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Hartman, JudithAnn R.; Hart, Sarah; Nelson, Eric Alan; Kirschner, Paul A. – International Electronic Journal of Mathematics Education, 2023
To learn mathematics, historically students had no choice but to memorize fundamental facts and apply memorized algorithms. Since 1995 in the US, all states have adopted standards to govern K-12 mathematics instruction, and in most, standards have de-emphasized memorization and emphasized reasoning based on concepts. This change assumed the brain…
Descriptors: Mathematics Instruction, Teaching Methods, Standards, Kindergarten
Trakulphadetkrai, Natthapoj Vincent; Courtney, Louise; Clenton, Jon; Treffers-Daller, Jeanine; Tsakalaki, Anna – International Journal of Bilingual Education and Bilingualism, 2020
An increasing number of high-stakes mathematics standardised tests around the world place an emphasis on using mathematical word problems to assess students' mathematical understanding. Not only do these assessments require children to think mathematically, but making sense of these tests' mathematical word problems also brings children's language…
Descriptors: English (Second Language), Language Skills, Reading Comprehension, Short Term Memory
Cook, Sara Cothren; Collins, Lauren W.; Morin, Lisa L.; Riccomini, Paul J. – Learning Disability Quarterly, 2020
The purpose of this review is to determine the evidence base classification of schema-based instruction (SBI) as an intervention to improve word problem-solving outcomes in mathematics for students with learning or mathematics disabilities in Grades K-12. Using the Council for Exceptional Children's quality indicators (QIs) and standards, we…
Descriptors: Mathematics Instruction, Teaching Methods, Schemata (Cognition), Word Problems (Mathematics)
Chen, Ouhao; Kalyuga, Slava; Sweller, John – Journal of Educational Psychology, 2015
The worked example effect indicates that examples providing full guidance on how to solve a problem result in better test performance than a problem-solving condition with no guidance. The generation effect occurs when learners generating responses demonstrate better test performance than learners in a presentation condition that provides an…
Descriptors: Problem Solving, Geometry, Mathematics Instruction, Prior Learning
Teaching Mathematical Problem-Solving with the Brain in Mind: How Can Opening a Closed Problem Help?
Ambrus, András – Center for Educational Policy Studies Journal, 2014
In the international literature, increasing numbers of articles and books are published about teaching and learning, with the brain in mind. For a long time, I have been sceptical about this question. However, seeing many unresolved issues in the teaching and learning of mathematics, I slowly started to study the relevant literature and have…
Descriptors: Mathematics Instruction, Teaching Methods, Brain, Problem Solving
Bailey, Drew H.; Littlefield, Andrew; Geary, David C. – Journal of Experimental Child Psychology, 2012
The ability to retrieve basic arithmetic facts from long-term memory contributes to individual and perhaps sex differences in mathematics achievement. The current study tracked the codevelopment of preference for using retrieval over other strategies to solve single-digit addition problems, independent of accuracy, and skilled use of retrieval…
Descriptors: Reaction Time, Grades (Scholastic), Mathematics Achievement, Short Term Memory
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
Stamovlasis, Dimitrios; Tsaparlis, Georgios – Science Education, 2012
In this study, we test an information-processing model (IPM) of problem solving in science education, namely the working memory overload model, by applying catastrophe theory. Changes in students' achievement were modeled as discontinuities within a cusp catastrophe model, where working memory capacity was implemented as asymmetry and the degree…
Descriptors: Predictor Variables, High School Students, Logical Thinking, Science Education
Berends, Inez E.; van Lieshout, Ernest C. D. M. – Learning and Instruction, 2009
Arithmetic word problems are often presented accompanied by illustrations. The present study examined how different types of illustrations influence the speed and accuracy of performance of both good (n = 67) and poor arithmeticians (n = 63). Twenty-four arithmetic word problems were presented with four types of illustrations with increasing…
Descriptors: Short Term Memory, Word Problems (Mathematics), Arithmetic, Problem Solving
Reiter, Astrid; Tucha, Oliver; Lange, Klaus W. – Dyslexia, 2005
There is little data available concerning the executive functions of children with dyslexia. The small number of existing studies in this field focus on single aspects of these functions such as working memory. The aim of the present study was therefore to assess a variety of aspects of executive functioning in children with dyslexia. Forty-two…
Descriptors: Dyslexia, Inhibition, Problem Solving, Concept Formation
Winn, William; Berninger, Virginia; Richards, Todd; Aylward, Elizabeth; Stock, Pat; Lee, Yen-Ling; Lovitt, Dan – Journal of Educational Computing Research, 2006
Two groups of twelve dyslexic children and twelve good readers attended a two-week class during the summer following their enrollment in grades 4-6. The topic was the marine environment and focused on the adventures of an orca whale that had lost its family and needed the children's help. The children attended class for three hours each day, 45…
Descriptors: Learning Theories, Learning Activities, Class Activities, Marine Biology

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