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Pulles, Sandra Moran – ProQuest LLC, 2016
Proficiency in mathematics across the United States has become an area of concern as performance on state accountability tests continues to demonstrate that less than 50% of students in 4th and 8th grade are proficient in mathematics (NCES, 2013). With such large numbers of students lacking proficiency in mathematics, systematic interventions that…
Descriptors: Mathematics Instruction, Mathematics Skills, Grade 3, Grade 4
Poncy, Brian C.; Skinner, Christopher H.; Axtell, Philip K. – Psychology in the Schools, 2010
A multiple-probe-across-problem-sets (tasks) design was used to evaluate the effects of the Detect, Practice, and Repair (DPR) on multiplication-fact fluency development in seven third-grade students nominated by their teacher as needing remediation. DPR is a multicomponent intervention and begins with a group-administered, metronome-paced…
Descriptors: Maintenance, Multiplication, Remedial Instruction, Grade 3
Outhred, Lynne; Mitchelmore, Michael – International Group for the Psychology of Mathematics Education, 2004
This paper presents the results of a study of the structural development of young students' drawings of arrays, and in particular, the significance of using lines instead of drawing individual squares. Students' array drawings were classified on basis of numerical properties, and perceived structural similarities that reflected the spatial…
Descriptors: Cognitive Development, Spatial Ability, Elementary School Students, Mathematics Instruction
Peer reviewedPauli, P.; Bourne, L. E., Jr.; Birbaumer, N. – Mathematical Cognition, 1998
Presents a study in which participants were trained on nine single-digit multiplication problems over three sessions. Transfer of practice was tested with nine different multiplication problems in the fourth session for half the participants. Interprets problem-size, transfer, and retention effects within a network-interference model of mental…
Descriptors: Arithmetic, Cognitive Ability, Cognitive Development, Elementary Education
Peer reviewedLampert, Magdalene – Journal of Mathematical Behavior, 1986
How multiplication is usually taught in school and how it could be taught are discussed. Development of understanding is illustrated through children's words and work. (MNS)
Descriptors: Cognitive Development, Concept Formation, Elementary Education, Elementary School Mathematics
Peer reviewedChristou, Constantinos; Philippou, George – Journal for Research in Mathematics Education, 1998
Investigates the effect of mental schemes corresponding to additive and multiplicative situations in the process of interpreting and solving problems. Classifies relative difficulties of problems according to their situations which are considered through a written test administered to pupils in grades 2, 3, and 4. Supports the assumption that…
Descriptors: Addition, Arithmetic, Cognitive Development, Concept Formation
Harel, Guershon, Ed.; Confrey, Jere, Ed. – 1994
This book is a compilation of recent research on the development of multiplicative concepts. The sections and chapters are: (1) Theoretical Approaches: "Children's Multiplying Schemes" (L. Steffe), "Multiplicative Conceptual Field: What and Why?" (G. Vergnaud), "Extending the Meaning of Multiplication and Division" (B. Greer); (2) The Role of the…
Descriptors: Addition, Arithmetic, Cognitive Development, Division
Peer reviewedTreffers, A. – Educational Studies in Mathematics, 1987
Describes the characteristics of progressive schematization with regard to column multiplication and column division. Contrasts this with column arithmetic based on progressive complexity. Presents a summary of research data concerning column arithmetic. (TW)
Descriptors: Arithmetic, Cognitive Development, Cognitive Structures, Division
Davydov, V. V. – Focus on Learning Problems in Mathematics, 1992
Describes the psychological analysis of the instruction of the concept of multiplication in the former Soviet Union. Presents a system of instructional situations in introducing multiplication and the main results of instruction for grade two. (MDH)
Descriptors: Cognitive Development, Cognitive Processes, Concept Formation, Elementary Education
Peer reviewedCramer, Kathleen; Bezuk, Nadine – Arithmetic Teacher, 1991
Applies the Lesh Translation Model to develop conceptual understanding by showing relationships between five modes of representation proposed by Lesh to learn multiplication of fractions. Presents five teaching activities based on the translation model. (MDH)
Descriptors: Cognitive Development, Concept Formation, Elementary Education, Fractions
Quintero, Ana Helvia – 1981
This paper studies the difficulties children have solving word problems that correspond to one of the situations modeled by multiplication; that of a ratio (e.g. "candies per box"), multiplied by an extensive quantity (e.g. "boxes") (I x E). Sixty children were individually observed solving and repeating I x E problems. Various…
Descriptors: Cognitive Development, Cognitive Processes, Educational Research, Elementary Education
Peer reviewedGraeber, Anna O. – Arithmetic Teacher, 1993
Discusses the two overgeneralizations "multiplications makes bigger" and "division makes smaller" in the context of solving word problems involving rational numbers less than one. Presents activities to help students make sense of multiplication and division in these situations. (MDH)
Descriptors: Cognitive Development, Concept Formation, Decimal Fractions, Division
Peer reviewedMulligan, Joanne – Mathematics Education Research Journal, 1992
Children's (n=70) solution strategies to a variety of multiplication and division word problems were analyzed to determine performance levels and strategies used. Solution strategies were classified at three levels: direct modeling with counting; no direct modeling with counting, additive, or subtractive strategies; and use of known derived facts.…
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Style, Constructivism (Learning)
Peer reviewedBezuk, Nadine S.; Armstrong, Barbara E. – Mathematics Teacher, 1992
Presents five activities to help students construct meaning for multiplying fractions through real-world problem contexts, physical or pictorial models, the recognition of patterns, and the use of calculators. In the context of a garden plot, worksheets examine various aspects of parts of plots, patterns in plots, and a maximization problem.…
Descriptors: Calculators, Cognitive Development, Concept Formation, Fractions
Peer reviewedCarpenter, 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
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