Mathematics

Mechanical Engineering, Robotics & Workplace Automation

A complete self-study engineering path from calculus, physics, and computation through statics, material strength, dynamics, thermo-fluids, machine design, manufacturing, mechatronics, feedback control, robotics, industrial automation, and responsible workplace deployment. MIT OpenCourseWare and Stanford courses anchor the academic sequence; NIST, OSHA, ISO, IEC, ISA, and NIOSH anchor the manufacturing, safety, integration, and human-work systems.

Made for Independent learners who want the reasoning and project habits of a mechanical engineer with a concentration in automation and robotics. The path assumes secondary-school algebra at entry and becomes mathematically technical. It is a rigorous personal curriculum, not an accredited engineering degree or a substitute for supervised shop, electrical, or industrial-safety training.

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The full route

Curriculum

Lessons build in sequence, but you can revisit any topic whenever you need it.

  1. 01

    Course 1

    Engineering Mathematics

    Build calculus, linear algebra, and differential equations before using them to model motion, stress, heat, fluids, and feedback.

    14 lessons
  2. 02

    Course 2

    Physics for Engineers

    Establish mechanics and electromagnetism as the physical language of machines, sensors, motors, and energy conversion.

    9 lessons
  3. 03

    Course 3

    Computation and Programming for Engineers

    Learn programming and numerical methods for simulation, data analysis, control experiments, and engineering decision support.

    7 lessons
  4. 04

    Course 4

    Statics, Strength & Failure

    Turn loads into free-body diagrams, reactions, internal forces, stresses, deflections, and defensible safety margins.

    6 lessons
    01 Force Systems & Equilibrium 2 lessons
    1. 01 Free-Body Diagrams That Can Be Audited
    2. 02 Moments, Supports & Distributed Loads
    02 Structures & Material Response 2 lessons
    1. 01 Trusses, Frames & Internal Force
    2. 02 Stress, Strain & Safety Factor
    03 Beams, Deflection & Failure 2 lessons
    1. 01 Beams, Torsion & Deflection
    2. 02 Failure, Fatigue & the Structural Design Review
  5. 05

    Course 5

    Dynamics, Vibration & Thermo-Fluids

    Analyze moving and vibrating systems, energy conversion, heat rejection, fluid flow, pumps, and pneumatic power.

    6 lessons
  6. 06

    Course 6

    Machine Design & Manufacturing

    Convert functions into mechanisms, machine elements, drawings, tolerances, process plans, test evidence, and reliable hardware.

    6 lessons
  7. 07

    Course 7

    Mechatronics & Feedback Control

    Join circuits, sensors, actuators, embedded state machines, dynamic models, and feedback into working controlled machines.

    6 lessons
    01 Power, Circuits & Signals 2 lessons
    1. 01 Electrical Architecture, Power & Interfaces
    2. 02 Signals, Noise, Sampling & Conditioning
    02 Sensors, Actuators & Embedded Behavior 2 lessons
    1. 01 Sensors, Metrology & Uncertainty
    2. 02 Motors, Drives & Embedded State Machines
    03 Modeling & Feedback 2 lessons
    1. 01 Dynamic Models, Transfer Functions & Stability
    2. 02 PID Tuning, Saturation & Digital Implementation
  8. 08

    Course 8

    Robotics: Modeling, Motion & Interaction

    Model robot geometry and motion, reason about workspace and singularity, design interaction, and integrate perception and software.

    6 lessons
  9. 09

    Course 9

    Industrial Automation Systems

    Program deterministic sequences, design workcells, analyze production flow, and connect PLC, SCADA, MES, and enterprise information safely.

    6 lessons
    01 PLC Architecture & Sequences 2 lessons
    1. 01 PLC Scan, I/O & Control Architecture
    2. 02 Ladder Logic, Interlocks & State Sequences
    02 Cells, Motion & Equipment 2 lessons
    1. 01 Conveyors, Pneumatics & Equipment Handshakes
    2. 02 Robot, Vision & Cell Integration
    03 Factory Flow & Data 2 lessons
    1. 01 Throughput, Bottlenecks, Buffers & OEE
    2. 02 SCADA, MES, Digital Twins & OT Cybersecurity
  10. 10

    Course 10

    Automation in the Workplace

    Select the right tasks, include workers, quantify lifecycle value, manage risk, redesign jobs, and deliver automation that improves the system of work.

    6 lessons
  11. 11

    Course 11

    Integrated Automation Capstone

    Integrate requirements, calculations, architecture, risk reduction, controls, economics, testing, commissioning, and communication in one traceable design dossier.

    6 lessons