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Since February 2019
Instructor since February 2019
Robotics Basics and more (what they are and what they can do)
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From 15 £ /h
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Robotics is the future! Yet it is overwhelming to see how many people still have misconceptions on this subject. I consider it extremely important to educate people in this regard. Not only the background, but also hands on
exercises on how robots work, what they can actually do, and what people are currently using them for.

I have been working as a student teacher of Universal Robot programming for first year university students. It has been a great pleasure to share my knowledge and see how young people like myself, get excited about this subject!
Location
location type icon
Online from Denmark
About Me
Energetic, positive person, interested in robots and rockets.

Today, more than ever, we have access to all the information we need, to learn and buind amazing things! I am certainly on it!
Education
2018 - 2020 - MSc. Vision, Graphics and Interactive Systems
Aalborg University
Main courses:
- Computer vision
- Computer graphics
- Machine learning

2015 - 2018 - BSc. Robotics Engineering
Aalborg University
Main courses:
- Math
- Robot mechanics and dynamics
- Robot programming
Experience / Qualifications
Experience as a robotics student teacher.

Holding certificates like: Cambridge English, DELF French, ECDL, Modern C++ course.
Age
Preschool children (4-6 years old)
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
30 minutes
60 minutes
The class is taught in
English
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
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Master Engineering Drawing, Technical Drawing and Engineering Graphics with a practical, step-by-step approach.

Are you a student who finds engineering drawing difficult to visualize? Do you want to understand orthographic projections, front/top/side views, sections, dimensions, scales, and 3D shapes instead of simply memorizing drawing procedures?

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From Hand Drawing to CAD and 3D Models

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Visualized → Sketched → Dimensioned → Created in CAD → Converted into a 3D Model → Prepared for Manufacturing / 3D Printing

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Practical, Student-Focused Teaching

My teaching approach is based on understanding through visualization and practice.

Instead of simply demonstrating a drawing, I explain:

How to visualize the object before drawing it
How to identify the different surfaces and views
How the front, top and side views are related
How to determine the required dimensions
How to construct the drawing step by step
How to avoid common drawing mistakes
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How the same concept is applied in CAD and real-world design

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Who Are These Classes For?

These lessons are suitable for:

High school students studying technical/engineering drawing
Diploma students
Mechanical Engineering students
Civil Engineering students
Architecture students
Industrial Engineering students
Product Design students
Manufacturing Engineering students
Other engineering students studying Engineering Graphics or Engineering Drawing
Students preparing for examinations
Beginners learning CAD and technical drawing
University students working on drawing or CAD projects
Professionals who want to refresh or improve their technical drawing skills

Beginners are welcome. No advanced prior knowledge is required.

Online & Interactive Lessons

All lessons are conducted online and interactively.

Depending on the topic, I can use:

Screen sharing
Live drawing demonstrations
CAD demonstrations
2D drafting
3D modelling
Step-by-step problem solving
Practical drawing exercises
Real-world engineering examples

You can bring your specific syllabus, textbook exercises, assignments, CAD projects or exam topics, and the lessons can be adapted to your requirements.

Learn to Think Like a Designer

Engineering drawing is more than producing a neat drawing on paper. It is a method of visualizing ideas, communicating designs and understanding how objects are constructed and manufactured.

My goal is to help you move from:

“I don't understand this shape.”

to

“I can visualize it, draw its views, add the required dimensions and understand how it would be represented in CAD and manufactured.”

Whether you are starting from zero, preparing for an examination, struggling with engineering graphics, learning CAD, or working on a design project, I will guide you step by step at your own pace.

Book a lesson and let's make Engineering Drawing and CAD easier, more visual and more practical.
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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:

- 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!
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===================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
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PIC microcontroller
Microprocessor
MATLAB, proteus
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Supervision of graduation projects
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I demonstrate excellent mathematics skills and analytical thinking alongside solid instruction. I instruct my students throughout the year and create lesson plans, assign homework, and manage online classrooms. I keep in touch with parents to be aware of the progress.
I hold a Master's degree in Engineering with teacher education courses and I've achieved the highest grades in my math courses throughout the years with straight A Grades.

My Responsibilities towards my students
-Create a great environment that is conducive to learning.
-Care for and effectively assist students with special concerns.
-Analyze data to determine student progress and achievement.
-Work with individual and small groups of students to support mathematics instruction.
-Encourage students who need extra help
-Plan and carry out instructions, activities and prepare learning materials.
-Maintain appropriate records and follow required procedures and practices.
-Work with students to develop and monitor academic goals for both short-term and long-term success.


My qualifications
-Master Degree in Engineering
-An experienced teacher for over 4 years
-Experience with calculus, geometry, statistics, and trigonometry.
-Dedication to instruction of critical thinking and problem-solving with confidence in a collaborative environment.
- Leadership skills and a positive attitude when assisting with decision making.
-Demonstrated professionalism and dedication to continuous improvement.
-Time management skills.
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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As a current Master's student in Aerospace Engineering at TU Delft, I have successfully navigated the entire Bachelor's curriculum and the competitive selection procedure, so I am fully equipped to guide you through the study plan and specific admission requirements. I offer personalized tutoring sessions designed to ensure comprehensive preparation for the entrance exams. These classes include a detailed review of key concepts in Mathematics and Physics, intensive practice with relevant exercises, and specific strategies to tackle the test effectively. I also place a dedicated focus on mastering the First Year Material (FYM) section (often the most challenging and unfamiliar part for applicants) to help you build the confidence and skills necessary to succeed. Furthermore, I am happy to discuss the degree program itself and explore the opportunities available in Delft to help you prepare for your future student life.
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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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The TU Delft Aerospace Engineering Bachelor is one of the most prestigious bachelor programmes the Netherlands has to offer. As it is highly sought-after by students all around the globe, there is a highly competitive selection procedure which needs to be completed to get admitted to this popular degree. A major part of this admission procedure is the selection exam, consisting of three different tests: Mathematics, Physics and First-Year Material.

As a cum laude graduate Aerospace Engineer at TU Delft, who has also been tutoring since 2017, I have a lot of experience and knowledge of the program to help you out with the right preparation to get in. Over the last four years, I have helped tens of students secure a spot! Moreover, I offer a free personalised lesson plan for each student, which is fully based on the admission syllabus and past exams, to ensure an even higher chance of admission for each student.

With my calm and stepwise explanation, weaker topics will be addressed, and your solution procedures will become more effective and accurate. Each lesson will either be theory, exercise-based or an opportunity to talk about the admission, student life, the city of Delft, what to expect from the study and whether it is the right fit for you.
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Lesson:
This course is a cornerstone for any student aspiring to excel in scientific and technological fields. The lesson focuses on transitioning from traditional mathematics to the world of "instantaneous change" through the study of limits, derivatives, and their vital applications.
In this course you will learn:
• A deep understanding of Limits and Continuity.
• Mastering the rules of differentiation for various functions (trigonometric, exponential, and logarithmic functions).
• Applying differentiation to solve real-world problems such as finding maximum, minimum, and time-related rates.
• A preliminary introduction to the concept of integration and spaces.
This content is designed to be a practical and comprehensive guide to help you excel academically and pass exams with high efficiency.
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Calculus I serves as the bridge between school mathematics and advanced university science. This course is specifically designed to enable students to understand the "language of movement and change" that governs our world, and it is a fundamental and essential requirement for engineering, artificial intelligence, and science students at top universities nationwide.
What will the student learn on this academic journey?
• The philosophy of limits and continuity: We will break the barrier of fear of limits, to learn how to predict the behavior of functions at critical points and how to determine the continuity of curves, which is a vital basis for understanding the stability of geometric systems.
• The Art of Derivative: The student will practice extracting the instantaneous rate of change using advanced differentiation rules (Product, Quotient, and Chain Rules), with a strong focus on trigonometric and logarithmic functions that appear frequently in EmSAT exams.
• Real-world applications (Optimization): We will not be satisfied with paper-based solutions, but will learn how to use differentiation to find optimal solutions (maximum and minimum values), such as determining the shortest path or achieving the highest technical efficiency at the lowest possible cost.
• Introduction to Integration: We will lay the foundation for the science of integration by understanding the inverse relationship between differential and integral calculus, which will fully prepare the student for the Calculus 2 course.
Why choose this lesson?
We don't just solve equations; we aim to build an "analytical mindset." This approach simplifies complex concepts, connects them to practical realities, and equips students with smart strategies for tackling the most frequently asked exam questions in UAE university curricula, ensuring not just success, but excellence and an A grade.
Additional information for the student (more detailed):
• Prerequisites: The student should preferably have a good understanding of the basics of algebra and the ability to solve equations and inequalities.
• Required tools: A scientific calculator (preferably advanced models such as those allowed in EMAST), and a graph book to track the behavior of the curves.
• Session approach: We follow a strict and organized system of explanation based on progression from easy to difficult, while providing training examples that simulate actual final exams.
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Learn Arduino, robotics and electronics one to one with a qualified electronics engineer who teaches this at university level. Complete beginners through to degree students, online worldwide or in person in Birmingham, with a free 30 minute introduction before you book anything.

I'm Ghous. I hold an MSc in Electronics and Electrical Engineering with Distinction from the University of Chester, where I teach as a Visiting Lecturer on a Master's module, and I work as a freelance engineer designing circuit boards and writing embedded firmware for clients. I have taken a four layer ESP32 board from schematic to manufactured hardware, built the electrical power system for a CubeSat, and published two international conference papers on running neural networks on microcontrollers. When you ask why your sensor reads nothing or how to justify a design choice in a report, the answer comes from doing this work rather than from a tutorial.

Adults and hobbyists

If you own an Arduino kit and have stalled, or you can copy a project but cannot change it, this is the gap I close. We build what you actually want, home automation, data logging sensors, motorised builds, a device that talks to your phone, and underneath it you pick up the real skills: reading a datasheet, using a multimeter, wiring safely and debugging when nothing happens. No technical background required.

University and college students

Embedded systems, microcontrollers, robotics, control systems, circuit analysis and digital electronics. Arduino, ESP32, nRF52, PIC with MPLAB and STM32, plus Proteus, Multisim, Webots and PCB design in KiCAD. I also supervise final year and Master's projects from scoping through to the write up. I mark Level 7 work myself, so I know where reports lose marks. I teach students on UK, IB and continental European programmes and have worked with engineering students in Germany, so an unfamiliar syllabus is not a problem. Send me your course material and I will work from it.

School students, ages 9 to 18

Beginners who want to build something real, and students with coursework in Design and Technology, Computer Science or Engineering, whether on GCSE, A Level, IB or a national curriculum. Typical builds are a line following robot, an obstacle avoiding car, a live weather station or a motion triggered alarm. For lessons in Birmingham I bring all the equipment. Parents are welcome to sit in on the first session (UK DBS checked).

How lessons run

Tell me your level and what you want to build, or send your assignment brief, and I plan the session around it before we meet. I demonstrate first, then you take over while I guide, because nobody learns electronics by watching. Online students share a screen and I debug code and wiring photos live. Every session ends with something working and a clear next step, and you can message me between lessons.

Lessons run over Google Meet or Zoom, 60 or 90 minutes. I teach across GMT and Central European time with evening and weekend slots. Online students can start with any board they already own, or I will point you at one starter kit under 30 euros that covers the first several months.

Message me with your level and what you are trying to build and we will arrange the free 30 minutes.
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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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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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Learn CATIA V5, CAD design and engineering modeling through practical, step-by-step online lessons tailored to your level and goals.

I teach Computer-Aided Design (CAD), 3D modeling, technical drawing and engineering design for high school, college, university and professional learners. Whether you are starting from scratch, preparing for an exam, working on a CAD project or improving your design skills, lessons are adapted to your specific requirements.

Topics can include:

CATIA V5: Part Design, Sketcher, Generative Shape Design, Assembly Design, Drafting and detailed engineering drawings.

CAD & 3D Modeling: 2D sketches, 3D part modeling, assemblies, surface modeling, parametric design, design modifications and engineering documentation.

Engineering Design: Mechanical and aerospace components, product development, design for manufacturing, fabrication-ready models and practical engineering workflows.

Technical Drawing: Orthographic views, dimensions, annotations, section views, tolerances, drawing standards and production-oriented documentation.

Practical CAD Projects: Reverse engineering, 3D printing, laser-cutting preparation, component design, UAV/drone parts, aerospace components and engineering projects.

Whether you need CATIA V5 training, CAD tutoring, project guidance, assignment support, exam preparation or help understanding a specific modeling problem, I focus on helping you develop the skills to create accurate and practical engineering designs independently.

My goal is not simply to show you which tools to click, but to help you understand the design process, modeling strategy and engineering reasoning behind the work.
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Engineering tutoring up to Master's level. I have completed a PhD in Aerospace Engineering. I developed a new type of electric propulsion for spacecraft. I have also published two research papers. I was a university employed teaching assistant for two years, helping third-year aerospace undergraduates complete their third-year group project.

I offer bespoke tutoring sessions. You provide your course material/past exams that you need help with, and we'll work through it together. We'll identify the topics that you would like tutoring in, and I'll help you understand them in an enthusiastic and stress-free environment.

MATLAB help also available!
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Master Engineering Drawing, Technical Drawing and Engineering Graphics with a practical, step-by-step approach.

Are you a student who finds engineering drawing difficult to visualize? Do you want to understand orthographic projections, front/top/side views, sections, dimensions, scales, and 3D shapes instead of simply memorizing drawing procedures?

I provide friendly, patient and practical online coaching in Technical Drawing, Engineering Drawing, Engineering Graphics, CAD and Engineering Design for students from high school through university, as well as professionals who want to strengthen their technical drawing and design skills.

What You Will Learn

The classes are designed to develop both your drawing skills and your ability to visualize engineering objects in 2D and 3D.

Topics can include:

Engineering Drawing fundamentals and drawing conventions
Visualization of 2D and 3D geometric shapes
Orthographic projection
Front, Top, Side and Back views
First-angle and Third-angle projection
Isometric views and pictorial representation
Sectional views and sectional drawings
Hidden lines, centre lines and construction lines
Dimensions, annotations and engineering symbols
Scales and measurement
Geometrical constructions
Development of surfaces
Intersections of solids
Tolerances and basic fits
Engineering drawing standards and conventions
Reading and interpreting engineering drawings
Production-oriented technical documentation
Mechanical components and product drawings
Basic engineering design principles
From Hand Drawing to CAD and 3D Models

I also help students understand how traditional engineering drawing connects with modern Computer-Aided Design (CAD).

You can learn how a product or mechanical component can be:

Visualized → Sketched → Dimensioned → Created in CAD → Converted into a 3D Model → Prepared for Manufacturing / 3D Printing

Depending on your requirements, lessons can include AutoCAD, 2D drafting, 3D modelling and engineering design workflows.

The objective is not only to teach you which commands to use, but to help you understand why a drawing is created in a particular way and how engineers use drawings to communicate a design.

Practical, Student-Focused Teaching

My teaching approach is based on understanding through visualization and practice.

Instead of simply demonstrating a drawing, I explain:

How to visualize the object before drawing it
How to identify the different surfaces and views
How the front, top and side views are related
How to determine the required dimensions
How to construct the drawing step by step
How to avoid common drawing mistakes
How to interpret engineering drawings correctly
How the same concept is applied in CAD and real-world design

Lessons include worked examples, practical exercises and real engineering/product examples so that students can gradually develop confidence and independence.

Who Are These Classes For?

These lessons are suitable for:

High school students studying technical/engineering drawing
Diploma students
Mechanical Engineering students
Civil Engineering students
Architecture students
Industrial Engineering students
Product Design students
Manufacturing Engineering students
Other engineering students studying Engineering Graphics or Engineering Drawing
Students preparing for examinations
Beginners learning CAD and technical drawing
University students working on drawing or CAD projects
Professionals who want to refresh or improve their technical drawing skills

Beginners are welcome. No advanced prior knowledge is required.

Online & Interactive Lessons

All lessons are conducted online and interactively.

Depending on the topic, I can use:

Screen sharing
Live drawing demonstrations
CAD demonstrations
2D drafting
3D modelling
Step-by-step problem solving
Practical drawing exercises
Real-world engineering examples

You can bring your specific syllabus, textbook exercises, assignments, CAD projects or exam topics, and the lessons can be adapted to your requirements.

Learn to Think Like a Designer

Engineering drawing is more than producing a neat drawing on paper. It is a method of visualizing ideas, communicating designs and understanding how objects are constructed and manufactured.

My goal is to help you move from:

“I don't understand this shape.”

to

“I can visualize it, draw its views, add the required dimensions and understand how it would be represented in CAD and manufactured.”

Whether you are starting from zero, preparing for an examination, struggling with engineering graphics, learning CAD, or working on a design project, I will guide you step by step at your own pace.

Book a lesson and let's make Engineering Drawing and CAD easier, more visual and more practical.
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