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Since May 2021
Instructor since May 2021
Auto-Cad for command on technical drawings, Architecture / Engineering / Interior Designing
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From 15 C$ /h
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Auto-Cad is a powerful software tool for drafting and development of technical drawings with precision. Nowadays, maximum large scale construction industries across the world are relying on computer aided design software for development of plans and concept. As a designer it is really important to understand the technicality and precision of the drawings that we work on.
I have designed this course in a such a way that the learner will find it quite interesting and would be able to cope with course along with that.
In this course you will learn about the Auto-Cad drafting tools, functions, drafting techniques, introduction to coordinate system, perspectives, editing fundamentals, navigation techniques, self practice assignments , reference notes and assistance.
Extra information
Bring your own laptop and mouse with Auto-Cad software installed, a notebook for
Location
location type icon
Online from India
About Me
I am an architect by profession.
Precision and accuracy is where I focus on whether it is my work or my personal life.
For me teaching is like sharing all what I have with mu students, I make sure to teach them in a way that they the focus is not just just on curriculum but also on the overall growth.
I make sure that whatever I teach my student understands that properly and is able to do the same, If not my assistance is always available with my students.
I always say this to my student if you really want to learn something first do the forward engineering, visualize what all you can do with what you have learned and goals will set in place automatically.
I design buildings, interior spaces and 3-D's. I have never restricted myself to one field which is why I also write research papers and teach students
Education
I have done my bachelor's in Architecture from Deen Bandhu Chotu Raam University with a CGPA of 8.00.
Currently I am practicing as a Project Construction Manager.
I have my schooling from DAV Public school, Pushpanjali Enclave.
Along with that I write research papers, one of which is also published in International Conference
Experience / Qualifications
I am an Architect by profession. I graduated in 2020. I have 6.5 yr experience in using Auto-Cad as a software and developing drawings and details in it. Along that I have a experience of 7 months working as a Construction Project Manager.
I have been teaching softwares like photoshop, autocad, sketchup, revit and ms-office from past 2.5yrs
Age
Children (7-12 years old)
Teenagers (13-17 years old)
Adults (18-64 years old)
Seniors (65+ years old)
Student level
Beginner
Intermediate
Duration
45 minutes
The class is taught in
English
Hindi
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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verified badge
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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.

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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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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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This course explains how air interacts with bodies, from airfoils to aircraft.

Topics Covered:

Aerodynamic forces and moments
Airfoil theory and lift generation
Drag and pressure distribution
Subsonic and compressible aerodynamics
Boundary layers and flow separation

Applications:

Aircraft and drones
Automotive aerodynamics
Wind and performance analysis
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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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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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I provide practical, one-to-one training in Autodesk Inventor and Autodesk Vault, focused on helping students understand the software and apply it effectively to real engineering work.

The training can be adapted to your current level and objective. We can work through Autodesk Inventor concepts step by step, or take a completely hands-on approach where you create your own models while I guide you, identify issues, explain better methods and share practical modelling and engineering best practices.

For Autodesk Inventor, topics can include part modelling, assemblies, drawings, design intent, modelling strategies, constraints, parameters, design changes and general CAD best practices. If you already have experience with Inventor, we can focus on improving your modelling approach, solving specific problems or reviewing your existing work.

For Autodesk Vault, we can focus on understanding document and design data management, file organisation, versioning, revisions, check-in/check-out, working with CAD data and practical workflows for managing engineering files.

The lessons are not based on a fixed syllabus. I adapt each session to what you actually need to learn or solve. You can also bring your own model, exercise, project or specific problem and we can work through it together.

I have more than 14 years of experience working at the intersection of engineering, manufacturing, CAD, PDM and PLM, so the focus is not only on which button to click, but also on understanding why a particular approach is useful in an engineering environment.

The lessons are suitable for students, engineering professionals, designers and anyone who wants to improve their practical Autodesk Inventor or Vault skills.
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Are you studying Interior Design, Interior Architecture or Architecture and feeling stuck with your project, concept or portfolio? Sometimes you don’t need someone to give you the answer — you need another designer to look at your work, ask the right questions and help you discover where it could go next.

I am a practising Interior Designer with a RIBA Part 2 architectural background and previous university-level teaching experience. My tutorials combine academic design thinking with experience gained from working within leading UK architecture and interior design practices.

My sessions are tailored around you and your project. We can work together on concept development, spatial planning, design thinking, portfolio layouts, graphic communication, technical drawings, materials and finishes, sustainability, Revit, AutoCAD, InDesign and Photoshop.

I am particularly passionate about creative thinking, graphics and portfolio storytelling. I love helping students take complicated ideas and communicate them through clear, beautiful drawings, diagrams and layouts.

I am also very interested in sustainability, materiality and the relationship between buildings and people. I encourage students to think beyond how a space looks and consider why materials are selected, how they perform, how people experience the space and how design decisions affect the environment.

You can bring a project at any stage, from an early idea or university brief to a nearly completed portfolio. We can review it together, identify what is working, explore what could be improved and develop a clear direction for your next steps.

I won’t design your project for you. My aim is to help you become a stronger and more confident designer by developing your own ideas, challenging your thinking and helping you understand the reasoning behind your design decisions.

Sessions can also focus specifically on portfolio reviews, university applications, design crit preparation, Revit/AutoCAD guidance or graphic presentation.
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I offer personalized online 1:1 tutoring for anyone who wants to create a strong, original and professionally presented architecture portfolio.

For high school students applying to architecture school, I guide the complete development of an admission portfolio—from discovering personal interests and generating creative project ideas to observational drawing, conceptual thinking, experimentation, model-making and final page design. No previous architectural experience is required. Together, we build a portfolio that demonstrates curiosity, imagination, creative potential and an authentic personal voice.

For architecture students applying to a Master’s degree, the tutoring focuses on presenting a higher level of intellectual and creative thinking. We develop a clear portfolio narrative while strengthening research, analysis, conceptual development, transdisciplinary connections, architectural experimentation and visual communication. The portfolio is carefully adapted to the character and expectations of the selected universities.

For graduates and professionals seeking architectural employment, I help create a focused professional portfolio that can attract the attention of leading architecture firms. We select and improve the strongest projects, clarify your individual and team contributions, and present your technical abilities through plans, sections, construction details, diagrams, models and visualizations. We also work on personal branding, graphic consistency, storytelling and the immediate visual impact of the portfolio, helping you communicate your value quickly and improve your chances of securing an interview and being hired.

Every student receives a completely individual process based on their goals, experience, application deadlines and target universities or architecture offices. You may begin with no portfolio, bring an unfinished one, or ask for a professional review and improvement of an existing portfolio.

I am an architect, artist, author, former Head of an Architecture Department and international lecturer with more than 25 years of experience in architecture, design, creative education and portfolio development. My role is not to impose a generic style, but to help you discover what makes your work unique and transform it into a clear, memorable and convincing portfolio.
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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
Good-fit Instructor Guarantee
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