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Barwell, Richard – For the Learning of Mathematics, 2023
Our planet is facing a biodiversity crisis and mathematics is involved. In this article, I focus on reports of a wolf hunt to examine different ways in which mathematics contributes to this crisis, shapes our understanding of the ecosystem and guides future actions. My examination contributes to understanding the ethical dimension of mathematics…
Descriptors: Biodiversity, Mathematics Instruction, Mathematical Models, Poetry
Gascón, Josep; Nicolás, Pedro – For the Learning of Mathematics, 2019
In the first part of the dialogue between theories, which gave rise to a paper in this journal, we discussed the role played by normativity in didactics. In this work, with the aim of taking a step forward in this dialogue, we state explicitly some of the postulates of the anthropological theory of the didactic. They shape the object of study, the…
Descriptors: Educational Theories, Educational Anthropology, Educational Research, Mathematics Instruction
Skovsmose, Ole – For the Learning of Mathematics, 2016
In this article I consider what critical mathematics education could mean for different groups of students. Much discussion and research has addressed students at social risk. My point, however, is that critical mathematics education concerns other groups as well: for example, students in comfortable positions, blind students, elderly students,…
Descriptors: Mathematics, Mathematics Education, Mathematics Instruction, Mathematical Concepts
Rosa, Milton; Orey, Daniel Clark – For the Learning of Mathematics, 2019
The application of ethnomathematics and mathematical modelling allow us to see a different reality and give us insight into mathematics accomplished holistically. In this context, a pedagogical action that connects ethnomathematics and the cultural aspects of mathematical modelling with its academic features is referred to as ethnomodelling. This…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Models, Cultural Pluralism
Tall, David – For the Learning of Mathematics, 2011
This paper introduces the notion of "crystalline concept" as a focal idea in long-term mathematical thinking, bringing together the geometric development of Van Hiele, process-object encapsulation, and formal axiomatic systems. Each of these is a strand in the framework of "three worlds of mathematics" with its own special characteristics, but all…
Descriptors: Geometric Concepts, Mathematics Instruction, Mathematical Models, Mathematical Concepts
Peer reviewedJulie, Cyril – For the Learning of Mathematics, 2002
Focuses on the activity system of school-teaching mathematics and the impact of mathematical modeling. Describes the Applications of and Modeling in School Mathematics Project (AMSMAP) which investigates teachers' mathematical modeling and its relationship to a hypothesized school mathematical modeling activity system. Discusses the notion of an…
Descriptors: Curriculum Development, Educational Change, Elementary Secondary Education, Mathematical Models
Peer reviewedStevenson, Ian – For the Learning of Mathematics, 2001
Discusses some aspects of learning to read the process of the variation in congruence and relate it to the original geometry of the sphere since it touches on more general questions about how models are appropriated and used. Presents a learning episode that implemented projective models for both spherical and hyperbolic geometry in Object Logo.…
Descriptors: Computer Uses in Education, Geometric Concepts, Language, Mathematical Models
Peer reviewedNunokawa, Kazuhiko – For the Learning of Mathematics, 1994
Discusses diagrams and problem solvers' constructions of a problem situation, how the way of drawing changes during the problem-solving process, and the meaning and sense of diagrams. (Contains 15 references.) (MKR)
Descriptors: Diagrams, Elementary Secondary Education, Heuristics, Learning Strategies
Peer reviewedOrmell, Christopher – For the Learning of Mathematics, 1991
Discusses the meaning of mathematics by looking at its uses in the real world. Offers mathematical modeling as a way to represent mathematical applications in real or potential situations. Presents levels of applicability, modus operandi, relationship to "pure mathematics," and consequences for education for mathematical modeling. (MDH)
Descriptors: Elementary Secondary Education, Mathematical Applications, Mathematical Models, Mathematicians
Peer reviewedBassanezi, Rodney C. – For the Learning of Mathematics, 1994
Presents examples of the use of mathematical modeling in mathematics courses in order to not lose sight of the essence of the mathematical attitude; encourage students' concern with problems that surround them; appreciate human resources; and associate mathematics with other sciences. (MKR)
Descriptors: Adult Education, Elementary Secondary Education, Ethnomathematics, Mathematical Applications
Peer reviewedKatz, Victor J. – For the Learning of Mathematics, 1986
Some concrete examples of the use of historical materials in developing certain topics from precalculus and calculus are presented. Ideas which can be introduced with a reformulated curriculum are discussed in five areas: algorithms, combinatorics, logarithms, trigonometry, and mathematical models. (MNS)
Descriptors: Algorithms, Calculus, College Mathematics, Higher Education
Peer reviewedSchwartz, Judah; Yerushalmy, Michal – For the Learning of Mathematics, 1995
Contends that, though much attention is given in mathematics to the problem of sensitizing people to the need for identifying elements of a situation and representing them symbolically, little or no effort is devoted to the problem of helping them express the relationships among these elements. (11 references) (MKR)
Descriptors: Courseware, Elementary Secondary Education, Language Role, Mathematical Linguistics

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