Stanford Root

Schedule

Stanford Root

Schedule

CME 100

Vector Calculus for Engineers (ENGR 154)

UNITS:5
GRADING:Letter or Credit/No Credit
LEVEL:Undergrad
GER:WAY-FR

Computation and visualization using MATLAB. Differential vector calculus: vector-valued functions, analytic geometry in space, functions of several variables, partial derivatives, gradient, linearization, unconstrained maxima and minima, Lagrange multipliers and applications to trajectory simulation, least squares, and numerical optimization. Introduction to linear algebra: matrix operations, systems of algebraic equations with applications to coordinate transformations and equilibrium problems. Integral vector calculus: multiple integrals in Cartesian, cylindrical, and spherical coordinates, line integrals, scalar potential, surface integrals, Green's, divergence, and Stokes' theorems. Numerous examples and applications drawn from classical mechanics, fluid dynamics and electromagnetism.

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

2 Terms
Lecture 1Open
ID: 1955
0 / 150 enrolled
DAYS:Tuesday, Thursday
TIME:5:30 PM – 7:20 PM
LOCATION:320-105
INSTRUCTOR:
Khayms, Vadim
5units
Lecture 2Open
ID: 26800
0 / 130 enrolled
DAYS:Tuesday, Thursday
TIME:11:30 AM – 1:20 PM
LOCATION:CODAB80
INSTRUCTOR:
Le, Hung
5units

CME 100: Vector Calculus for Engineers (ENGR 154)

5 units · Letter or Credit/No Credit · GER: WAY-FR

Computation and visualization using MATLAB. Differential vector calculus: vector-valued functions, analytic geometry in space, functions of several variables, partial derivatives, gradient, linearization, unconstrained maxima and minima, Lagrange multipliers and applications to trajectory simulation, least squares, and numerical optimization. Introduction to linear algebra: matrix operations, systems of algebraic equations with applications to coordinate transformations and equilibrium problems. Integral vector calculus: multiple integrals in Cartesian, cylindrical, and spherical coordinates, line integrals, scalar potential, surface integrals, Green's, divergence, and Stokes' theorems. Numerous examples and applications drawn from classical mechanics, fluid dynamics and electromagnetism.

Offered in Autumn 2026, Spring 2027 at Stanford University.

Autumn 2026 sections

  • Lecture — Tuesday Thursday 5:30 PM – 7:20 PM — 320-105 — Khayms, Vadim (Undergrad)
  • Lecture — Tuesday Thursday 11:30 AM – 1:20 PM — CODAB80 — Le, Hung (Undergrad)

Spring 2027 sections

  • Lecture — Tuesday Thursday 9:00 AM – 10:50 AM — Le, Hung, Sheng, Nan, Geng, Yifan, Fevrier, Guillaume (Undergrad)

More CME courses

  • CME 100ACE: Vector Calculus for Engineers, ACE
  • CME 102: Ordinary Differential Equations for Engineers (ENGR 155A)
  • CME 102ACE: Ordinary Differential Equations for Engineers, ACE
  • CME 104: Linear Algebra and Partial Differential Equations for Engineers (ENGR 155B)
  • CME 106: Introduction to Probability and Statistics for Engineers (ENGR 155C)
  • CME 106ACE: Introduction to Probability and Statistics for Engineers
  • CME 108: Introduction to Scientific Computing with Machine Learning Applications
  • CME 192: MATLAB for Scientific Computing and Engineering
  • CME 193: Introduction to Scientific Python
  • CME 200: Linear Algebra with Application to Engineering Computations (ME 300A)
  • CME 204: Partial Differential Equations in Engineering (ME 300B)
  • CME 206: Introduction to Numerical Methods for Engineering (ME 300C)

All CME courses · All departments