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Herold, Katherine H.; Bock, Allison M.; Murphy, Melissa M.; Mazzocco, Michèle M. M. – Learning Disability Quarterly, 2020
When a student struggles with a mathematics task, adults may rephrase or expand initial task instructions to clarify instructions or scaffold problem solving. Yet expanded instructions may not benefit all children, especially children with a mathematics learning disability (MLD). Here, we explore whether expanded instructions differentially affect…
Descriptors: Teaching Methods, Mathematics Instruction, Fractions, Learning Disabilities
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Windria, Hening; Zulkardi, Zulkardi; Hartono, Yusuf – Elementary School Forum (Mimbar Sekolah Dasar), 2020
Mixed numbers and fraction in general have been a problem for students not only in understanding the concept of itself, but also in understanding the operation of it, such as addition. Thus, supporting students in learning addition of mixed numbers is needed. The aim of this study is to develop a local instructional theory and materials related to…
Descriptors: Educational Research, Grade 4, Elementary School Students, Addition
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Novaes, Barbara Winiarski Diesel; Berticelli, Danilene Gullich Donin; Pinto, Neuza Bertoni – Pedagogical Research, 2020
The present study, conducted from the perspective of cultural history (Certeau, 1982; Chartier, 1990; Chervel, 1990; Julia 2001)), aims to investigate guidelines for the use of teaching materials to teach fractions in the primary school, present in pedagogical manuals of the period from 1930 to 1970. The research is based in references such as…
Descriptors: Educational History, Instructional Materials, Mathematics Instruction, Fractions
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McMullen, Jake; Siegler, Robert S. – Mathematical Thinking and Learning: An International Journal, 2020
To test the hypothesis that a higher tendency to "s"pontaneously "f"ocus "o"n "m"ultiplicative "r"elations (SFOR) leads to improvements in rational number knowledge via more exact estimation of fractional quantities, we presented sixth graders (n = 112) with fraction number line estimations and a…
Descriptors: Fractions, Multiplication, Grade 6, Hypothesis Testing
Dabae Lee; Yeol Huh – Sage Research Methods Cases, 2025
This case study is a methodological reflection of the study titled "Developing an AI-based Chatbot for Practicing Responsive Teaching in Mathematics." The study aimed to leverage artificial intelligence (AI) to address a critical issue in mathematics teacher education--the absence of children for preservice teachers (PSTs) to practice…
Descriptors: Artificial Intelligence, Computer Mediated Communication, Mathematics Instruction, Teaching Methods
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Hwang, Jiwon; Riccomini, Paul J. – British Journal of Special Education, 2019
Developing an understanding of fractions is critical, as it is the first connection of whole-number properties to rational numbers within a single framework. The unique properties of fractions necessitate solution processes that are distinctive and often more complicated than whole-number processes, resulting in many students struggling with…
Descriptors: Accuracy, Learning Disabilities, Fractions, Mathematics Instruction
Ben Clarke; Nancy J. Nelson; Leanne Ketterlin Geller; Derek Kosty; Keith Smolkowski; Taylor Lesner; David Furjanic; Hank Fien – Grantee Submission, 2022
This pilot study examined the promise of a Tier 2 sixth grade intervention program for students at-risk for difficulties in mathematics. The study utilized a quasi-experimental design. The final sample included 112 students in treatment (Promoting Algebra Readiness) and 86 students in control (standard district practice) conditions. The Promoting…
Descriptors: Grade 6, Fractions, Mathematics Instruction, At Risk Students
Ben Clarke; Nancy J. Nelson; Leanne Ketterlin Geller; Derek Kosty; Keith Smolkowski; Taylor Lesner; David Furjanic; Hank Fien – Learning Disability Quarterly, 2022
This pilot study examined the promise of a Tier 2 Grade 6 intervention program for students at risk for difficulties in mathematics. The study utilized a quasi-experimental design. The final sample included 112 students in treatment (Promoting Algebra Readiness) and 86 students in control (standard district practice) conditions. The Promoting…
Descriptors: Grade 6, Fractions, Mathematics Instruction, At Risk Students
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Silva, Juanita M.; Hunt, Jessica H.; Welch-Ptak, Jasmine – Journal for Research in Mathematics Education, 2023
We present the evolving fraction conceptions of two elementary school children with mathematics learning disabilities (MLD). We use qualitative analyses to capture the mathematical knowledge and experiences of each child and show how teaching was used to support advancement of their fractional reasoning. Results illustrate two viable pathways of…
Descriptors: Elementary School Students, Students with Disabilities, Learning Disabilities, Mathematics Instruction
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Güveli, Ebru; Bulut, Demet Baran; Güveli, Hasan – Turkish Online Journal of Educational Technology - TOJET, 2021
Fraction is one of the important mathematics topics, and it has been determined that students at every grade have misconceptions about fractions. Regarding the fact that technology has been developing rapidly, it is actively used in educational institutions. It has a great number of benefits. It has become inevitable to associate conceptual change…
Descriptors: Fractions, Mathematics Instruction, Concept Formation, Mathematical Concepts
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Ahrendt, Susan; Monson, Debra; Cramer, Kathleen – Mathematics Teacher: Learning and Teaching PK-12, 2021
In grade 3, students are expected to be able to represent a fraction on a number line by first identifying the interval from 0 to 1 as the unit and by partitioning the unit as needed on the basis of the denominator. This task extends these grade 3 fraction goals stated in the Common Core State Standards for Mathematics (NGA Center and CCSSO 2010)…
Descriptors: Elementary School Mathematics, Mathematics Instruction, Grade 3, Fractions
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Hackenberg, Amy J.; Creager, Mark; Eker, Ayfer – Mathematical Thinking and Learning: An International Journal, 2021
Three iterative, 18-episode design experiments were conducted after school with groups of 6-9 middle school students to understand how to differentiate mathematics instruction. Prior research on differentiating instruction (DI) and hypothetical learning trajectories guided the instruction. As the experiments proceeded, this definition of DI…
Descriptors: Mathematics Instruction, Teaching Methods, Individualized Instruction, Thinking Skills
Kathryn Mary Rich – ProQuest LLC, 2021
A recent review of research on virtual manipulatives (VMs), defined as technology-based interactive representations of mathematical ideas (Moyer-Packenham, & Bolyard, 2016), suggests strengths relative to other instructional tools in supporting student learning of mathematics (Moyer-Packenham & Westenskow, 2013). Researchers have…
Descriptors: Manipulative Materials, Educational Technology, Mathematics Instruction, Teaching Methods
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Hord, Casey; Ladrigan, Emily; Saldanha, Rene L. – Learning Disabilities: A Contemporary Journal, 2020
The researchers conducted a microanalysis of two purposefully sampled sessions of a tutor working with a student with a learning disability (LD) engaging with multi-step equations with and without fractions. During the tutoring sessions, the student experienced quick, independent success on equations without fractions, but struggled considerably…
Descriptors: Learning Disabilities, Equations (Mathematics), Fractions, Mathematics Instruction
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Igoe, Damien; Boucher, Nicholas; Clark, Iain; Parisi, Alfio; Downs, Nathan – Australian Mathematics Teacher, 2018
This article proposes a practical method of teaching the addition of unit fractions using a series of mirror equation experiments.
Descriptors: Fractions, Addition, Equations (Mathematics), Mathematics Instruction
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