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Gersten, Russell; Schumacher, Robin F.; Jordan, Nancy C. – Journal of Learning Disabilities, 2017
Magnitude understanding is critical for students to develop a deep understanding of fractions and more advanced mathematics curriculum. The research reports in this special issue underscore magnitude understanding for fractions and emphasize number lines as both an assessment and an instructional tool. In this commentary, we discuss how number…
Descriptors: Numbers, Number Systems, Fractions, Mathematical Models
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Berch, Daniel B. – Journal of Learning Disabilities, 2017
In this commentary, I examine some of the distinctive, foundational difficulties in learning fractions and other types of rational numbers encountered by students with a mathematical learning disability and how these differ from the struggles experienced by students classified as low achieving in math. I discuss evidence indicating that students…
Descriptors: Fractions, Mathematical Aptitude, Disabilities, Learning Problems
Tian, Jing; Siegler, Robert S. – Journal of Learning Disabilities, 2017
Learning fractions is difficult for children in general and especially difficult for children with mathematics difficulties (MD). Recent research on developmental and individual differences in fraction knowledge of children with MD and typically achieving (TA) children has demonstrated that U.S. children with MD start middle school behind their TA…
Descriptors: Fractions, Mathematical Aptitude, Learning Problems, Mathematics Achievement
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Aksoy, Nuri Can; Yazlik, Derya Ozlem – Journal of Education and Training Studies, 2017
In this study, it was aimed to determine the errors and misunderstandings of 5th and 6th grade middle school students in fractions and operations with fractions. For this purpose, the case study model, which is a qualitative research design, was used in the research. In the study, maximum diversity sampling, which is a purposeful sampling method,…
Descriptors: Fractions, Error Patterns, Grade 6, Grade 5
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McDowell, Eric L. – Mathematics Teacher, 2016
By the time they reach middle school, all students have been taught to add fractions. However, not all have "learned" to add fractions. The common mistake in adding fractions is to report that a/b + c/d is equal to (a + c)/(b + d). It is certainly necessary to correct this mistake when a student makes it. However, this occasion also…
Descriptors: Fractions, Number Systems, Number Concepts, Numbers
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Simmt, Elaine; Davis, Brent – Mathematics Teacher, 1998
Presents an activity using fractal cards--eye-catching pop-up cards--by applying simple iterative processes to single sheets of paper. This activity incorporates the concepts of measurement, number systems, sequences, series, limits, recursion, iteration, self-similarity, and fractional dimensions. Contains 12 references. (ASK)
Descriptors: Experiential Learning, Fractals, Fractions, Geometry
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Bonotto, C. – Insegnamento della Matematica e delle Scienze Integrate, 1995
Attempted to verify knowledge regarding decimal and rational numbers in children ages 10-14. Discusses how pupils can receive and assimilate extensions of the number system from natural numbers to decimals and fractions and later can integrate this extension into a single and coherent numerical structure. (Author/MKR)
Descriptors: Cognitive Structures, Decimal Fractions, Elementary School Students, Elementary Secondary Education
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Van Engen, H. – Arithmetic Teacher, 1993
This is a reprint of an address given at the Christmas National Council of Teachers of Mathematics (NCTM) meeting in 1958. It provides a critique of elementary instruction and discusses the changes necessary. It calls for fundamental change in the concept of mathematics teaching. (PDD)
Descriptors: Arithmetic, Drills (Practice), Elementary Education, Elementary School Mathematics
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Khoury, 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
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Ofir, Ron – For the Learning of Mathematics, 1991
Presents activities developed for teacher training courses for the middle school level that integrate mathematics history with the selected topics of number systems, fractions, and geometry. The activities seek to give relevance to history and to motivate and deepen students' understanding of the evolution of mathematical concepts. (MDH)
Descriptors: Fractions, Geometry, Inservice Teacher Education, Integrated Activities
O'Banion, Carie – School Library Media Activities Monthly, 1997
Provides a bibliography of children's literature exploring mathematical concepts: classification; place value and numeration systems; counting, addition, and subtraction; multiplication and division; fractions; estimation; big numbers; geometry; measurement; and games and puzzles. Highlights one book for each concept, suggests class activities,…
Descriptors: Addition, Annotated Bibliographies, Childrens Literature, Class Activities