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Alexandria A. Viegut; Ana C. Stephens; Percival G. Matthews – Grantee Submission, 2024
Researchers from multiple disciplines have found that fractions and algebra knowledge are linked. One major strand of research has identified children's "units coordination" structures as crucial for success with fractions and algebra via multiplicative reasoning, whereas a second strand of research points to "magnitude…
Descriptors: Fractions, Algebra, Mathematics Instruction, Grade 8
Pooja G. Sidney; Julie F. Shirah; Lauren Zahrn; Clarissa A. Thompson – Grantee Submission, 2022
In mathematics, learners often spontaneously draw on prior knowledge when learning new ideas. In this study, we examined whether the specific diagrams used to represent more familiar (i.e., whole number division) and less familiar ideas (i.e., fraction division) shape successful transfer. Undergraduates (N = 177) were randomly assigned to…
Descriptors: Mathematics Education, Prior Learning, Transfer of Training, Visual Aids
Taylor Lesner; Ben Clarke; Derek Kosty; Nancy Nelson; Leanne Ketterlin-Geller; Keith Smolkowski – Grantee Submission, 2023
This study explored whether initial skill moderated outcomes of Promoting Algebra Readiness, a Tier 2 sixth grade mathematics intervention targeting conceptual and procedural knowledge of fractions. The study analyzed data from a quasi-experimental pilot study in which at-risk students (n = 198) were assigned to the treatment or control condition…
Descriptors: Mathematics Skills, Mathematics Instruction, Grade 6, Fractions
Fitzsimmons, Charles J.; Thompson, Clarissa A.; Sidney, Pooja G. – Grantee Submission, 2020
Understanding fraction magnitudes is especially important in daily life, but fraction reasoning is quite difficult. To accurately reason about fraction magnitudes, adults need to monitor what they know and what they do not know. However, little is known about which cues adults use to monitor fraction performance. Across two studies, we examined…
Descriptors: Fractions, Cues, Metacognition, Familiarity
Clarissa A. Thompson; Pooja G. Sidney; Charles J. Fitzsimmons; Marta Mielicki; Lauren Schiller; Daniel A. Scheibe; John E. Opfer; Robert S. Siegler – Grantee Submission, 2022
In the target article, Xing and colleagues (2021) claimed that 6- to 8-year-olds who spontaneously referenced the midpoint of 0-100 number lines made more accurate magnitude estimates and scored higher on a standardized math achievement test than other children. Unlike previous studies, however, the authors found no relation between accuracy on…
Descriptors: Mathematics Skills, Young Children, Number Concepts, Accuracy
Siegler, Robert S.; Oppenzato, Colleen O. – Grantee Submission, 2021
Understanding how environments influence learning requires attending not only to what is present but also to what is absent. In the context of mathematics learning, this means attending not only to problems that children encounter frequently in textbooks but also to ones that appear rarely. We present research in this article showing that students…
Descriptors: Textbooks, Mathematical Applications, Textbook Content, Arithmetic
Jing Tian; David W. Braithwaite; Robert S. Siegler – Grantee Submission, 2020
Three rational number notations--fractions, decimals, and percentages--have existed in their modern forms for over 300 years, suggesting that each notation serves a distinct function. However, it is unclear what these functions are and how people choose which notation to use in a given situation. In the present article, we propose quantification…
Descriptors: Number Concepts, Preferences, Fractions, Arithmetic
Alexandria A. Viegut; Percival G. Matthews – Grantee Submission, 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…
Descriptors: Fractions, Mathematics Skills, Number Concepts, Skill Development
Siegler, Robert S.; Im, Soo-hyun; Braithwaite, David W. – Grantee Submission, 2020
Although almost everyone agrees that the environment shapes children's learning, surprisingly few studies assess in detail the specific environments that shape children's learning of specific content. The present article briefly reviews examples of how such environmental assessments have improved understanding of child development in diverse…
Descriptors: Child Development, Mathematics Education, Textbook Bias, Fractions
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
Mielicki, Marta K.; Fitzsimmons, Charles J.; Woodbury, Lauren H.; Marshal, Hannah; Zhang, Dake; Rivera, Ferdinand D.; Thompson, Clarissa A. – Grantee Submission, 2021
Prior work exploring preschool-aged children's reasoning with repeating patterns has shown that patterning ability is an important predictor of math achievement; however, there is limited research exploring older children's growing pattern task performance. The current study tested whether presentation format impacts performance on growing pattern…
Descriptors: Elementary School Students, Mathematics Skills, Number Concepts, Word Problems (Mathematics)
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Nancy C. Jordan; Nancy Dyson; Taylor-Paige Guba; Megan Botello; Heather Suchanec-Cooper; Henry May – Grantee Submission, 2024
A solid understanding of fractions is the cornerstone for acquiring proficiency with rational numbers and paves the way for learning advanced mathematical concepts, such as algebra. Fraction difficulties limit not only students' educational and vocational opportunities but also their ability to solve everyday problems. Students who exit 6th grade…
Descriptors: Fractions, Mathematics Instruction, Grade 6, Intervention
Fitzsimmons, Charles J.; Thompson, Clarissa A.; Sidney, Pooja G. – Grantee Submission, 2020
Understanding fraction magnitudes is important for achievement and in daily life. However, adults' fraction reasoning sometimes appears to reflect whole number bias and other times reflects accurate reasoning. In the current experiments, we examined how contextual factors and individual differences in executive functioning (Experiment 1),…
Descriptors: Fractions, Adults, Mathematical Logic, Knowledge Level
Sidney, Pooja; Thompson, Clarissa G.; Opfer, John E. – Grantee Submission, 2019
Children's understanding of fractions, including their symbols, concepts, and arithmetic procedures, is an important facet of both developmental research on mathematics cognition and mathematics education. Research on infants', children's, and adults' fraction and ratio reasoning allows us to test a range of proposals about the development of…
Descriptors: Mathematics Instruction, Mathematical Concepts, Concept Formation, Fractions
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Lynn S. Fuchs; Amelia S. Malone; Kristopher J. Preacher; Eunsoo Cho; Douglas Fuchs; Paul Changas – Grantee Submission, 2022
This study's 1st purpose was to investigate effects of a 4th- and 5th-grade "next-generation" fraction intervention, which included 6 enhancements over a previously validated fraction intervention, designed to address Career- and College-Readiness standards. The next-generation intervention is referred to as "Super Solvers."…
Descriptors: Elementary School Students, Elementary School Mathematics, Fractions, Intervention
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