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David W. Braithwaite; Anna N. Rafferty – Cognitive Science, 2025
Math problem solving frequently involves choices among alternative strategies. Strategy choices, and effects of problem features on strategy choices, both vary among individuals. We propose that individual differences in strategy choices can be well characterized in terms of parametric variation in three types of influence: global bias, relevant…
Descriptors: Individual Differences, Fractions, Arithmetic, Problem Solving
Elena M. Silla; Christina Areizaga Barbieri; Kristie J. Newton – Journal of Educational Psychology, 2024
Procedural flexibility is an important skill for algebra. Although prior work has focused on measuring students' procedural flexibility using arithmetic problems, word problems may also capture students' flexibility because of their open-ended nature. To date, no published study has examined the use of word problems as another measure of…
Descriptors: Middle School Students, Grade 6, Grade 7, Grade 8
Jaehong Shin; Soo Jin Lee – Investigations in Mathematics Learning, 2024
In the present study, we illuminate students' multiplicative reasoning in the context of their units-coordinating activity. Of particular interest is to investigate students' use of three levels of units as given material for problem-solving activity, which we regard as supporting a more advanced level of multiplicative reasoning. Among 13 middle…
Descriptors: Mathematics Instruction, Multiplication, Middle School Students, Mathematical Logic
Brandon McMillan – Investigations in Mathematics Learning, 2025
Mathematical coherence is a goal within the Common Core State Standards for Mathematics. One aspect of this coherence is how student mathematical thinking is developed across concepts. Unfortunately, mathematics is often taught as isolated ideas across grades. The multiplicative field is an area of study that needs to be examined as a space to…
Descriptors: Mathematics Skills, Thinking Skills, Mathematical Logic, Multiplication
Polat, Hatice; Özkaya, Merve – Journal of Pedagogical Research, 2023
This study aims to examine the effect of problem posing-based active learning activities on students' problem-posing skills and problem-solving achievement. To this aim, an experimental design with pre-test post-test control group was employed. The participants consisted of two groups of sixth graders, one experimental group (N=23) and one control…
Descriptors: Problem Solving, Active Learning, Fractions, Mathematics Education
Colleen O'Donnell Oppenzato – ProQuest LLC, 2024
Many U.S. students possess only a weak knowledge of fraction arithmetic. I hypothesize that textbooks are a critical reason for students' poor performance on fraction arithmetic. This is not because of what textbooks contain but rather because of what they lack. Distributions of fraction arithmetic problems in textbooks are imbalanced, with…
Descriptors: Fractions, Arithmetic, Mathematics Instruction, Comparative Analysis
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
Laurie Ann Gentry-Goodale – ProQuest LLC, 2024
There is a strong need for fifth-grade students to become proficient in mathematical problem-solving using fractional computations because it will have a lasting impact on student achievement. Traditionally, mathematics is taught inside a brick-and-mortar classroom, grounded in rote memorization of facts, rules, and formulas. In recent years, more…
Descriptors: Grade 5, Problem Solving, Fractions, Computation
Antje Boomgaarden; Katharina Loibl; Timo Leuders – Interactive Learning Environments, 2023
PS-I learning approaches with an initial problem-solving phase (PS) followed by an instruction phase (I) can be optimised by providing adaptive (individualised) instruction that builds on students' problem-solving products. A computer-based implementation of both phases offers the possibility of adaptivity at the transition from the…
Descriptors: Computer Assisted Instruction, Technology Uses in Education, Fractions, Educational Environment
Martinez, Silvia; Blanco, Vanessa – Education Sciences, 2021
The aim of this work is to study the knowledge that 11 to 12-year-old pupils have about the different meanings of fractions. For this purpose, an investigation about the ability that 11 to 12-year-old pupils have with fraction problems through problem posing is performed. In particular, we analyze if they pose different types of problems depending…
Descriptors: Problem Solving, Fractions, Mathematics Instruction, Elementary School Students
Castillo, Jorge Rincón; Hurtado, Orlando García; Parra, Edinson Caicedo – Journal of Language and Linguistic Studies, 2022
This article aims to show some activities based on non-routine problems with different levels of difficulty and from different classes that are integrated into the curriculum, additionally two spaces were opened for students to interact with recreational mathematics activities with the purpose of providing opportunities to all students access the…
Descriptors: Learning Activities, Mathematics Activities, Mathematical Concepts, Concept Formation
Dionne Cross Francis, Editor; Meredith Park Rogers, Editor; Andrew M. Gatza, Editor; Kathryn E. Engebretson, Editor – National Council of Teachers of Mathematics, 2024
Students in grades 3-5 are undergoing significant cognitive growth and beginning to understand what fairness and equity mean in a diverse and interconnected world. "Modern Math Tasks to Provoke Transformational Thinking" presents carefully crafted tasks that nurture multi-disciplinary literacies, including ecological and cultural…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Grade 3, Grade 4
Barbieri, Christina Areizaga; Young, Laura K.; Newton, Kristie J.; Booth, Julie L. – Child Development, 2021
Fraction knowledge and algebraic skill are closely linked. Algebra is a gatekeeper for advanced courses (Booth & Newton, 2012; Brown & Quinn, 2007). This study uses the person-centered approach of latent profile analysis to examine individual differences in middle schoolers' (N = 350) algebra performance at the end of the year (EOY). The…
Descriptors: Prediction, Middle School Students, Algebra, Mathematics Instruction
George, Lois; Voutsina, Chronoula – Canadian Journal of Science, Mathematics and Technology Education, 2021
This paper presents findings from a study that examined the strategies that children, who had only been taught the part-whole fraction sub-construct at school, used for finding the fraction associated with solving varied partitive quotient problems. A qualitative, microgenetic research design was used involving nine year 5 (aged 9-10) children…
Descriptors: Mathematics Instruction, Problem Solving, Fractions, Elementary School Students
Editorial Projects in Education, 2025
This Spotlight explores effective strategies for improving math instruction and enhancing student achievement in K-8 classrooms. From making math more relevant and engaging and mastering word problem-solving to deepening conceptual understanding of fractions and nurturing students' ability to tackle challenges, these articles offer valuable…
Descriptors: Mathematics Instruction, Instructional Improvement, Elementary School Mathematics, Middle School Mathematics

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