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For over a decade, our private Mechanical Engineering tutors have been helping learners improve and fulfil their ambitions. With one-on-one lessons online, you’ll enjoy high-quality, personalised teaching that’s tailored to your goals, availability, and learning style.

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234 online mechanical engineering teachers

Trusted teacher: 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.).
Cad software · Mechanical engineering
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(3 reviews)
Azdine - Rabat, Morocco27€
Trusted teacher: As an Associate Professor of Industrial Engineering (CPGE), a State Engineer in Mechanical Engineering and a Doctor (PhD), I offer private mechanics lessons all year round, remotely or at home, for pupils and students. For who ? Objective of excellence (improvement, ranking, selective applications). Refresher courses in case of gaps or weak foundations. Consolidation of fundamentals and mastery of useful techniques throughout the course. Targeted preparation for tests, exams and oral presentations. CPGE competitive entrance exams: CCINP, Centrale, Mines-Ponts, MP, PSI, TSI streams. Technological Baccalaureate: STM, STE, SMB (refresher and intensive training). Project support (final year project, TIPE, mini-projects). Revision/preparation: review the essentials of the past year and get ahead. Subjects taught Solid mechanics: kinematics, statics, dynamics, energy (and kinetics). Strength of materials & vibration; elasticity; fracture mechanics. Mechanism theory. Mechanical engineering & mechanical manufacturing (processes, tolerances, metrology). Materials: mechanical characterization; equilibrium diagrams (binary, Fe-C). Thermal and thermochemical treatments. MMC (continuous media): modelling and calculations. CAD/Design: CATIA, SolidWorks. NDT/NDT: principles and applications (basics). Terms and conditions Format: individual or small groups. Location: online (interactive whiteboard, screen sharing, files) or at home. Method: initial diagnosis, personalized work plan, progressive exercises, exam-style questions, annotated corrections, regular assessments. Materials: summary sheets, roadmaps, bibliographies, corrected exercises. Targeted results Solid foundations, operational methods, autonomy and sustainable performance. Effective preparation for assessments and competitions, increased confidence and speed.
Mechanical engineering · Structural engineering · Industrial engineering
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Our students evaluate their Mechanical Engineering teacher.

To ensure the quality of our Mechanical Engineering teachers, we ask our students to review them.
Only reviews of students are published and they are guaranteed by Apprentus. Rated 4.9 out of 5 based on 18 reviews.

Numerical Analysis (Methods) Course for College Students (Augsburg)
Mohamed
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Mohamed was knowledgable and patient, and demonstrates a strong work ethic and sense of duty to his students.
Review by JOEL
Mechanics, fluid mechanics differential equations
Süleyman
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Great teacher, helped me to understand fluid mechanics!
Review by SIMON
Physics and dynamics lessons for middle school to bachelor's students (Kista)
Nicolas
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Very positive
Review by LAURA
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