Stanford Root

Schedule

Stanford Root

Schedule

CEE 31C

Computation & Generative Design

UNITS:3
GRADING:Letter or Credit/No Credit
LEVEL:Undergrad
GER:—

This course focuses on applying computational design methods in architecture through CAD and scripting frameworks. Students will expand their digital representation skills by integrating computational geometry and structured data manipulation to facilitate generative design. Emphasis is placed on creating robust digital models with clean and structured geometry, ensuring seamless interoperability and data exchange with engineering, environmental analysis, and rendering software. Through the study of geometry taxonomy (including Point, Edge, Surface, and Solid) and the translation between Mesh and NURBS, students will develop proficiency in matrices, constraint systems, and advanced parametric techniques. Designed for Sustainable Architecture + Engineering majors (with CAD proficiency, e.g. Rhino and CEE 31B recommended), the curriculum demonstrates the evolution of architectural tools from descriptive to computational geometry, enabling the comprehensive modeling and documentation of complex projects.

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Lecture 1Open
ID: 6531
0 / 15 enrolled
DAYS:Monday, Wednesday
TIME:9:30 AM – 11:20 AM
LOCATION:TBD
INSTRUCTOR:
Conway, Matthew
3units

CEE 31C: Computation & Generative Design

3 units · Letter or Credit/No Credit

This course focuses on applying computational design methods in architecture through CAD and scripting frameworks. Students will expand their digital representation skills by integrating computational geometry and structured data manipulation to facilitate generative design. Emphasis is placed on creating robust digital models with clean and structured geometry, ensuring seamless interoperability and data exchange with engineering, environmental analysis, and rendering software. Through the study of geometry taxonomy (including Point, Edge, Surface, and Solid) and the translation between Mesh and NURBS, students will develop proficiency in matrices, constraint systems, and advanced parametric techniques. Designed for Sustainable Architecture + Engineering majors (with CAD proficiency, e.g. Rhino and CEE31B recommended), the curriculum demonstrates the evolution of architectural tools from descriptive to computational geometry, enabling the comprehensive modeling and documentation of complex projects.

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Lecture — Monday Wednesday 9:30 AM – 11:20 AM — Conway, Matthew (Undergrad)

More CEE courses

  • CEE 10: Approaching CEE: Sustainability in Practice
  • CEE 31B: Making and Modeling Fundamentals
  • CEE 32B: Design Theory
  • CEE 32D: Construction: The Writing of Architecture (ARTHIST 232D)
  • CEE 32H: Responsive Structures (CEE 132H)
  • CEE 32V: Architectural Design Lecture Series Course
  • CEE 33B: Japanese Modern Architecture
  • CEE 33C: Housing Visions (URBANST 103C)
  • CEE 33E: A Global History of Architecture and Engineering (ARTHIST 133E)
  • CEE 33H: Critical Analysis of Architecture
  • CEE 33L: Experiencing Campus Architecture (ARTHIST 133L)
  • CEE 33Q: Studio 1: Architecture - Space, Light, and Movement

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