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Kenney, Rachael H. – International Journal for Technology in Mathematics Education, 2014
This study examined ways in which students make use of a graphing calculator and how use relates to comfort and understanding with mathematical symbols. Analysis involved examining students' words and actions in problem solving to identify evidence of algebraic insight. Findings suggest that some symbols and symbolic structures had strong…
Descriptors: Calculus, Mathematics Instruction, Graphing Calculators, Symbols (Mathematics)
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Parrot, Mary Ann Serdina; Eu, Leong Kwan – Malaysian Online Journal of Educational Sciences, 2014
Technology can help develop understanding of abstract mathematical concepts through visualisation and graphic representation. The teaching and learning of calculus can be challenging as it involves abstract and complex ideas. The purpose of this study was to investigate how students and teachers attempt to use TI-Nspire, the latest graphing…
Descriptors: Foreign Countries, Calculus, Mathematics Instruction, Secondary School Mathematics
Asing-Cashman, Joyce G. – ProQuest LLC, 2011
The purpose of this qualitative case study was to examine the modeling of technology by mathematics professors in two universities in teaching required courses for secondary level pre-service mathematics teachers. Six professors participated in this case study. Their responses were documented in pre- and post-interviews and data were gathered from…
Descriptors: Required Courses, Mathematics Instruction, Computer Uses in Education, Course Content
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Ocak, Mehmet Akif – EURASIA Journal of Mathematics, Science & Technology Education, 2008
This study investigates the role of graphing calculators in multiple representations for knowledge transfer and the omission of oversimplification in complex function graphs. The main aim is to examine whether graphing calculators were used efficiently to see different cases and multiple perspectives among complex function graphs, or whether…
Descriptors: Learning Strategies, Graphing Calculators, Calculus, Mathematics Instruction
Martin, William O. – 1994
Technologies play a prominent role in current reforms of school and collegiate mathematics. This study examined ways in which first-semester calculus students still showed the influence of a graphing-intensive college algebra course they had studied one or two semesters earlier. Students (n=18) at a large research university were asked to solve a…
Descriptors: Calculus, Cognitive Development, College Students, Educational Technology
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Wilhelm, Jennifer Anne; Confrey, Jere – International Journal of Mathematical Education in Science and Technology, 2003
This paper reports a study designed to probe the abstraction ability that US Algebra I students can achieve in moving the concepts rate of change and accumulation between motion and money contexts. The Algebra I students used the technologies motion detectors and Interactive Banking software during a replacement unit focused on slope, ratio, and…
Descriptors: Motion, Algebra, Calculus, Graphing Calculators
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Lauten, A. Darien; And Others – Journal of Mathematical Behavior, 1994
Describes five college and two high school students' understandings of function and limit in a graphics calculator-based environment and identifies instances where students' understanding seems to have been influenced by the availability of a graphing calculator. (27 references) (MKR)
Descriptors: Calculus, College Students, Constructivism (Learning), Functions (Mathematics)
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Fox, Tom – Mid-Western Educational Researcher, 2005
An experienced mathematics teacher in a rural high school in the United States was studied as she first implemented a reform calculus curriculum. Her instruction was compared to her previous practice using a curriculum not constructed with the reform movement in mind. Despite her early attempts to make her instructions more student-centered, the…
Descriptors: Educational Strategies, Mathematics Curriculum, Graphing Calculators, Educational Change
Wilkinson, Patricia; Sher, Lawrence – 1999
Beginning in 1987, a reform movement was heavily funded by the National Science Foundation (NSF) to change the teaching of calculus. Borough of Manhattan Community College (BMCC) received seven NSF grants over an eight-year period, allowing the college to: establish a state-of-the-art calculus computer lab; purchase calculators, graphing…
Descriptors: Calculus, Community Colleges, Computer Assisted Instruction, Computer Attitudes