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Showing 1 to 15 of 21 results Save | Export
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Ervin, Heather K. – International Journal of Research in Education and Science, 2017
It is well documented in literature that rational number is an important area of understanding in mathematics. Therefore, it follows that teachers and students need to have an understanding of rational number and related concepts such as fraction multiplication and division. This practitioner reference paper examines models that are important to…
Descriptors: Mathematics Education, Fractions, Multiplication, Arithmetic
Kanive, Rebecca A. – ProQuest LLC, 2016
Distinguishing between sources of variability in mathematics performance may contribute to a more comprehensive theory of mathematics skills. Research has examined student differences based upon scores on achievement tests, which provide overall proficiency, but may not provide the detailed information for identifying and remediating difficulties.…
Descriptors: Academic Achievement, Grade 3, Problem Solving, Multiplication
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Confrey, Jere – North American Chapter of the International Group for the Psychology of Mathematics Education, 2012
The paper describes the history of how learning trajectories (LTs) were associated with the Common Core State Standards for Mathematics (CCSS-M) and discusses the degree to which the two correspond faithfully. It reports on a website, www.turnonccmath.com, which organizes the K-8 standards into 18 LTs describing the development of big ideas over…
Descriptors: Common Core State Standards, Arithmetic, Multiplication, Elementary School Mathematics
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Ploger, Don; Hecht, Steven – Childhood Education, 2012
Although learning mathematics certainly depends upon accurate understanding of the facts of multiplication, it requires much more. This study examines the relationship between a meaningful understanding of arithmetic operations and the mastery of basic facts. The study began with a joke about a mistaken mathematical fact. The children appreciated…
Descriptors: Arithmetic, Memory, Multiplication, Mathematics
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Tsankova, Jenny K.; Pjanic, Karmen – Mathematics Teaching in the Middle School, 2009
Teaching students how to multiply fractions is challenging, not so much from a computational point of view but from a conceptual one. The algorithm for multiplying fractions is much easier to learn than many other algorithms, such as subtraction with regrouping, long division, and certainly addition of fractions with unlike denominators. However,…
Descriptors: Prior Learning, Multiplication, Arithmetic, Mathematical Logic
Oesterle, Susan, Ed.; Allan, Darien, Ed. – Canadian Mathematics Education Study Group, 2014
This submission contains the Proceedings of the 2013 Annual Meeting of the Canadian Mathematics Education Study Group (CMESG), held at Brock University in St. Catharines, Ontario. The CMESG is a group of mathematicians and mathematics educators who meet annually to discuss mathematics education issues at all levels of learning. The aims of the…
Descriptors: Foreign Countries, Conferences (Gatherings), Mathematics Education, Creativity
Common Core State Standards Initiative, 2011
For over a decade, research studies of mathematics education in high-performing countries have pointed to the conclusion that the mathematics curriculum in the United States must become substantially more focused and coherent in order to improve mathematics achievement in this country. To deliver on the promise of common standards, the standards…
Descriptors: Mathematics Curriculum, Mathematics Education, State Standards, Mathematics Achievement
Leddy, T. – Mathematics Teaching, 1977
A method is discussed for justifying to students the fact that the product of two negative integers is positive. (DT)
Descriptors: Instruction, Integers, Mathematical Models, Mathematics Education
Damarin, Suzanne K. – 1976
A model for fractions derived by an operation of "scattering into subunits" is hypothesized. Five stages in the model are discussed. Assumptions underlying the development of the model, features of the model, and disadvantages of the model are listed. (DT)
Descriptors: Division, Elementary School Mathematics, Elementary Secondary Education, Fractions
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Green, George F., Jr. – Arithmetic Teacher, 1973
Descriptors: Diagrams, Elementary School Mathematics, Fractions, Geometric Concepts
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Kindle, E. Glenn – Arithmetic Teacher, 1976
A model for integer multiplication is discussed. (DT)
Descriptors: Elementary School Mathematics, Elementary Secondary Education, Instruction, Integers
Vest, Floyd; Congleton, Carol – Mathematics Teaching, 1978
Suggestions for teaching problem solving which include the use of general models, variation of illustrations and terminology, and diagrams are illustrated for comparison multiplication word problems. (MN)
Descriptors: Diagrams, Elementary Education, Elementary School Mathematics, Guidelines
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Fennema, Elizabeth H. – Journal for Research in Mathematics Education, 1972
A concrete and a symbolic approach to learning multiplication in the second grade are studied. The results, indicating that children using the symbolic model performed at a higher level than those using a concrete model, are discussed. (DT)
Descriptors: Elementary School Mathematics, Experiential Learning, Instruction, Learning
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Rathmell, Edward C. – Arithmetic Teacher, 1980
An analysis is presented of pupil responses to several items on the second National Assessment of Educational Progress (NAEP) mathematics survey which focused on the concepts and models of the fundamental operations. (MP) Aspect of National Assessment (NAEP) dealt with in this document: Results (Interpretation).
Descriptors: Addition, Division, Elementary School Mathematics, Elementary Secondary Education
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Dunkels, Andrejs – Arithmetic Teacher, 1982
A way to use tongue depressors in a model of multiplication is presented. The original intent was to use the sticks to teach about fractions, but "mistakes" in student responses led to new ideas. It is felt that teachers should use the model in teaching multiplication. (MP)
Descriptors: Computation, Elementary Education, Elementary School Mathematics, Instructional Materials
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