Detail Page

written by Todd Timberlake
This web site contains active-learning tutorials and writing assignments for upper-level undergraduate quantum mechanics. The tutorials focus on the mathematical formalism of quantum mechanics. The writing assignments focus on the interpretation of quantum mechanics, and particularly the role of experiments. The topics cover range from introduction to the Schrodinger equation through perturbation theory. In the course using these materials, students work in small groups to complete worksheet-based tutorials during class time, and do fairly typical homework problems and writing assignments, on their own.
Subjects Levels Resource Types
Education Practices
- Active Learning
= Cooperative Learning
Quantum Physics
- General
- Upper Undergraduate
- Instructional Material
= Course
= Curriculum
Intended Users Formats Ratings
- Educators
- application/pdf
- text/html
  • Currently 0.0/5

Want to rate this material?
Login here!


Access Rights:
Free access
License:
This material is released under a Creative Commons Attribution-Noncommercial-Share Alike 3.0 license.
Rights Holder:
Todd Timberlake
Keywords:
quantum curriculum, tutorials, tutorials in physics
Record Creator:
Metadata instance created August 1, 2011 by Bruce Mason
Record Updated:
August 24, 2016 by Lyle Barbato
Last Update
when Cataloged:
August 1, 2011
Other Collections:

ComPADRE is beta testing Citation Styles!

Record Link
AIP Format
T. Timberlake, (2009), WWW Document, (https://sites.berry.edu/ttimberlake/teaching/active-quantum/).
AJP/PRST-PER
T. Timberlake, Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics (2009), <https://sites.berry.edu/ttimberlake/teaching/active-quantum/>.
APA Format
Timberlake, T. (2011, August 1). Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics. Retrieved April 25, 2024, from https://sites.berry.edu/ttimberlake/teaching/active-quantum/
Chicago Format
Timberlake, Todd. Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics. August 1, 2011. https://sites.berry.edu/ttimberlake/teaching/active-quantum/ (accessed 25 April 2024).
MLA Format
Timberlake, Todd. Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics. 2009. 1 Aug. 2011. 25 Apr. 2024 <https://sites.berry.edu/ttimberlake/teaching/active-quantum/>.
BibTeX Export Format
@misc{ Author = "Todd Timberlake", Title = {Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics}, Volume = {2024}, Number = {25 April 2024}, Month = {August 1, 2011}, Year = {2009} }
Refer Export Format

%A Todd Timberlake %T Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics %D August 1, 2011 %U https://sites.berry.edu/ttimberlake/teaching/active-quantum/ %O application/pdf

EndNote Export Format

%0 Electronic Source %A Timberlake, Todd %D August 1, 2011 %T Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics %V 2024 %N 25 April 2024 %8 August 1, 2011 %9 application/pdf %U https://sites.berry.edu/ttimberlake/teaching/active-quantum/


Disclaimer: ComPADRE offers citation styles as a guide only. We cannot offer interpretations about citations as this is an automated procedure. Please refer to the style manuals in the Citation Source Information area for clarifications.

Citation Source Information

The AIP Style presented is based on information from the AIP Style Manual.

The APA Style presented is based on information from APA Style.org: Electronic References.

The Chicago Style presented is based on information from Examples of Chicago-Style Documentation.

The MLA Style presented is based on information from the MLA FAQ.

Active Quantum Mechanics: Tutorials and writing assignments for engaging students in the study of quantum mechanics:

Supplements Introduction to Quantum Mechanics

These lecture notes were created to supplement the Griffiths Introduction to Quantum Mechanics

relation by Bruce Mason

Know of another related resource? Login to relate this resource to it.
Save to my folders

Contribute

Related Materials

Similar Materials