Stanford Root

Schedule

Stanford Root

Schedule

PHYSICS 216

Back of the Envelope Physics

UNITS:2
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

This course will cover order of magnitude or approximate, low-tech approaches to estimating physical effects in various systems. One goal is to promote a synthesis of understanding of basic physics (including quantum mechanics, electromagnetism, and physics of fluids) through solving various classic problems. Another goal will be to learn how to decide which terms in complicated equations can be omitted or simplified - and to obtain general features of the solution without solving them in their full complexity. We will be applying techniques such as scaling and dimensional analysis - with the overarching goal to develop physical intuition.

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Lecture 1Open
ID: 7607
0 / 45 enrolled
DAYS:Monday, Wednesday
TIME:9:30 AM – 10:50 AM
LOCATION:TBD
INSTRUCTOR:
Simon, Jon
2units

PHYSICS 216: Back of the Envelope Physics

2 units · Letter or Credit/No Credit

This course will cover order of magnitude or approximate, low-tech approaches to estimating physical effects in various systems. One goal is to promote a synthesis of understanding of basic physics (including quantum mechanics, electromagnetism, and physics of fluids) through solving various classic problems. Another goal will be to learn how to decide which terms in complicated equations can be omitted or simplified - and to obtain general features of the solution without solving them in their full complexity. We will be applying techniques such as scaling and dimensional analysis - with the overarching goal to develop physical intuition.

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Lecture — Monday Wednesday 9:30 AM – 10:50 AM — Simon, Jon (Graduate)

More PHYSICS courses

  • PHYSICS 191: Scientific Communication in Physics
  • PHYSICS 192: Physics Capstone Paper
  • PHYSICS 205: Senior Thesis Research
  • PHYSICS 210: Advanced Mechanics (PHYSICS 110)
  • PHYSICS 211: Modern Fluid Dynamics
  • PHYSICS 212: Statistical Mechanics
  • PHYSICS 220: Classical Electrodynamics
  • PHYSICS 223: Stochastic and Nonlinear Dynamics (APPPHYS 223, BIO 223, BIOE 213)
  • PHYSICS 230: Graduate Quantum Mechanics I
  • PHYSICS 231: Graduate Quantum Mechanics II
  • PHYSICS 234: Advanced Topics in Quantum Mechanics (PHYSICS 134)
  • PHYSICS 240: Introduction to the Physics of Energy

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