Stanford Root

Schedule

Stanford Root

Schedule

BIOE 80

Introduction to Bioengineering (Engineering Living Matter) (ENGR 80)

UNITS:4
GRADING:Letter (ABCD/NP)
LEVEL:Undergrad
GER:WAY-FR

Students completing BIOE 80 should have a working understanding for how to approach the systematic engineering of living systems to benefit all people and the planet. Our main goals are (1) to help students learn ways of thinking about engineering living matter and (2) to empower students to explore the broader ramifications of engineering life. Specific concepts and skills covered include but are not limited to: capacities of natural life on Earth; scope of the existing human-directed bioeconomy; deconstructing complicated problems; reaction & diffusion systems; microbial human anatomy; conceptualizing the engineering of biology; how atoms can be organized to make molecules; how to print DNA from scratch; programming genetic sensors, logic, & actuators; biology beyond molecules (photons, electrons, etc.); constraints limiting what life can do; and possible health challenges in 2030. And we explore questions like, how does what we want shape bioengineering, and who should choose and realize various competing bioengineering futures? Interested students should complete an enrollment survey to obtain an enrollment code which can be accessed here: https://forms.gle/NfxnunnG5gUnHoi49

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Lecture 1Open
ID: 1937
0 / 110 enrolled
DAYS:Monday, Wednesday, Friday
TIME:1:30 PM – 2:20 PM
LOCATION:TBD
INSTRUCTOR:
Engel, Alex, Bryant, Zev, Endy, Drew
4units

BIOE 80: Introduction to Bioengineering (Engineering Living Matter) (ENGR 80)

4 units · Letter (ABCD/NP) · GER: WAY-FR

Students completing BIOE 80 should have a working understanding for how to approach the systematic engineering of living systems to benefit all people and the planet. Our main goals are (1) to help students learn ways of thinking about engineering living matter and (2) to empower students to explore the broader ramifications of engineering life. Specific concepts and skills covered include but are not limited to: capacities of natural life on Earth; scope of the existing human-directed bioeconomy; deconstructing complicated problems; reaction & diffusion systems; microbial human anatomy; conceptualizing the engineering of biology; how atoms can be organized to make molecules; how to print DNA from scratch; programming genetic sensors, logic, & actuators; biology beyond molecules (photons, electrons, etc.); constraints limiting what life can do; and possible health challenges in 2030. And we explore questions like, how does what we want shape bioengineering, and who should choose and realize various competing bioengineering futures? Interested students should complete an enrollment survey to obtain an enrollment code which can be accessed here: https://forms.gle/NfxnunnG5gUnHoi49

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Lecture — Monday Wednesday Friday 1:30 PM – 2:20 PM — Engel, Alex, Bryant, Zev, Endy, Drew (Undergrad)

More BIOE courses

  • BIOE 42: Physical Biology
  • BIOE 44: Fundamentals for Engineering Biology Lab
  • BIOE 51: Anatomy for Bioengineers
  • BIOE 70Q: Medical Device Innovation
  • BIOE 72N: Pathophysiology and Design for Cardiovascular Disease
  • BIOE 75N: The Concussion Dilemma: Health Science and Policy Debates
  • BIOE 101: Systems Biology (BIOE 210)
  • BIOE 102: Physical Biology
  • BIOE 103: Systems Physiology and Design
  • BIOE 122: BioSecurity and Pandemic Resilience (EMED 122, EMED 222, PUBLPOL 122, PUBLPOL 222)
  • BIOE 123: Bioengineering Systems Prototyping Lab
  • BIOE 131: Ethics in Bioengineering (ETHICSOC 131X)

All BIOE courses · All departments