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Jessica Rodrigues; Shannon Locke; Emily L. Singell; Lindsey G. Mirielli – Intervention in School and Clinic, 2024
The number line is a powerful tool for supporting students' understanding of fraction magnitude. Fractions are a critical component of mathematics instruction in the elementary and intermediate grades. More specifically, understanding fraction magnitude is central to mathematical development. Yet, fractions are challenging for many students,…
Descriptors: Mathematics Instruction, Fractions, Teaching Methods, Elementary School Students
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Xueyan Li; Jiaxi Li; Sijia Zhao; Yini Liao; Liqi Zhu; Yi Mou – Autism: The International Journal of Research and Practice, 2024
The mathematical abilities of children with autism spectrum condition have been understudied. Magnitude representation is a fundamental numerical ability that emerges early in development and is linked to children's learning of formal mathematics. It remains unclear about whether children with autism spectrum condition differ from their peers…
Descriptors: Preschool Children, Autism Spectrum Disorders, Mathematics Skills, Number Concepts
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Copur-Gencturk, Yasemin – International Journal of Science and Mathematics Education, 2022
This article explores three attributes of teachers' understanding of fraction magnitude: the accuracy and reasonableness of teachers' estimations in response to fraction arithmetic tasks as well as the alignment of the estimation strategies they used with the concept of fraction magnitude. The data were collected from a national sample of…
Descriptors: Mathematics Teachers, Knowledge Level, Fractions, Mathematical Concepts
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Flores, Margaret; Morano, Stephanie; Meyer, Jill; Hinton, Vanessa – Journal of Education for Students Placed at Risk, 2022
It is critical that elementary students develop understanding of fractional numbers because understanding concepts such as fraction magnitude predict later mathematics success. Representing fractions in multiple ways assists students in developing a sense of fraction magnitude. A systematic approach to presenting multiple representations is the…
Descriptors: Elementary School Students, Elementary School Mathematics, Fractions, Mathematical Concepts
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Wang, Yunqi; Siegler, Robert S. – Developmental Psychology, 2023
We examined the development of numerical magnitude representations of fractions and decimals from fourth to 12th grade. In Experiment 1, we assessed the rational number magnitude knowledge of 200 Chinese fourth, fifth, sixth, eighth, and 12th graders (92 girls and 108 boys) by presenting fraction and decimal magnitude comparison tasks as well as…
Descriptors: Elementary School Students, Secondary School Students, Grade 4, Grade 5
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Emma Fisher; Minyi Shih Dennis – Journal of Emotional and Behavioral Disorders, 2024
The purpose of this study was to examine the effects of a number line intervention with supported self-explanation on student understanding of fraction magnitude and quality of explanation. Participants were three U.S. middle school students with significant behavior problems. Participants were given eight lessons containing explicit instruction…
Descriptors: Mathematical Concepts, Concept Formation, Fractions, Behavior Problems
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Resnick, Ilyse; Newcombe, Nora; Goldwater, Micah – Journal of Numerical Cognition, 2023
There is strong evidence from research conducted in the United States that fraction magnitude understanding supports mathematics achievement. Unfortunately, there has been little research that examines if this relation is present across educational contexts with different approaches to teaching fractions. The current study compared fourth and…
Descriptors: Elementary School Students, Grade 4, Grade 6, Mathematics Skills
Elizabeth Cutter-Lin – ProQuest LLC, 2023
This study investigated how three fifth-grade students' understanding of fraction and decimal magnitude evolved over the course of a five-week teaching experiment. Students participated in teaching and learning sessions focused on developing concepts of fraction and decimal magnitude. The following questions guided this study: (1) How do fifth…
Descriptors: Mathematics Instruction, Teaching Methods, Fractions, Learning Processes
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Viegut, Alexandria A.; Matthews, Percival G. – Developmental Psychology, 2023
Understanding fraction magnitudes is foundational for later math achievement. To represent a fraction x/y, children are often taught to use "partitioning": Break the whole into y parts and shade in x parts. Past research has shown that partitioning on number lines supports children's fraction magnitude knowledge more than partitioning on…
Descriptors: Fractions, Mathematics Skills, Number Concepts, Skill Development
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Bingyi Liu; Keke Yu; John W. Schwieter; Peiling Sun; Ruiming Wang – International Journal of Bilingual Education and Bilingualism, 2024
The relationship between language switching and task switching has been well studied in bilingualism literature. This study employs novel experiments involving magnitude-parity switching and transparency-orientation switching and compares the costs associated with these two types of task switching with language switching. Switching costs and the…
Descriptors: Correlation, Psycholinguistics, Code Switching (Language), Bilingualism
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Crook, Kayla C.; Ringdahl, Joel E.; Cooper, Rosie N.; Quinland, Kadijah; Mangum, Dan R.; Zabala, Karla – Journal of Positive Behavior Interventions, 2023
The Caught Being Good Game (CBGG) is an evidence-based practice used in classrooms to reduce disruptive classroom behavior. This approach to classwide intervention has been implemented and its effectiveness demonstrated across grade levels and types of disruptive behavior. Teachers report that the CBGG is an easy classroom management strategy to…
Descriptors: Game Based Learning, Student Behavior, Intervention, Positive Reinforcement
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Lauren K. Schiller; Roberto A. Abreu-Mendoza; Miriam Rosenberg-Lee – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2024
Decimal numbers are generally assumed to be a straightforward extension of the base-ten system for whole numbers given their shared place value structure. However, in decimal notation, unlike whole numbers, the same magnitude can be expressed in multiple ways (e.g., 0.8, 0.80, 0.800, etc.). Here, we used a number line task with carefully selected…
Descriptors: Arithmetic, Computation, Numbers, Bias
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Soto, Alexis; Schoenlein, Melissa A.; Schloss, Karen B. – Cognitive Research: Principles and Implications, 2023
In visual communication, people glean insights about patterns of data by observing visual representations of datasets. Colormap data visualizations ("colormaps") show patterns in datasets by mapping variations in color to variations in magnitude. When people interpret colormaps, they have expectations about how colors map to magnitude,…
Descriptors: Concept Mapping, Visualization, Data Interpretation, Expectation
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Lourenco, Stella F.; Aulet, Lauren S. – Developmental Science, 2019
There is general agreement that humans represent numerical, spatial, and temporal magnitudes from early in development. However, there is disagreement about whether different magnitudes converge within a general magnitude system and whether this system supports behavioral demonstrations of cross-magnitude interactions at different developmental…
Descriptors: Developmental Stages, Infants, Preschool Children, Age Differences
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Ayieko, Rachel Angela; Moreano, Giovanna; Harter, Lauren – International Electronic Journal of Mathematics Education, 2022
Without a conceptual understanding of fraction magnitude, students have difficulties understanding more advanced mathematics in high school and beyond. The purpose of this study is to highlight 4th and 8th grade students' misconceptions in fraction magnitude using the Trends in International Mathematics and Science Study 2015 data. The study is…
Descriptors: Elementary School Students, Middle School Students, Mathematical Concepts, Fractions
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