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Eaves, Joanne; Attridge, Nina; Gilmore, Camilla – Journal of Numerical Cognition, 2022
Individuals solve arithmetic problems in different ways and the strategies they choose are indicators of advanced competencies such as adaptivity and flexibility, and predict mathematical achievement. Understanding the factors that encourage or hinder the selection of different strategies is therefore important for helping individuals to succeed…
Descriptors: Arithmetic, Mathematics Skills, Problem Solving, Learning Strategies
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Chen, Ouhao; Paas, Fred; Sweller, John – Educational Psychology Review, 2021
Spaced and interleaved practices have been identified as effective learning strategies which sometimes are conflated as a single strategy and at other times treated as distinct. Learning sessions in which studying information or practicing problems are spaced in time with rest-from-deliberate-learning periods between sessions generally result in…
Descriptors: Cognitive Processes, Difficulty Level, Short Term Memory, Intervals
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Hord, Casey; DeJarnette, Anna F.; McMillan, Leah A.; Baldrick, Paige – Support for Learning, 2020
The authors of this study conducted an exploratory study of the teaching and learning processes of a tutor and a student with a mild intellectual disability (MID) while working on two-step equations. The researchers focused on situations in which the participant was likely to struggle with memory and processing as well as the challenges of the…
Descriptors: Mild Intellectual Disability, Equations (Mathematics), Mathematics Skills, Short Term Memory
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Ellis, Derek M.; Robison, Matthew K.; Brewer, Gene A. – Journal of Intelligence, 2021
Individuals encounter problems daily wherein varying numbers of constraints require delimitation of memory to target goal-satisfying information. Multiply-constrained problems, such as the compound remote associates, are commonly used to study this type of problem solving. Since their development, multiply-constrained problems have been…
Descriptors: Cognitive Ability, Problem Solving, Short Term Memory, Attention Control
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Fuchs, Lynn; Fuchs, Douglas; Seethaler, Pamela M.; Barnes, Marcia A. – ZDM: The International Journal on Mathematics Education, 2020
The focus of this article is the well documented association between low working memory capacity and difficulty with mathematical word-problem solving. We begin by describing a model that specifies how various cognitive resources, including working memory, contribute to individual differences in word-problem solving and by then summarizing…
Descriptors: Short Term Memory, Mathematics Instruction, Problem Solving, Word Problems (Mathematics)
Fuchs, Lynn; Fuchs, Douglas; Seethaler, Pamela M.; Barnes, Marcia A. – Grantee Submission, 2019
The focus of this article is the well documented association between low working memory capacity and difficulty with mathematical word-problem solving. We begin by describing a model that specifies how various cognitive resources, including working memory, contribute to individual differences in word-problem solving and by then summarizing…
Descriptors: Short Term Memory, Mathematics Instruction, Word Problems (Mathematics), Problem Solving
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Fyfe, Emily R.; DeCaro, Marci S.; Rittle-Johnson, Bethany – Instructional Science: An International Journal of the Learning Sciences, 2015
Feedback is generally considered a beneficial learning tool, and providing feedback is a recommended instructional practice. However, there are a variety of feedback types with little guidance on how to choose the most effective one. We examined individual differences in working memory capacity as a potential moderator of feedback type. Second-…
Descriptors: Short Term Memory, Feedback (Response), Grade 2, Grade 3
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Stevenson, Claire E. – International Journal of Artificial Intelligence in Education, 2017
This study contrasted the effects of tutoring, multiple try and no feedback on children's progression in analogy solving and examined individual differences herein. Feedback that includes additional hints or explanations leads to the greatest learning gains in adults. However, children process feedback differently from adults and effective…
Descriptors: Tutoring, Feedback (Response), Children, Short Term Memory
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Speiser, Robert; Schneps, Matthew H.; Heffner-Wong, Amanda; Miller, Jaimie L.; Sonnert, Gerhard – Journal of Mathematical Behavior, 2012
In school, at least in the US, we were taught to multiply by hand according to a standard algorithm. Most people find that algorithm difficult to use, and many children fail to learn it. We propose a new way to make sense of this difficulty: to treat explicit computation as perceptually supported physical and mental action. Based on recent work in…
Descriptors: Evidence, Mathematics, Urban Schools, Short Term Memory
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Swanson, H. Lee; Moran, Amber S.; Bocian, Kathleen; Lussier, Cathy; Zheng, Xinhua – Learning Disability Quarterly, 2013
This study investigated the role of generative strategies and working memory capacity on word problem solving accuracy in children with math difficulties (MD). Within classrooms, children in Grade 3 with MD ("n" = 69) were randomly assigned to one of three treatment conditions: paraphrase question propositions (Restate), paraphrase…
Descriptors: Word Problems (Mathematics), Learning Strategies, Comprehension, Short Term Memory
H. Lee Swanson; Catherine M. Lussier; Michael J. Orosco – Journal of Learning Disabilities, 2015
This study investigated the role of strategy instruction and working memory capacity (WMC) on word problem solving accuracy in children with (n = 100) and without (n = 92) math difficulties (MD). Within classrooms, children in Grades 2 and 3 were randomly assigned to one of four treatment conditions: verbal-only strategies (e.g., underlining…
Descriptors: Cognitive Style, Learning Strategies, Short Term Memory, Problem Solving
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H. Lee Swanson – Journal of Educational Psychology, 2014
Cognitive strategies are important tools for children with math difficulties (MD) in learning to solve word problems. The effectiveness of strategy training, however, depends on working memory capacity (WMC). Thus, children with MD but with relatively higher WMC are more likely to benefit from strategy training, whereas children with lower WMC may…
Descriptors: Teaching Methods, Cognitive Processes, Learning Problems, Mathematics Instruction
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Swanson, H. Lee; Orosco, Michael J.; Lussier, Cathy – Society for Research on Educational Effectiveness, 2013
Recent intervention studies directed to improve problem solving accuracy in children with math difficulties (MD) have found support for teaching cognitive strategies. This study addresses the question: What role does working memory capacity (WMC) play in strategy outcomes for children with MD? Four prediction models can be applied to strategy…
Descriptors: Grade 3, Elementary School Students, Mathematics Skills, Learning Problems
Swanson, H. Lee; Orosco, Michael J.; Lussier, Cathy M. – Exceptional Children, 2014
This study investigated the role of strategy instruction on solution accuracy in children with and without serious math difficulties (MD) in problem solving. Children's posttest solution accuracy was compared on standardized and experimental measures as a function of strategy conditions. Strategy conditions included curriculum materials that…
Descriptors: Mathematics Instruction, Teaching Methods, Problem Solving, Learning Problems
Swanson, H. Lee; Lussier, Catherine; Orosco, Michael – Society for Research on Educational Effectiveness, 2011
Although current categories of learning disabilities include as specific disabilities calculation and mathematical problem solving [see IDEA reauthorization, 2004, Sec. 300.8(c)(10)], the majority of research focuses on calculation disabilities. Previous studies have shown, however, that deficits in word problem solving difficulties are persistent…
Descriptors: Sentences, Intervention, Learning Disabilities, Problem Solving
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