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Ottenhof, Koen; Westbroek, Hanna; van Muijlwijk-Koezen, Jacqueline; Meeter, Martijn; Janssen, Fred – International Journal of Science Education, 2022
Promoting problem-solving in students is an important aim of secondary science education. There is a mismatch, however, between the complex, ill-structured nature of realistic scientific problems, versus the well-structured problems students are generally confronted with. The current study investigates a teaching-learning strategy that resolves…
Descriptors: Ecology, Thinking Skills, Problem Solving, Secondary School Science
Hickendorff, Marian – Journal of Numerical Cognition, 2022
Central elements of adaptive expertise in arithmetic problem solving are flexibility, using multiple strategies, and adaptivity, selecting the optimal strategy. Research shows that the strategies children actually use do not fully reflect the strategies they know: there is hidden potential. In the current study a sample of 147 third graders from…
Descriptors: Arithmetic, Mathematics Instruction, Learning Strategies, Grade 3
Baars, Martine; Leopold, Claudia; Paas, Fred – Journal of Educational Psychology, 2018
The ability to learn in a self-regulated way is important for adolescents' academic achievements. Monitoring one's own learning is a prerequisite skill for successful self-regulated learning. However, accurate monitoring has been found to be difficult for adolescents, especially for learning problem-solving tasks such as can be found in math and…
Descriptors: Problem Solving, Secondary School Students, Learning Strategies, Biology
Pals, Frits F. B.; Tolboom, Jos L. J.; Suhre, Cor J. M.; van Geert, Paul L. C. – International Journal of Science Education, 2018
How can science teachers support students in developing an appropriate declarative knowledge base for solving problems? This article focuses on the question whether the development of students' memory of scientific propositions is better served by writing propositions down on paper or by making drawings of propositions either by silent or…
Descriptors: Memorization, Learning Strategies, Science Education, Problem Solving
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
Hallinger, Philip; Lu, Jiafang – Educational Management Administration & Leadership, 2013
The past two decades have witnessed increasing global acceptance of the important role that capable leadership plays in education reform and school improvement. Consequently, policymakers internationally have actively sought means of strengthening capacity for school-level leadership, with a particular focus on the design of more effective…
Descriptors: Foreign Countries, Educational Improvement, Instructional Leadership, Administrator Education
van Loon-Hillen, Nelleke; van Gog, Tamara; Brand-Gruwel, Saskia – Interactive Learning Environments, 2012
A large body of research has shown that for novice learners, instruction that relies more heavily on worked examples than on problem solving, is more effective for learning as shown by higher test performance. Moreover, this beneficial effect is often obtained with less acquisition time and lower cognitive load during acquisition and test phase.…
Descriptors: Mathematics Curriculum, Quasiexperimental Design, Learning Strategies, Problem Solving
Hickendorff, Marian; van Putten, Cornelis M.; Verhelst, Norman D.; Heiser, Willem J. – Journal of Educational Psychology, 2010
Individual differences in strategy use (choice and accuracy) were analyzed. A sample of 362 Grade 6 students solved complex division problems under 2 different conditions. In the choice condition students were allowed to use either a mental or a written strategy. In the subsequent no-choice condition, they were required to use a written strategy.…
Descriptors: Individual Differences, Grade 6, Item Response Theory, Computation
Hickendorff, Marian; Heiser, Willem J.; van Putten, Cornelis M.; Verhelst, Norman D. – Psychometrika, 2009
In the Netherlands, national assessments at the end of primary school (Grade 6) show a decline of achievement on problems of complex or written arithmetic over the last two decades. The present study aims at contributing to an explanation of the large achievement decrease on complex division, by investigating the strategies students used in…
Descriptors: Foreign Countries, Grade 6, Arithmetic, National Competency Tests
Terwel, Jan; van Oers, Bert; van Dijk, Ivanka; van den Eeden, Pieter – Educational Research and Evaluation, 2009
With regard to transfer, is it better to provide pupils with ready-made representations or is it more effective to scaffold pupils' thinking in the process of generating their own representations with the help of peers and under the guidance of a teacher in a process of guided co-construction? The sample comprises 10 classes and 239 Grade 5…
Descriptors: Control Groups, Mathematics Education, Graphs, Grade 5
van Putten, Cornelis M.; van den Brom-Snijders, Petra A.; Beishuizen, Meindert – Journal for Research in Mathematics Education, 2005
Students' strategies for solving long division problems under a realistic mathematics approach (RME) at Dutch primary schools were categorized in two ways: (a) according to the level of how students created multiples of the divisor (chunking) to be subtracted from the dividend; and (b) according to their use, or nonuse, of schematic notation.…
Descriptors: Foreign Countries, Mathematics Instruction, Problem Solving, Teaching Methods

Meijer, Joost; Riemersma, Fre – Instructional Science, 1986
Presents thinking-aloud protocols from secondary pupils solving arithmetic story and geometrical problems and analyzes their protocols by using interpretation models founded on a general problem-solving model. A word problem solving simulation is also used to further explicate processes pupils use to solve mathematical tasks. (Author/MBR)
Descriptors: Algorithms, Computer Simulation, Educational Theories, Foreign Countries
Savelsbergh, Elwin R.; Ferguson-Hessler, Monica G. M.; de Jong, Ton – 1997
This study of physics problem-solving identifies reasoning mechanisms that enable the problem-solver to achieve the transformation to a physics structure of the problem situation. Elaboration is explored as a mechanism in fulfilling this transformation by providing beginning problem-solvers with elaborations that they failed to infer. A card…
Descriptors: Computer Uses in Education, Course Content, Curriculum Development, Educational Change

Elshout, Jan J.; Veenman, Marcel V. J. – Journal of Educational Research, 1992
The relationship between intellectual ability, working method, and learning was investigated with simulations in both structured and unstructured learning environments. High- and low-intelligence college students' thinking-aloud protocols were analyzed on quality of working method. Results indicated that both intellectual ability and working…
Descriptors: Cognitive Ability, Cognitive Style, College Students, Computer Simulation
Davidson, Neil, Ed. – 1990
Small-group cooperative learning provides an alternative to both traditional whole-class expository instruction and individual instruction systems. The procedures described in this volume are realistic, practical strategies for using small groups in mathematics teaching and learning with methods applicable to all age levels, curriculum levels, and…
Descriptors: Algebra, Calculus, Classroom Techniques, College Mathematics
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