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written by Chandralekha Singh
This 30-question research-based multiple-choice test is designed to evaluate students' conceptual understanding of symmetry and Gauss's Law. The test may be administered to students in calculus-based introductory physics courses or upper-level undergraduate E&M courses.

The survey is based on investigations of students' difficulties with the concepts of symmetry, electric field, and electric flux and should be given in a 50-minute period. Statistical results have shown the survey to be reliable and valid. A summary of the construction and analysis of the survey is available in Student Understanding of Symmetry and Gauss's Law of Electricity, Am. J. Phys. 74 (10), 923-936 (2006).

This assessment is free for use by instructors in their classroom. As it takes years of development effort to create and validate reliable assessment instruments, access is limited to instructors and researchers.
Subjects Levels Resource Types
Education - Basic Research
- Assessment
= Conceptual Assessment
= Instruments
Electricity & Magnetism
- Electric Fields and Potential
= Electric Field
= Gauss' Law
- Lower Undergraduate
- Upper Undergraduate
- Assessment Material
= Test
PER-Central Types Intended Users Ratings
- PER Literature
- Curriculum
- Curriculum / Research Instrument
- Educators
- Professional/Practitioners
- Researchers
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Format:
application/pdf
Access Rights:
Limited free access
Access is limited to instructors and researchers.
Restriction:
© 2004 Chandralekha Singh
This assessment is free for use by instructors in their classroom. However, it takes years of development effort to create and validate reliable assessment instruments. Therefore, the author requests that 1. students are not given test copies following examination; and 2. none of the questions are incorporated into web-based question delivery systems without adequate security to prevent printing or unauthorized access by students.
Record Cloner:
Metadata instance created May 3, 2012 by Lyle Barbato
Record Updated:
August 14, 2016 by Lyle Barbato
Last Update
when Cataloged:
January 1, 2004
ComPADRE is beta testing Citation Styles!

Record Link
AIP Format
C. Singh, (2004), WWW Document, (https://www.physport.org/assessments/SGCE).
AJP/PRST-PER
C. Singh, Symmetry and Gauss's Law Conceptual Evaluation (2004), <https://www.physport.org/assessments/SGCE>.
APA Format
Singh, C. (2004, January 1). Symmetry and Gauss's Law Conceptual Evaluation. Retrieved October 4, 2024, from https://www.physport.org/assessments/SGCE
Chicago Format
Singh, Chandralekha. Symmetry and Gauss's Law Conceptual Evaluation. January 1, 2004. https://www.physport.org/assessments/SGCE (accessed 4 October 2024).
MLA Format
Singh, Chandralekha. Symmetry and Gauss's Law Conceptual Evaluation. 2004. 1 Jan. 2004. 4 Oct. 2024 <https://www.physport.org/assessments/SGCE>.
BibTeX Export Format
@misc{ Author = "Chandralekha Singh", Title = {Symmetry and Gauss's Law Conceptual Evaluation}, Volume = {2024}, Number = {4 October 2024}, Month = {January 1, 2004}, Year = {2004} }
Refer Export Format

%A Chandralekha Singh %T Symmetry and Gauss's Law Conceptual Evaluation %D January 1, 2004 %U https://www.physport.org/assessments/SGCE %O application/pdf

EndNote Export Format

%0 Electronic Source %A Singh, Chandralekha %D January 1, 2004 %T Symmetry and Gauss's Law Conceptual Evaluation %V 2024 %N 4 October 2024 %8 January 1, 2004 %9 application/pdf %U https://www.physport.org/assessments/SGCE


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Citation Source Information

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

The AJP/PRST-PER presented is based on the AIP Style with the addition of journal article titles and conference proceeding article titles.

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

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Symmetry and Gauss's Law Conceptual Evaluation:

Is Key Reference Of Student understanding of symmetry and Gauss's law of electricity

A summary of the survey's development, reliability, and validity is provided in C. Singh, "Student understanding of symmetry and Gauss's law of electricity," Am. J. of Phys 74 (10), 923-936 (2006).

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