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Pair, Jeffrey David – ProQuest LLC, 2017
What is mathematics? What does it mean to be a mathematician? What should students understand about the nature of mathematical knowledge and inquiry? Research in the field of mathematics education has found that students often have naive views about the nature of mathematics. Some believe that mathematics is a body of unchanging knowledge, a…
Descriptors: Mathematics, Heuristics, Humanism, Models
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Tandiseru, Selvi Rajuaty – Journal of Education and Practice, 2015
The problem in this research is the lack of creative thinking skills of students. One of the learning models that is expected to enhance student's creative thinking skill is the local culture-based mathematical heuristic-KR learning model (LC-BMHLM). Heuristic-KR is a learning model which was introduced by Krulik and Rudnick (1995) that is the…
Descriptors: Heuristics, Statistical Analysis, Creative Thinking, Thinking Skills
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Stephan, Michelle L. – Mathematics Teaching in the Middle School, 2009
This article gives a general overview of an alternative instructional sequence that can be used to teach integer concepts and operations. The sequence follows three heuristics from Realistic Mathematics Education (RME) that encourage curricula to be reinforced with real-world applications (financial net worth): move students gradually, yet…
Descriptors: Numbers, Mathematics Instruction, Secondary School Mathematics, Heuristics
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Baker, John; Baker, Ann – Australian Primary Mathematics Classroom, 2004
In this article, the authors would like to look at a range of solutions submitted by Year 4-5 teams in the 2003 "Naturally Mathematical Challenge" to a question that involves no more than the numbers 1 to 6 and possible arrangements of them. In the context of other competition questions and in their elaboration of mathematical process,…
Descriptors: Elementary School Mathematics, Grade 4, Grade 5, Number Concepts
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Schoenfeld, Alan H. – Journal for Research in Mathematics Education, 1992
Reacts to Ohlsson, Ernst, and Rees' paper by initially discussing the costs of methodology that utilizes artificial intelligence (AI) to model cognitive processes. Raises three concerns with the paper: insufficient clarification of the meaning of conceptual versus procedural understanding of base-10 subtraction; realism of the learning model; and…
Descriptors: Artificial Intelligence, Cognitive Processes, Computer Simulation, Educational Theories
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Meijer, Joost; Riemersma, Fre – Instructional Science, 1986
Presents thinking-aloud protocols from secondary pupils solving arithmetic story and geometrical problems and analyzes their protocols by using interpretation models founded on a general problem-solving model. A word problem solving simulation is also used to further explicate processes pupils use to solve mathematical tasks. (Author/MBR)
Descriptors: Algorithms, Computer Simulation, Educational Theories, Foreign Countries
Collins, Allan; And Others – American Educator: The Professional Journal of the American Federation of Teachers, 1991
The apprenticeship model can be adapted to teaching and learning cognitive skills in reading, writing, and mathematics, as illustrated by three successful examples. A cognitive apprenticeship framework is presented for the design of learning environments incorporating content taught, pedagogical methods, sequencing of learning activities, and…
Descriptors: Apprenticeships, Classroom Techniques, Cognitive Processes, Educational Environment
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Carpenter, Thomas P.; And Others – Journal for Research in Mathematics Education, 1993
After a year of instruction, 70 kindergarten children were individually interviewed as they solved basic, multistep, and nonroutine word problems. Thirty-two used a valid strategy for all 9 problems, and 44 correctly answered 7 or more problems. Modeling provided a unifying framework for thinking about problem solving. (Author/MDH)
Descriptors: Addition, Cognitive Processes, Cognitive Style, Division
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Fernanadez, Maria L.; And Others – Mathematics Teacher, 1994
Discusses research involving instruction to help students develop their mental managerial processes or metacognition, the role of a framework for problem-solving activities, the teacher as model or moderator, problem solving involving groups or pairs, and weaving writing into problem solving. (Contains 18 references.) (MKR)
Descriptors: Content Area Writing, Cooperative Learning, Developmental Stages, Heuristics