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Israel, Joan – 1965
The Minnesota School Mathematics and Science Teaching (MINNEMAST) Project is characterized by its emphasis on the coordination of mathematics and science in the elementary school curriculum. Units are planned to provide children with activities in which they learn various concepts from both subject areas. Each subject is used to support and…
Descriptors: Addition, Curriculum, Division, Elementary School Mathematics
Peer reviewedBezuk, Nadine S. – Arithmetic Teacher, 1988
Discusses some important components of instruction on fractions in the early childhood years. Argues that fractions should be included in the early childhood curriculum and suggests various activities and materials. (PK)
Descriptors: Computation, Concept Formation, Early Childhood Education, Elementary Education
Peer reviewedAnand, Padma G.; Ross, Steven M. – Journal of Educational Psychology, 1987
The purpose of this research was to design and evaluate a computer based adaptive strategy for teaching mathematics. Results indicated preference for materials with personalized examples for motivation and meaningful learning of problem solving procedures. Practical advantages of the computer-based model for adapting instruction are also…
Descriptors: Analysis of Variance, Aptitude Treatment Interaction, Biographical Inventories, Computer Assisted Instruction
Peer reviewedGreer, Brian – Journal for Research in Mathematics Education, 1987
Investigated was how easily pupils aged 12 and 13 who were initially unaware of the invariance of an operation (with decimals) modeling a situation could be led to such awareness. Results from clinical interviews are reviewed and a protocol presented. It appeared difficult to induce conservation. (MNS)
Descriptors: Cognitive Processes, Conservation (Concept), Decimal Fractions, Division
Vergnaud, Gerard – International Reviews on Mathematical Education, 1983
Examples are given of the variety of mathematical concepts and problems being studied by psychologically oriented researchers in France. Work on decimals, circles, natural numbers, decimal and real numbers, and didactic transposition are included. Comments on designing research on mathematics concept formation conclude the article. (MNS)
Descriptors: Cognitive Processes, Decimal Fractions, Educational Research, Geometric Concepts
Peer reviewedGrossman, Anne S. – Arithmetic Teacher, 1983
Difficulties that entering college freshmen showed on a mathematics assessment test are discussed. More students can perform decimal computation than can order decimals. The concept of equivalent decimals should be taught more carefully at every level. (MNS)
Descriptors: College Freshmen, Decimal Fractions, Educational Research, Elementary Secondary Education
Peer reviewedTabler, M. Bernadine; Jacobson, Marilyn Hall – Arithmetic Teacher, 1980
Presented are activities which give practice in making estimates, gathering data, and checking the reasonableness of results. (TG)
Descriptors: Decimal Fractions, Elementary School Mathematics, Elementary Secondary Education, Learning Activities
Peer reviewedStohl, Hollylynne Drier – ON-Math, 2002
Describes software tools designed to help students investigate relationships among representations of rational numbers that emphasize the part-whole model of a rational number. (KHR)
Descriptors: Arithmetic, Computer Uses in Education, Concept Formation, Educational Environment
Peer reviewedJoslyn, Ruth E. – Arithmetic Teacher, 1990
Described is an activity where base-10 blocks are used to develop students' skills in reading, writing, and visualizing large numbers. An activity sheet that helps students with decimal points is included. (KR)
Descriptors: Cognitive Development, Cognitive Processes, Decimal Fractions, Elementary Education
Behr, Merlyn J.; And Others – Focus on Learning Problems in Mathematics, 1988
Children in grades four and five had instruction on fractions with a continuous manipulative aid to help transfer their knowledge to tasks with a discrete manipulative aid. Results suggest that discrete-embodiment tasks are more difficult than continuous-embodiment tasks. (MNS)
Descriptors: Educational Research, Elementary Education, Elementary School Mathematics, Fractions
Peer reviewedSmith, John P. III – Cognition and Instruction, 1995
Analyzed students' reasoning with fractions. Found that skilled students applied strategies specifically tailored to restricted classes of fractions and produced reliable solutions with a minimum of computation effort. Results suggest that competent reasoning depends on a knowledge base that includes numerically specific and invented strategies,…
Descriptors: Computation, Elementary School Mathematics, Fractions, Mathematical Concepts
Peer reviewedWentworth, Nancy M.; Monroe, Eula Ewing – Mathematics Teaching in the Middle School, 1995
Discusses ways teachers can encourage students to construct useful meanings for the fractional unit. Provides three examples of representations of common fractions and illustrates misconceptions in fraction problems. Includes a brief summary of constructivist mathematics education and an example in which a teacher misunderstands a fractional unit.…
Descriptors: Arithmetic, Concept Formation, Constructivism (Learning), Fractions
Peer reviewedWearne, Diana – Educational Studies in Mathematics, 1990
Reported are the effects of a conceptually oriented unit on decimal fractions. The relationships between short-term changes in solving processes and the stability of these processes over time, performance of students, and entry achievement level and the long-term effects of conceptually based instruction are discussed. (KR)
Descriptors: Cognitive Development, Concept Formation, Elementary Education, Elementary School Mathematics
Peer reviewedWoodward, John; Gersten, Russell – Exceptional Children, 1992
Seven secondary teachers of 57 students with learning disabilities used a videodisc program to teach fractions. Teacher and student reactions were very positive, almost two-thirds of the students reached or exceeded criterion performance, and teaching styles of participating teachers subsequently became more interactive. (JDD)
Descriptors: Educational Innovation, Educational Technology, Fractions, Instructional Effectiveness
Peer reviewedKhoury, Helen A.; Zazkis, Rina – Educational Studies in Mathematics, 1994
Investigated (n=124) preservice school teachers' reasoning and concepts of invariance of fractional numbers under numeration systems in different bases. The majority of students believed that fractions change their numerical value under different symbolic representations. (Author/MKR)
Descriptors: Cognitive Style, College Students, Elementary Secondary Education, Fractions


