Engineering
Engineering
A degree-style path through the engineering foundations shared by every discipline — mathematics, physics, computation, and statics — built to be reused by the Mechanical, Electrical, and Robotics concentration tracks that layer on top of it.
Who it's for
Learners building toward mechanical, electrical, or robotics engineering. Introduces each topic from first principles; assumes only secondary-school algebra and a willingness to work through mathematics.
Course 1 of 4
Engineering Mathematics
Mathematics is the language of engineering; calculus, linear algebra, and differential equations underpin every later course.
Single-Variable Calculus
Multivariable and Vector Calculus
Linear Algebra
Differential Equations
Course 2 of 4
Physics for Engineers
Physical law turns math into engineering — mechanics and electromagnetism are the bedrock of the mechanical, electrical, and robotics tracks.
Classical Mechanics
Electricity and Magnetism
Course 3 of 4
Computation and Programming for Engineers
Modern engineering is computational; programming and numerical methods are tools used throughout every discipline.
Programming Fundamentals
Numerical Methods
Course 4 of 4
Statics, Strength & Failure
Statics applies the math and physics to forces in equilibrium — the gateway to mechanical analysis and structural reasoning.