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Showing 1 to 15 of 53 results Save | Export
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Jacobson, Erik; Liu, Jinqing; Bharaj, Pavneet Kaur; Savich, Theodore – North American Chapter of the International Group for the Psychology of Mathematics Education, 2021
There have been many efforts to measure pedagogical content knowledge with multiple-choice survey instruments, but little is known about how different types of items contribute. In this study, we examined interviews with 9 Grade 4 teachers to develop a deeper understanding of how teachers select pedagogical representations in the context of a…
Descriptors: Pedagogical Content Knowledge, Elementary School Mathematics, Elementary School Teachers, Grade 4
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Norton, Anderson; Ulrich, Catherine; Kerrigan, Sarah – North American Chapter of the International Group for the Psychology of Mathematics Education, 2020
We introduce a methodology for diagramming the ways students use sequences of mental actions to solve mathematical tasks. We studied 12 pre-service teachers as they solved a set of fractions tasks, ranked by cognitive demand. We present the unit transformation graphs for one of those pre-service teachers, to illustrate how she experienced and met…
Descriptors: Mathematics Education, Problem Solving, Preservice Teachers, Preservice Teacher Education
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DeWolf, Melissa; Son, Ji Y.; Bassok, Miriam; Holyoak, Keith J. – Cognitive Science, 2017
Why might it be (at least sometimes) beneficial for adults to process fractions componentially? Recent research has shown that college-educated adults can capitalize on the bipartite structure of the fraction notation, performing more successfully with fractions than with decimals in relational tasks, notably analogical reasoning. This study…
Descriptors: Priming, Multiplication, Number Concepts, Fractions
Ngu, Bing – Mathematics Education Research Group of Australasia, 2014
An analysis of one-step equations from a cognitive load theory perspective uncovers variation within one-step equations. The complexity of one-step equations arises from the element interactivity across the operational and relational lines. The higher the number of operational and relational lines, the greater the complexity of the equations.…
Descriptors: Algebra, Equations (Mathematics), Cognitive Processes, Difficulty Level
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Manches, Andrew; O'Malley, Claire – Cognition and Instruction, 2016
This article focuses on how the representational properties of manipulatives affect the strategies children employ in problem solving. Two studies examined the effect of physical materials on 4-7-year-old children's problem solving strategies in a numerical (i.e., additive composition) task. The first study showed how children not only identified…
Descriptors: Manipulative Materials, Object Manipulation, Young Children, Problem Solving
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Zetriuslita; Wahyudin; Jarnawi – International Education Studies, 2017
This research aims to describe and analyze result of applying Problem-Based Learning and Cognitive Conflict Strategy (PBLCCS) in increasing students' Mathematical Critical Thinking (MCT) ability and Mathematical Curiosity Attitude (MCA). Adopting a quasi-experimental method with pretest-posttest control group design and using mixed method with…
Descriptors: Mathematical Logic, Critical Thinking, Personality Traits, Problem Based Learning
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Rhodes, Katherine T.; Branum-Martin, Lee; Washington, Julie A.; Fuchs, Lynn S. – Journal of Educational Psychology, 2017
Using multitrait, multimethod data, and confirmatory factor analysis, the current study examined the effects of arithmetic item formatting and the possibility that across formats, abilities other than arithmetic may contribute to children's answers. Measurement hypotheses were guided by several leading theories of arithmetic cognition. With a…
Descriptors: Arithmetic, Mathematics Tests, Test Format, Psychometrics
Ghazali, Munirah; Alias, Rohana; Ariffin, Noor Asrul Anuar; Ayub, Ayminsyadora – Journal of Science and Mathematics Education in Southeast Asia, 2010
This paper reports on a study to examine mental computation strategies used by Year 1, Year 2, and Year 3 students to solve addition and subtraction problems. The participants in this study were twenty five 7 to 9 year-old students identified as excellent, good and satisfactory in their mathematics performance from a school in Penang, Malaysia.…
Descriptors: Mental Computation, Foreign Countries, Number Concepts, Subtraction
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Heine, Angela; Thaler, Verena; Tamm, Sascha; Hawelka, Stefan; Schneider, Michael; Torbeyns, Joke; De Smedt, Bert; Verschaffel, Lieven; Stern, Elsbeth; Jacobs, Arthur M. – Infant and Child Development, 2010
To date, a number of studies have demonstrated the existence of mismatches between children's "implicit" and "explicit" knowledge at certain points in development that become manifest by their gestures and gaze orientation in different problem solving contexts. Stimulated by this research, we used eye movement measurement to…
Descriptors: Age, Eye Movements, Achievement, Human Body
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Luwel, Koen; Verschaffel, Lieven – European Journal of Psychology of Education, 2008
Groups of mathematically strong and weak second-, fourth- and sixth-graders were individually confronted with numerosities smaller and larger than 100 embedded in one-, two- or three-dimensional realistic contexts. While one third of these contexts were totally unstructured (e.g., an irregular piece of land jumbled up with 72 cars), another third…
Descriptors: Elementary School Students, Problem Solving, Computation, Number Concepts
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Baron, Jonathan; And Others – Developmental Psychology, 1975
When comparing rows of dots in length or number, some children used number strategies and some length strategies. After training to correct missed items, errors were made on previously correct items. These findings are interpreted with reference to the distinction between having a dimensional strategy and attaching it to appropriate situations.…
Descriptors: Cognitive Processes, Error Patterns, Number Concepts, Preschool Children
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Zalewski, Donald L. – Arithmetic Teacher, 1974
Descriptors: Addition, Cognitive Processes, Critical Thinking, Elementary School Mathematics
Kieren, Thomas E.; And Others – 1995
Team research is important in studying cognition as enactive. This paper contains four different pieces of research directed toward the evidences and artifacts of two students in Canada engaging in a sustained mathematical activity. These four portraits of mathematical cognition in action consider the conversation in which the activity occurs; the…
Descriptors: Algebra, Cognitive Processes, College Students, Educational Research
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Feinstein, Irwin K. – School Science and Mathematics, 1979
Numerous mathematical examples are presented which illustrate and raise questions about students' tendencies to overgeneralize. (BB)
Descriptors: Cognitive Processes, Concept Formation, Discovery Learning, Generalization
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O'Brien, Thomas C.; Richard, June V. – Arithmetic Teacher, 1971
Descriptors: Cognitive Measurement, Cognitive Processes, Elementary School Mathematics, Evaluation Methods
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