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David Menendez; Sarah A. Brown; Martha W. Alibali – Cognitive Science, 2023
Why do people shift their strategies for solving problems? Past work has focused on the roles of contextual and individual factors in explaining whether people adopt new strategies when they are exposed to them. In this study, we examined a factor not considered in prior work: people's evaluations of the strategies themselves. We presented…
Descriptors: Individual Differences, Problem Solving, Learning Strategies, Self Evaluation (Individuals)
David Menendez; Sarah A. Brown; Martha W. Alibali – Grantee Submission, 2023
Why do people shift their strategies for solving problems? Past work has focused on the roles of contextual and individual factors in explaining whether people adopt new strategies when they are exposed to them. In this study, we examined a factor not considered in prior work: people's evaluations of the strategies themselves. We presented…
Descriptors: Individual Differences, Problem Solving, Learning Strategies, Self Evaluation (Individuals)
Gordon, Sheldon P. – International Journal for Technology in Mathematics Education, 2020
The article uses dynamic visualizations in Excel to examine a variety of ways in which students can attain a much greater depth of understanding of optimization problems in introductory calculus. The topics discussed include a variety of common optimization problems that appear in virtually every calculus textbook that can all be enhanced…
Descriptors: Problem Solving, Mathematics Instruction, Teaching Methods, Calculus
Milenkovic, Aleksandar; Takaci, Ðurdica; Božic, Radoslav – Interactive Learning Environments, 2022
In this paper the authors described the influence of the computer-based environment on students' learning achievement of the multidimensional calculus, in particular double integrals. The research was conducted with the second year students at the University of Kragujevac, Serbia, with two groups of students: the experimental and the control one.…
Descriptors: Computer Uses in Education, Computer Software, Mathematics Education, Calculus
da Silva, Ricardo Scucuglia Rodrigues; Barbosa, Lara Martins; Borba, Marcelo C.; Ferreira, André Luis Andrejew – ZDM: Mathematics Education, 2021
In this research we investigate how mathematics teachers, as graduate students, estimate the value of [pi] by exploring the problem of "squaring the circle" using digital technology. Initially, we mention some aspects of teaching and learning of calculus in the literature, emphasizing studies that use the notion of humans-with-media to…
Descriptors: Mathematics Teachers, Graduate Students, Mathematics Skills, Computation
Ponce Campuzano, J. C.; Roberts, A. P.; Matthews, K. E.; Wegener, M. J.; Kenny, E. P.; McIntyre, T. J. – International Journal of Mathematical Education in Science and Technology, 2019
In this paper we present two simulations designed with GeoGebra that illustrate dynamically a key concept in Vector Calculus: line integrals of vector fields, along with other associated mathematical properties and applications. Students are not required to know the GeoGebra environment: a user-friendly interface with buttons, functionalities and…
Descriptors: Visualization, Computer Simulation, Calculus, Mathematical Concepts
French, A.; Cullerne, J. P.; Kanchanasakdichai, O. – Physics Education, 2019
This paper develops the ideas of "The Pedagogical Power of Context: Iterative Calculus Methods and the Epidemiology of Eyam" (French "et al." 2018 "J. Phys. Educ."), where we considered the application of the Euler method to solve epidemiological problems. Our purpose was to convey some examples of school level work…
Descriptors: Science Instruction, Physics, Visualization, Calculus
Sholihah, Ummu; Maryono, Maryono – Journal of Research and Advances in Mathematics Education, 2020
Visual thinking plays an essential role in solving problems and in learning mathematics. Many students do not understand how to graphically or geometrically represent problems and solve algebra problems. Visual thinking is the ability, process, and results of creating, interpreting, using, and imagining images and diagrams on paper or with…
Descriptors: Visualization, Problem Solving, Thinking Skills, Mathematics Education
Breen, Sinéad; O'Shea, Ann – PRIMUS, 2019
Research has shown that the types of tasks assigned to students affect their learning. Various authors have described desirable features of mathematical tasks or of the activity they initiate. Others have suggested task taxonomies that might be used in classifying mathematical tasks. Drawing on this literature, we propose a set of task types that…
Descriptors: Undergraduate Students, Mathematics Instruction, College Mathematics, Learning Activities
Bülbül, Buket Özüm; Güler, Mustafa; Gürsoy, Kadir; Güven, Bülent – International Online Journal of Education and Teaching, 2020
Although numerous studies have investigated how technology affects academic achievement, very few have focused on the purpose of the use of technology in mathematics education. This current study examines how student teachers (STs) benefit from GeoGebra as one of the Dynamic Geometry Software (DGS) while solving continuity problems. In order to…
Descriptors: Student Teachers, Geometry, Problem Solving, Mathematics Education
Usman, Ahmed Ibrahim – European Journal of Science and Mathematics Education, 2017
The paper investigates geometric errors students made as they tried to use their basic geometric knowledge in the solution of the Applied Calculus Optimization Problem (ACOP). Inaccuracies related to the drawing of geometric diagrams (visualization skills) and those associated with the application of basic differentiation concepts into ACOP…
Descriptors: Mathematics Education, Mathematical Applications, Geometry, Calculus
Nzuki, Francis – International Journal of Information and Communication Technology Education, 2016
This study examines graphing calculator affordances in learning mathematics among college precalculus students. The study draws from the Cognitive Load Theory (CLT) and the "Intelligent Technology" theoretical framework proposed by Salomon, Perkins, and Globerson (1991). From these perspectives the effects "with" the graphing…
Descriptors: Mathematics Instruction, Teaching Methods, Graphing Calculators, Educational Technology
Nabb, Keith A. – ProQuest LLC, 2013
The research literature has made calls for greater coherence and consistency with regard to the meaning and use of the term advanced mathematical thinking (AMT) in mathematics education (Artigue, Batanero, & Kent, 2007; Selden & Selden, 2005). Educators and researchers agree that students should be engaged in AMT but it is unclear…
Descriptors: College Mathematics, Mathematics Education, Calculus, Mathematics Skills
Caglayan, Günhan – International Journal of Mathematical Education in Science and Technology, 2015
Despite few limitations, GeoGebra as a dynamic geometry software stood as a powerful instrument in helping university math majors understand, explore, and gain experiences in visualizing the limits of functions and the ?-d formalism. During the process of visualizing a theorem, the order mattered in the sequence of constituents. Students made use…
Descriptors: Geometry, Computer Software, Technology Uses in Education, Teaching Methods
Zazkis, Dov – North American Chapter of the International Group for the Psychology of Mathematics Education, 2013
This article argues for a shift in how researchers discuss and examine students' uses of representations during their calculus problem solving. An extension of Zazkis, Dubinsky, and Dautermann's (1996) Visualization/Analysis-framework to include physical modes of reasoning is proposed. An example that details how transitions between visual,…
Descriptors: Calculus, Mathematics Instruction, Teaching Methods, Problem Solving
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