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A framework for the natures of negativity in introductory physics
- Source :
- Physical Review Physics Education Research, Vol 16, Iss 1, p 010120 (2020)
- Publication Year :
- 2019
-
Abstract
- Mathematical reasoning skills are a desired outcome of many introductory physics courses, particularly calculus-based physics courses. Novices can struggle to understand the many roles signed numbers play in physics contexts, and recent evidence shows that unresolved struggle can carry over to subsequent physics courses. Positive and negative quantities are ubiquitous in physics, and the sign carries important and varied meanings. The mathematics education research literature documents the cognitive challenge of conceptualizing negative numbers as mathematical objects—both for experts, historically, and for novices as they learn. We contribute to the small but growing body of research in physics contexts that examines student reasoning about signed quantities and reasoning about the use and interpretation of signs in mathematical models. In this paper we present a framework for categorizing various meanings and interpretations of the negative sign in physics contexts, inspired by established work in algebraic contexts from the mathematics education research community. Such a framework can support innovation that can catalyze deeper mathematical conceptualizations of signed quantities in the introductory courses and beyond.
- Subjects :
- Science instruction
LC8-6691
Physics
QC1-999
Teaching method
Physics - Physics Education
FOS: Physical sciences
General Physics and Astronomy
Negativity effect
Thinking skills
Special aspects of education
Education
Physics Education (physics.ed-ph)
Concept learning
Mathematics education
ComputingMilieux_COMPUTERSANDEDUCATION
Algebra over a field
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Physical Review Physics Education Research, Vol 16, Iss 1, p 010120 (2020)
- Accession number :
- edsair.doi.dedup.....ac6245561e4a3c1ab71d20f945318baf