physics:
Mechanics: Studying the forces and motion in solid bodies (statics and dynamics).
Thermodynamics: Understanding energy systems, heat transfer, and the conversion of energy between mechanical forms.
Fluid Mechanics: Focuses on the behavior of fluids (liquids and gases) in motion and at rest, which is essential for systems like pumps, engines, and turbines.
Material Science: Exploring the properties of materials and how they behave under various conditions (stress, temperature, etc.).
Statics and Dynamics:
Statics: Study of forces in equilibrium, such as the forces on structures or machines that are not moving.
Dynamics: Study of forces and motion in systems that are in motion, including vibrations, acceleration, and kinematics.
Strength of Materials:
Learning how materials respond to various forces, including stress, strain, bending, and torsion. This is essential for designing durable and safe structures and machines.
Manufacturing Processes:
Understanding different manufacturing techniques like casting, welding, machining, 3D printing, and material forming.
Concepts of production planning, quality control, and design for manufacturability.
Control Systems:
Study of systems that maintain desired outputs (e.g., in robotics or automated systems). This includes understanding feedback loops and stability.
Machine Design:
Focus on designing mechanical components (gears, shafts, bearings) to perform specific tasks reliably and efficiently.
Heat Transfer:
Studying how heat moves through materials and fluids, which is critical for applications like engines, HVAC systems, and electronics cooling.
Dynamics of Machinery:
The study of moving mechanical components, their vibrations, and how to design them to minimize failure and wear.
Computational Methods:
Learning how to use software tools (like CAD, FEM, and CFD) for designing, simulating, and analyzing mechanical systems.
Robotics and Automation:
Study of robotic systems, automation in manufacturing, and how to integrate mechanical components with electronic control systems.
Renewable Energy and Sustainability:
Topics related to sustainable engineering solutions, energy-efficient systems, and the use of renewable energy sources (wind, solar, etc.).
Ask a question
Send a message explaining your needs and أبوبكر will reply soon:
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Ex. "Hi, when are you available to meet for a lesson?"
Availability of a typical week
(GMT -04:00) New York
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from 17.82€Online via webcam
100% Satisfaction Guarantee
Good-fit Instructor Guarantee
If you are not satisfied after your first lesson, Apprentus will find you another instructor or will refund your first lesson.
Online reputation
- Instructor since March 2025
- Phone number verified
- Google connected
Availability of a typical week
(GMT -04:00) New York
Mon | Tue | Wed | Thu | Fri | Sat | Sun | |
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2 | Monday at 2:00 | Tuesday at 2:00 | Wednesday at 2:00 | Thursday at 2:00 | Friday at 2:00 | Saturday at 2:00 | Sunday at 2:00 |
3 | Monday at 3:00 | Tuesday at 3:00 | Wednesday at 3:00 | Thursday at 3:00 | Friday at 3:00 | Saturday at 3:00 | Sunday at 3:00 |
4 | Monday at 4:00 | Tuesday at 4:00 | Wednesday at 4:00 | Thursday at 4:00 | Friday at 4:00 | Saturday at 4:00 | Sunday at 4:00 |
5 | Monday at 5:00 | Tuesday at 5:00 | Wednesday at 5:00 | Thursday at 5:00 | Friday at 5:00 | Saturday at 5:00 | Sunday at 5:00 |
6 | Monday at 6:00 | Tuesday at 6:00 | Wednesday at 6:00 | Thursday at 6:00 | Friday at 6:00 | Saturday at 6:00 | Sunday at 6:00 |
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from 17.82€Online via webcam
Good-fit Instructor Guarantee
If you are not satisfied after your first lesson, Apprentus will find you another instructor or will refund your first lesson.
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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,
• Straight As and A*s in (GCSE) Maths, Physics, Chemistry, Biology, English, and Geography.
Having been mentored and tutored myself, I understand the challenges students face. Through my own experiences of overcoming obstacles and achieving success, I’m passionate about helping others do the same. Let’s work together to ensure you reach your full potential, both academically and personally!
tutoring in math and science (physics, chemistry, biology); Tutor in Math and Natural Sciences
(for English description see below)
Hi there,
I offer tutoring for math and science subjects here.
Regardless of whether it's school, university or work - having to learn to pass a subject is neither fun nor much point, as you'll soon forget most of it.
But how can it be better?
I have experienced several times how much of success depends on the emotions associated with learning. That's why I'll try to create an environment in which you feel free to make mistakes - because mistakes are important for learning! I rely on understanding, patience and curiosity to develop a positive relationship with learning rather than applying pressure.
Following the neurobiologist Gerald Hüther, I see the art in setting just the right big challenges to be exciting but not frightening, so that you automatically develop joy in discovery.
I would be happy to have an introductory meeting in order to take your needs and wishes into account from the outset.
Background information about me:
I am a qualified engineer (mechanical engineering) with 3 years of work experience, as well as a master's degree in bionics (cross-sectional discipline between biology and engineering) and a PhD in environmental protection of mountain regions. I was active as a youth leader at the Alpine Club.
I have been giving tutoring lessons on the side ever since I was at school.
I am pleased to meet you.
Hello,
I offer tutoring for maths and science subjects.
Whether at school, university or work - learning to pass a subject is neither fun nor makes much sense, as you soon forget most of it.
But how can it be better?
I have learned many times how much success depends on the emotions associated with learning. That's why I try to create an environment in which you feel free to make mistakes - because mistakes are important for learning! I focus on understanding, patience and curiosity in order to develop a positive relationship with learning rather than exerting pressure.
Following the neurobiologist Gerald Hüther, I see the art in setting just the right amount of challenges to be exciting, but not frightening, so that you automatically develop the joy of discovery.
I would be happy to meet with you to discuss your needs and wishes from the outlet.
Background information about me:
I am a graduate engineer (mechanical engineering) with 3 years of work experience, as well as a master's degree in bionics (cross-sectional discipline between biology and engineering) and have a PhD in environmental protection of mountain regions. I was active in the Alpine Club as a youth leader.
I have been tutoring on the side since my own school days.
I look forward to getting to know you.
Maths, English and science (physics, chemistry and biology) tutoring - offering primary, 11+ and GCSE level
Offering tutoring including primary school, 11+ and GCSE.
Offering Maths, English (literature and language), Biology, Chemistry and Physics.
Attended The Tiffin Girls' School through 11+ entrance so can offer 11+ support.
Currently attending Kings College School Wimbledon studying Biology, Chemistry, Philosophy and Psychology at A-level.
Achieved 10 A* at GCSE.
I am a caring, supportive teacher and can use my own personal primary, 11+ and GCSE experiences to provide exceptional support to students.
I can also offer up to GCSE level support in French, geography and computer science.
Training and Project Management on SolidWorks, CATIA, MATLAB/Simulink, ANSYS and Scilab
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.
🇸🇬 [Grade 1 to 6] Singapore Math & Science Tutor 🇸🇬🇸🇬
Hi there! 👋 I’m a patient and passionate tutor from Singapore 🇸🇬 with several years of experience helping Primary school students (ages 6 to 12) build a strong foundation in Math and Science — the Singaporean way!
I specialise in teaching Primary 1 to Primary 6, using proven methods from the Singapore MOE curriculum:
✅ clear explanations
✅ step-by-step problem-solving
✅ Real-life applications to make learning meaningful
Whether your child needs extra support or wants to get ahead, I personalise every lesson to match their learning pace and style. My lessons are interactive, engaging, and focused on building confidence, not just completing worksheets.
🔹 Taught by a native Singaporean tutor
🔹 Lessons in English (with Chinese support if needed)
🔹 Concept mastery, test prep & homework help
🔹 Online sessions (with in-person options in Bangkok or Singapore)
Let’s help your child feel more confident and capable — one fun and focused lesson at a time!