Developing Student Understanding: Contextualizing Calculus Concepts

This study looked at the practice of one high school teacher who provided students with concrete examples from their physics class to give them a contextually rich environment in which to explore the ions of calculus. Students discovered connections between the physics concepts of position, velocity...

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Veröffentlicht in:School science and mathematics 2000-02, Vol.100 (2), p.90-98
Hauptverfasser: Schwalbach, Eileen M., Dosemagen, Debra M.
Format: Artikel
Sprache:eng
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Zusammenfassung:This study looked at the practice of one high school teacher who provided students with concrete examples from their physics class to give them a contextually rich environment in which to explore the ions of calculus. Students discovered connections between the physics concepts of position, velocity, and acceleration and the calculus concepts of function, derivative, and antiderivative. The qualitative study sought to describe several critical aspects of understanding: students' ability to explain concepts and procedures, to apply concepts in a physics context, and to explore their own learning. It included 32 seniors at a large, urban, comprehensive, religious school in a midwestern stale. Samples of student work and reflections were collected by the teacher, as well as by students in individual portfolios. The teacher kept a reflective journal. This study suggests that making connections between calculus and physics can yield deep understandings of semantic as well as procedural knowledge.
ISSN:0036-6803
1949-8594
DOI:10.1111/j.1949-8594.2000.tb17241.x