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Cho, Peter; Moore-Russo, Deborah – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
To understand the mathematical concept of function, students must understand certain subconcepts, such as domain and range. Many researchers have studied students' understanding of functions, but no study has focused on how students come to understand the domain and range for the graphs of functions. In this study, we identified four common…
Descriptors: Community Colleges, Two Year College Students, College Mathematics, Mathematical Concepts
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Carlson, Marilyn; Oehrtman, Michael; Engelke, Nicole – Cognition and Instruction, 2010
This article describes the development of the Precalculus Concept Assessment (PCA) instrument, a 25-item multiple-choice exam. The reasoning abilities and understandings central to precalculus and foundational for beginning calculus were identified and characterized in a series of research studies and are articulated in the PCA Taxonomy. These…
Descriptors: Calculus, Algebra, Thinking Skills, Cognitive Processes
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Haciomeroglu, Erhan Selcuk; Aspinwall, Leslie; Presmeg, Norma C. – Mathematical Thinking and Learning: An International Journal, 2010
This study adds momentum to the ongoing discussion clarifying the merits of visualization and analysis in mathematical thinking. Our goal was to gain understanding of three calculus students' mental processes and images used to create meaning for derivative graphs. We contrast the thinking processes of these three students as they attempted to…
Descriptors: Graphs, Cognitive Processes, Calculus, Visualization
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Pedersen, Jean; Ross, Peter – College Mathematics Journal, 1985
Provides examples in which graphs are used in the statements of problems or in their solutions as a means of testing understanding of mathematical concepts. Examples (appropriate for a beginning course in calculus and analytic geometry) include slopes of lines and curves, quadratic formula, properties of the definite integral, and others. (JN)
Descriptors: Calculus, College Mathematics, Comprehension, Graphs
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Grundmeier, Todd A.; Hansen, Jennifer; Sousa, Emily – PRIMUS, 2006
A survey was administered to calculus students who had previously been exposed to a course on integral calculus. The purpose of the survey was to explore students' understanding of the definition of a definite integral, their abilities to evaluate definite integrals, and their graphical interpretations of definite integrals. The analysis of…
Descriptors: Calculus, Mathematics Instruction, College Mathematics, College Students
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Ubuz, Behiye – International Journal of Mathematical Education in Science and Technology, 2007
This present study investigated engineering students' conceptions and misconceptions related to derivative, particularly interpreting the graph of a function and constructing its derivative graph. Participants were 147 first year engineering students from four universities enrolled in first year undergraduate calculus courses with or without the…
Descriptors: Misconceptions, Mathematical Concepts, Engineering, Diagnostic Tests
Speiser, Bob; Walter, Chuck – International Group for the Psychology of Mathematics Education, 2003
In this paper, we discuss issues in planning and conducting research into mathematics learning. We emphasize two central themes: (1) the learners' mathematics (especially the issues and ideas, in given problem situations, that learners choose to think about and to present; and (2) the kinds of knowledge that learners may be building (including…
Descriptors: Mathematics Education, Epistemology, Mathematics Skills, Mathematics Instruction
Goos, Merrilyn, Ed.; Brown, Ray, Ed.; Makar, Katie, Ed. – Mathematics Education Research Group of Australasia, 2008
This document presents the proceedings of the 31st Annual Conference of the Mathematics Education Research Group of Australasia (MERGA). The theme of this conference is "Navigating Currents and Charting Directions." The theme reminds us that, although we are constantly pushed to account for the quality and impact of our research, we…
Descriptors: Feedback (Response), Constructivism (Learning), Educational Development, Practicums