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Showing 1 to 15 of 18 results Save | Export
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Matthias Grünke; Isa Braunwarth; Vincent Connelly; Anne Barwasser – Education and Treatment of Children, 2025
This single-case study assessed the effectiveness of a mnemonic pegword strategy designed to enhance the multiplication fact fluency of three 6th-grade students who demonstrated persistent learning difficulties in mathematics. A nonconcurrent multiple baseline across subjects design was utilized, incorporating 3-5 baseline sessions followed by…
Descriptors: Mathematics Skills, Multiplication, Learning Problems, Mathematics Instruction
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Jérôme Proulx – International Journal of Science and Mathematics Education, 2024
In their recent article on teachers' proportional reasoning, Copur-Gencturk et al. (2022) draw attention to a type of strategy that they call "relative", lodged right between additive and multiplicative thinking. This strategy raised interest in our research team, as it aligned well and helped give stronger meaning to some strategies…
Descriptors: Logical Thinking, Mathematics Skills, Addition, Multiplication
Pellerzi, Laura Ann Weinberg – ProQuest LLC, 2023
The application of decomposition strategies (i.e., associative or distributive strategies) in two-digit multiplication problem solving supports algebraic thinking skills essential for later complex mathematical skills like solving algebra problems. Use of such strategies is also associated with improved accuracy and speed in mathematical problem…
Descriptors: Mathematics Instruction, Multiplication, Problem Solving, Learning Strategies
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Drew Polly; Luke T. Reinke; Madelyn W. Colonnese; Adrianne Blackwelder – Journal of Educational Research, 2025
This study examined a 6-week intervention in which fourth grade students either played fluency games or used pictorial flashcards to develop fluency with their basic multiplication facts. Students who played fluency games showed more growth than the pictorial flashcards, but an analysis of variance showed that there was no statistically…
Descriptors: Intervention, Visual Aids, Educational Games, Multiplication
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Tzur, Ron; Johnson, Heather Lynn; Norton, Anderson; Davis, Alan; Wang, Xin; Ferrara, Michael; Harrington, Cody; Hodkowski, Nicola Mercedes – Cognition and Instruction, 2021
We examine a hypothesis implied by Steffe's constructivist model of children's numerical reasoning: a child's "spontaneous" additive strategy may relate to a foundational form of multiplicative reasoning, termed multiplicative double counting (mDC). To this end, we mix quantitative and qualitative analyses of 31 fourth graders' responses…
Descriptors: Constructivism (Learning), Mathematics Skills, Elementary School Students, Grade 4
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Incikabi, Lütfi; Ayanoglu, Perihan; Uysal, Ramazan – International Electronic Journal of Elementary Education, 2020
This study aimed to reveal the conceptual and operational conceptions of sixth-grade students in the process of division. The focus of the study included the strategies used in the division process, the students' understanding of the division algorithm, and their ability to interpret the remainder in a real-life context. Being qualitative in…
Descriptors: Foreign Countries, Middle School Students, Grade 6, Mathematics Skills
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Powell, Sarah; Ding, Yi; Wang, Qian; Craven, John; Chen, Eric – International Journal of Research in Education and Science, 2019
This study investigated whether strategy accuracy and flexibility on various types of complex multiplication problems could predict college GPA concurrently and longitudinally in 164 college engineering students. Additionally, it sought to answer whether low- and high-achieving students would show unique patterns of strategy flexibility, accuracy,…
Descriptors: College Students, College Mathematics, Learning Strategies, Mathematics Education
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Ulrich, Catherine – For the Learning of Mathematics, 2016
This is the second of a two-part article that presents a theory of unit construction and coordination that underlies radical constructivist empirical studies of student learning ranging from young students' counting strategies to high school students' algebraic reasoning. In Part I, I discussed the formation of arithmetical units and composite…
Descriptors: Young Children, High School Students, Arithmetic, Algebra
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Downton, Ann; Sullivan, Peter – Educational Studies in Mathematics, 2017
While the general planning advice offered to mathematics teachers seems to be to start with simple examples and build complexity progressively, the research reported in this article is a contribution to the body of literature that argues the reverse. That is, posing of appropriately complex tasks may actually prompt the use of more sophisticated…
Descriptors: Problem Solving, Mathematical Aptitude, Mathematics Skills, Difficulty Level
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Taillan, Julien; Dufau, Stéphane; Lemaire, Patrick – Mind, Brain, and Education, 2015
We used event-related potentials (ERPs) to determine the time course of mechanisms underlying strategy selection. Participants had to select the better strategy on multiplication problems (i.e., 51 × 27) to find approximate products. They could choose between rounding up and rounding down both operands to their nearest decades. Two types of…
Descriptors: Responses, Cognitive Processes, Cognitive Measurement, Time
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Zhang, Dake; Ding, Yi; Barrett, Dave E.; Xin, Yan Ping; Liu, Ru-de – European Journal of Psychology of Education, 2014
The present study investigated the differences of strategy use between low-, average-, and high-achieving students when solving different multiplication problems. Nineteen high-, 48 average-, and 17 low-achieving students participated in this study. All participants were asked to complete three different multiplication tests and to explain how…
Descriptors: Low Achievement, High Achievement, Mathematics Achievement, Multiplication
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Zhang, Dake; Xin, Yan Ping; Harris, Karleah; Ding, Yi – Learning Disability Quarterly, 2014
The purpose of the present study was to examine the effectiveness of a strategic training program for improving students' performance in solving multiplication problems. The participants were 3 third graders with math difficulties. In this teaching experiment, microgenetic analysis was used to analyze improvement in students' strategic development…
Descriptors: Multiplication, Learning Strategies, Mathematics Skills, Grade 3
Aming-Attai, Rachael – ProQuest LLC, 2012
Recent reform efforts in mathematics education call for the development of early algebraic reasoning, and for the provision of rich mathematical experiences for all students. In spite of such emphasis, many elementary school students, especially those with mathematical learning disabilities (MLD), often experience great difficulty in early algebra…
Descriptors: Learning Disabilities, Elementary School Mathematics, Elementary School Students, Grade 6
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Shanty, Nenden Octavarulia; Hartono, Yusuf; Putri, Ratu Ilma Indra; de Haan, Dede – Indonesian Mathematical Society Journal on Mathematics Education, 2011
This study aimed at investigating the progress of students' learning on multiplication fractions with natural numbers through the five activity levels based on Realistic Mathematics Education (RME) approach proposed by Streefland. Design research was chosen to achieve this research goal. In design research, the Hypothetical Learning Trajectory…
Descriptors: Foreign Countries, Grade 5, Elementary School Mathematics, Multiplication
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Hoffman, Bobby; Schraw, Gregory – Learning and Individual Differences, 2009
We investigated the influence of self-efficacy beliefs and working memory capacity on mathematical problem-solving performance, response time, and efficiency (i.e., the ratio of problems solved correctly to time). Students completed a letter-recoding task (Experiment 1) or an operation span task (Experiment 2), rated their self-efficacy for…
Descriptors: Reaction Time, Self Efficacy, Problem Solving, Short Term Memory
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