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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
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
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
Sowell, Evelyn J.; Casey, Rita J. – 1982
The purpose of the two studies reported was to develop and validate clinical assessment instruments designed to identify both the progress of learners through a hierarchy of mathematics content and the mode of presentation through which learners can best handle the content. In Study 1, 73 second graders were given one of two forms of a 15-item…
Descriptors: Educational Research, Elementary Education, Elementary School Mathematics, Fractions

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

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
Loyd, Brenda H. – 1983
This study determined if overall mathematics performance of male and female students was: (1) different within each of six content areas; (2) differentially affected by ability grouping within each of the six content areas; and (3) differentially affected by the combination of ability grouping and grade level within each of the six content areas.…
Descriptors: Ability Grouping, Decimal Fractions, Elementary Education, Elementary School Mathematics
Suydam, Marilyn N., Ed.; Kasten, Margaret L., Ed. – Investigations in Mathematics Education, 1988
This publication is an abstracted compilation of 15 investigations selected from other journals. The information includes purpose, rationale, research design and procedures, findings, interpretations, abstractor's comments, and references. This journal includes the following reports: (1) "A Constructivist Approach to Numeration in Primary…
Descriptors: Computer Assisted Instruction, Elementary School Mathematics, Elementary Secondary Education, Fractions