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Palha, Sonia; Dekker, Rijkje; Gravemeijer, Koeno; van Hout-Wolters, Bernadette – Journal of Mathematical Behavior, 2013
Meaningful learning of formal mathematics in regular classrooms remains a problem in mathematics education. Research shows that instructional approaches in which students work collaboratively on tasks that are tailored to problem solving and reflection can improve students' learning in experimental classrooms. However, these sequences involve…
Descriptors: Teaching Methods, Learning Processes, Education, Mathematics Instruction
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Brousseau, Guy; Brousseau, Nadine; Warfield, Virginia – Journal of Mathematical Behavior, 2009
In the late seventies, Guy Brousseau set himself the goal of verifying experimentally a theory he had been building up for a number of years. The theory, consistent with what was later named (nonradical) constructivism, was that children, in suitable carefully arranged circumstances, can build their own knowledge of mathematics. The experiment,…
Descriptors: Constructivism (Learning), Arithmetic, Problem Solving, Mathematical Concepts
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Muir, Tracey; Beswick, Kim; Williamson, John – Journal of Mathematical Behavior, 2008
This paper reports one aspect of a larger study which looked at the strategies used by a selection of grade 6 students to solve six non-routine mathematical problems. The data revealed that the students exhibited many of the behaviours identified in the literature as being associated with novice and expert problem solvers. However, the categories…
Descriptors: Problem Solving, Grade 6, Mathematics Instruction, Student Behavior
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Eriksson, Gota – Journal of Mathematical Behavior, 2008
This article reports on 20 children's learning in arithmetic after teaching was adjusted to their conceptual development. The report covers periods from three months up to three terms in an ongoing intervention study of teachers and children in schools for the intellectually disabled and of remedial teaching in regular schools. The researcher…
Descriptors: Teacher Supervision, Arithmetic, Researchers, Teaching Methods
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Marrongelle, Karen – Journal of Mathematical Behavior, 2007
The purpose of this paper is to present evidence supporting the conjecture that graphs and gestures may function in different capacities depending on whether they are used to develop an algorithm or whether they extend or apply a previously developed algorithm in a new context. I illustrate these ideas using an example from undergraduate…
Descriptors: Mathematics Education, Graphs, Equations (Mathematics), Nonverbal Communication
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Brousseau, Guy; Brousseau, Nadine; Warfield, Virginia – Journal of Mathematical Behavior, 2007
In the late seventies, Guy Brousseau set himself the goal of verifying experimentally a theory he had been building up for a number of years. The theory, consistent with what was later named (non-radical) constructivism, was that children, in suitable carefully arranged circumstances, can build their own knowledge of mathematics. The experiment,…
Descriptors: Constructivism (Learning), National Programs, Arithmetic, Mathematics Curriculum
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Weber, Keith – Journal of Mathematical Behavior, 2005
In university mathematics courses, the activity of proof construction can be viewed as a problem-solving task in which the prover is asked to form a logical justification demonstrating that a given statement must be true. The purposes of this paper are to describe some of the different types of reasoning and problem-solving processes used by…
Descriptors: Problem Solving, Mathematics, College Mathematics, Mathematics Instruction
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Tsamir, Pessia; Rasslan, Shaker; Dreyfus, Tommy – Journal of Mathematical Behavior, 2006
This paper illustrates the role of a "Thinking-about-Derivatives" task in identifying learners' derivative conceptions and for promoting their critical thinking about derivatives of absolute value functions. The task included three parts: "Define" the derivative of a function f(x) at x = x[subscript 0], "Solve-if-Possible" the derivative of f(x) =…
Descriptors: Critical Thinking, Mathematical Logic, Thinking Skills, Mathematics Instruction
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Rickard, Anthony – Journal of Mathematical Behavior, 1996
Profiles a middle school mathematics teacher and examines her use of two problems from a pilot version of a 6th grade unit developed by a mathematics curriculum project. Reports that problem-solving-oriented curricula provide opportunities for students to make mathematics connections and leads to student confusion and uncertainty. Contains 35…
Descriptors: Area, Educational Change, Geometry, Mathematical Concepts
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Burns, Marilyn – Journal of Mathematical Behavior, 1987
What are often missing for children in classroom instruction are experiences with numbers that stretch beyond computation skills and word problems. This lesson models such an experience for third graders. Students use small boxes of raisins in several problem-solving activities. Children apply whole number operations, estimate, consider…
Descriptors: Elementary Education, Elementary School Mathematics, Estimation (Mathematics), Grade 3
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Davis, Robert B. – Journal of Mathematical Behavior, 1987
Mathematics is considered a performing art. Examples illustrating this view are presented. Activities discussed are from the Madison Project materials and the mathematics program at University High School in Urbana, Illinois. Activities stress inventing strategies for attacking problems for elementary and secondary school mathematics. (RH)
Descriptors: Calculus, Elementary Education, Elementary School Mathematics, Mathematics
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Wachsmuth, Ipke; Becker, Jerry P. – Journal of Mathematical Behavior, 1986
The discussions of the theme group on Technology and Cognitive Development at the Fifth International Congress on Mathematical Education are summarized. How computers can be used to engage students actively, to promote problem-solving skills, and to achieve better understanding is discussed. (MNS)
Descriptors: Cognitive Development, Computer Oriented Programs, Concept Formation, Educational Change
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Gill, Alice J.; Thompson, Arlene – Journal of Mathematical Behavior, 1995
Illustrates the multiple strategies used by second graders to solve a problem with three addends and how their teacher tries to map their thinking into the system of mathematical notation. Describes the American Federation of Teachers' Thinking Mathematics program that the teacher uses. (MKR)
Descriptors: Addition, Arithmetic, Cognitive Mapping, Cognitive Processes
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Grugnetti, Lucia; Jaquet, Francois – Journal of Mathematical Behavior, 2005
In this paper, some aspects of French mathematical education theory concerning "problem situations" are taken into account. In this theoretical framework, the choice of problem situations is fundamental in order to allow pupils to make hypotheses, to mobilize their knowledge, to argue, and finally, to construct new knowledge. Certain…
Descriptors: Mathematics Education, Problem Solving, Foreign Countries, Educational Theories
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Mamona-Downs, Joanna; Downs, Martin – Journal of Mathematical Behavior, 2005
This paper raises issues motivated by considering the "identity" of problem solving. This means that we are concerned with how other mathematics education topics impinge on problem solving, and with themes that naturally arise within the problem-solving agenda. We claim that some of these issues need more attention by educational research, while…
Descriptors: Mathematics Education, Educational Research, Problem Solving, Mathematics Instruction
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