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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1 to 15 of 102 results
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Kamii, Constance; Russell, Kelly A. – Journal for Research in Mathematics Education, 2012
Based on Piaget's theory of logico-mathematical knowledge, 126 students in grades 2-5 were asked 6 questions about elapsed time. The main reason found for difficulty with elapsed time is children's inability to coordinate hierarchical units (hours and minutes). The educational implications drawn are that students must be encouraged to think about…
Descriptors: Piagetian Theory, Cognitive Development, Time, Time Perspective
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Swinyard, Craig; Larsen, Sean – Journal for Research in Mathematics Education, 2012
The purpose of this article is to elaborate Cottrill et al.'s (1996) conceptual framework of limit, an explanatory model of how students might come to understand the limit concept. Drawing on a retrospective analysis of 2 teaching experiments, we propose 2 theoretical constructs to account for the students' success in formulating and understanding…
Descriptors: Mathematics Education, Learner Engagement, Models, Experiments
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Baker, David; Knipe, Hilary; Collins, John; Leon, Juan; Cummings, Eric; Blair, Clancy; Gamson, David – Journal for Research in Mathematics Education, 2010
A content analysis of over 28,000 pages from 141 elementary school mathematics textbooks published between 1900 and 2000 shows that widely used mathematics textbooks have changed substantially. Textbooks from the early part of the century were typically narrow in content but presented substantial amounts of advanced arithmetic and also asked…
Descriptors: Elementary School Mathematics, Textbooks, Content Analysis, Mathematics Instruction
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Kamii, Constance; Russell, Kelly A. – Journal for Research in Mathematics Education, 2010
Piaget (1971) made a distinction between intuitive (preoperational) time and operational (logico-mathematical) time. According to Piaget, operational time develops around 7-8 years of age and is characterized by children's ability to deduce, for example, that if A was born before B, A will always be older than B. When time is still intuitive,…
Descriptors: Time, Mathematical Concepts, Young Children, Elementary School Students
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Chandler, Cynthia C.; Kamii, Constance – Journal for Research in Mathematics Education, 2009
The purpose of this study was to investigate children's construction of 10s out of the 1s they have already constructed. It was found that, for many younger children, a dime was something different from 10 pennies even though they could say with confidence that a dime was worth 10 cents. As the children grew older, their performance improved.…
Descriptors: Problem Solving, Arithmetic, Number Concepts, Children
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Wood, Terry; Williams, Gaye; McNeal, Betsy – Journal for Research in Mathematics Education, 2006
The relationship between normative patterns of social interaction and children's mathematical thinking was investigated in 5 classes (4 reform and 1 conventional) of 7- to 8-year-olds. In earlier studies, lessons from these classes had been analyzed for the nature of interaction broadly defined; the results indicated the existence of 4 types of…
Descriptors: Interpersonal Relationship, Interaction, Mathematics Skills, Mathematical Logic
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Guberman, Steven R. – Journal for Research in Mathematics Education, 2004
The study reported in this article examined relations between ethnicity, out-of-school activities, and arithmetical achievements in Latin American and Korean American children in first, second, and third grades. Three types of data were collected: parents' educational attitudes and beliefs, parents' reports of children's everyday activities with…
Descriptors: Comparative Analysis, Latin Americans, Educational Attitudes, Arithmetic
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Simon, Martin A.; Tzur, Ron; Heinz, Karen; Kinzel, Margaret – Journal for Research in Mathematics Education, 2004
We articulate and explicate a mechanism for mathematics conceptual learning that can serve as a basis for the design of mathematics lessons. The mechanism, reflection on activity-effect relationships, addresses the learning paradox (Pascual-Leone, 1976), a paradox that derives from careful attention to the construct of assimilation (Piaget, 1970).…
Descriptors: Mathematics Instruction, Logical Thinking, Lesson Plans, Cognitive Development
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Doerr, Helen M.; English, Lyn D. – Journal for Research in Mathematics Education, 2003
Discusses the nature of tasks used to elicit the development of such systems by middle school students. Analyzes mathematical reasoning development of students across tasks and the diversity of thinking patterns identified on problem tasks. Discusses student reasoning about the relationships between and among quantities and their application in…
Descriptors: Cognitive Development, Concept Formation, Data Analysis, Mathematical Models
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Kato, Yasuhiko; Kamii, Constance; Ozaki, Kyoko; Nagahiro, Mariko – Journal for Research in Mathematics Education, 2002
Interviews 60 Japanese children between the ages of 3 and 7 years to investigate the relationship between levels of abstraction and representation. Indicates that abstraction and representation are closely related. Implies that educators need to focus more on the mental relationships children make because the meaning children can give to…
Descriptors: Abstract Reasoning, Cognitive Development, Early Childhood Education, Foreign Countries
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Sophian, Catherine – Journal for Research in Mathematics Education, 2002
Examines preschool children's understanding of the mathematical significance of unit size through problems that involve making judgments about the number of larger objects versus the number of smaller objects. Elicits children's judgments about the effects of object size both before and after the presentation of a series of demonstration trials.…
Descriptors: Cognitive Development, Concept Formation, Early Childhood Education, Mathematics Education
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Carlson, Marilyn; Jacobs, Sally; Coe, Edward; Larsen, Sean; Hsu, Eric – Journal for Research in Mathematics Education, 2002
Develops covariational reasoning and proposes a framework for describing mental actions when interpreting and representing dynamic function events. Investigates calculus students' ability to reason about covarying quantities in dynamic situations. Suggests that curriculum and instruction should emphasize moving students to a coordinated image of…
Descriptors: Calculus, Cognitive Development, Curriculum Development, Higher Education
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Outhred, Lynne N.; Mitchelmore, Michael C. – Journal for Research in Mathematics Education, 2000
Focuses on the strategies young children (N=115) use to solve rectangular covering tasks before they have been taught area measurement. Children's solution strategies were classified into five developmental levels. Emphasizes the importance of understanding the relationship between the size of a unit and the dimensions of the rectangle in learning…
Descriptors: Area, Cognitive Development, Early Childhood Education, Learning Strategies
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Jones, Graham A.; Langrall, Cynthia W.; Thornton, Carol A.; Mogill, A. Timothy – Journal for Research in Mathematics Education, 1999
Evaluates the thinking of third grade students in relation to an instructional program in probability which was informed by a research-based framework that included a description of students' probabilistic thinking. Reveals that overcoming misconceptions in sample space, applying both part-part and part-whole reasoning, and using invented language…
Descriptors: Abstract Reasoning, Cognitive Development, Grade 3, Learning
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Tzur, Ron – Journal for Research in Mathematics Education, 1999
Studies the co-emergence of teaching and children's construction of specific conceptions that support the generation of improper fractions in a constructivist teaching experiment with two fourth-grade students posing and solving tasks in a computer microworld. Reports that examination of the teacher's adaptation of learning situations (tasks) and…
Descriptors: Cognitive Development, Computer Uses in Education, Concept Formation, Constructivism (Learning)
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