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Marshall Gordon – Education and Culture, 2023
With democracy in mind, promoting students' cognitive, personal, and social development can inform and shape the mathematics curriculum and classroom practice with the goal of their becoming more capable, self-reflective, and socially aware human beings. Toward that realization, their mathematics experience could include: heuristics, as it…
Descriptors: Mathematics Instruction, Democracy, Student Development, Heuristics
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Feurzeig, Wallace; Papert, Seymour A. – Interactive Learning Environments, 2011
Formal mathematical methods remain, for most high school students, mysterious, artificial and not a part of their regular intuitive thinking. The authors develop some themes that could lead to a radically new approach. According to this thesis, the teaching of programming languages as a regular part of academic progress can contribute effectively…
Descriptors: Mathematics Education, Programming Languages, Academic Achievement, Heuristics
Ellis, Thomas I. – Research Roundup, 1988
This pamphlet reviews five reports that highlight an emerging consensus among researchers about the value of systematically incorporating cognitive instruction into the elementary school curriculum. First is a comprehensive framework by Robert J. Marzano and C. L. Hutchins for an integrated approach to thinking skills that has been developed and…
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Processes, Critical Thinking
Alibali, Martha Wagner; And Others – 1993
Findings from two studies of fourth grade children learning the concept of mathematical equivalence are presented. The questions studied were: (1) Can knowledge conveyed in gesture but not in speech be tapped by a recognition technique; and (2) Does having implicit knowledge that is expressed in gesture but not in speech have implications for…
Descriptors: Body Language, Cognitive Development, Concept Formation, Elementary School Students
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Taback, Stanley F. – School Science and Mathematics, 1992
Describes three components of a seminar in mathematical problem solving for preservice mathematics teachers: (1) a cognitive component that accents particular phases of problem solving; (2) an affective component that allows for observation of skillful problem solvers; and (3) an investigative component that provides for independent study and…
Descriptors: Cognitive Development, Discovery Learning, Heuristics, Higher Education
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Schumann, Heinz – Journal of Computers in Mathematics and Science Teaching, 1991
Described and evaluated are microcomputers as a tool for construction in geometry education and heuristic theorem finding through interactive continuous variation of geometric configurations. Numerous examples of theorem finding processes are provided using the prototype graphics system CABRI-Geometer. (MDH)
Descriptors: Cognitive Development, Cognitive Processes, Computer Assisted Instruction, Computer Software
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Hart, Lynn C. – Journal for Research in Mathematics Education, 1993
Examined cognitive processing and performance of 12 average seventh-grade students during cooperative problem solving. Factors that impeded performance included lack of an experiential framework, imposition of unrequired restrictions, lack of individual monitoring of cognitive activity, and unproductive beliefs. Factors that enhanced performance…
Descriptors: Cognitive Development, Cognitive Processes, Cooperative Learning, Grade 7
Tsang, Sau-Lim – 1983
Major revision in the U.S. mathematics curriculum since the 1960s have led to significant differences between the mathematics curriculum of the United States and those of many other countries. This study explored how eight Chinese immigrant students, with different cultural backgrounds, mathematics knowledge, and learning styles, learned in an…
Descriptors: Algebra, Bilingual Students, Case Studies, Cognitive Development
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Carpenter, Thomas P.; And Others – Elementary School Journal, 1996
Suggests that children enter school with a great deal of informal intuitive knowledge of mathematics that can serve as the basis for developing much of the formal mathematics of the primary school curriculum. Describes a research-based model of children's thinking that teachers can use to interpret, transform, and reframe their informal or…
Descriptors: Addition, Cognitive Development, Cognitive Processes, Division