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Melody García-Moya; Rocío Blanco – Education and Training in Autism and Developmental Disabilities, 2024
Mathematical problem-solving is a core content of primary school education. Therefore, it is necessary to provide all students with a meaningful way of acquisition of problem-solving skills. The objective of this research was to verify the effectiveness of a problem-solving routine based on the Pólya's model and the use of cognitive strategies…
Descriptors: Arithmetic, Problem Solving, Elementary School Students, Autism Spectrum Disorders
Stankov, Lazar; Lee, Jihyun – Journal of Intelligence, 2020
This paper examined the effects of training in creative problem-solving on intelligence. We revisited Stankov's report on the outcomes of an experiment carried out by R. Kvashchev in former Yugoslavia that reported an IQ increase of seven points, on average, across 28 tests of intelligence. We argue that previous analyses were based on a…
Descriptors: Intelligence Quotient, Comparative Analysis, Creativity, Problem Solving
Teaching Mathematics Based on Integrating Reading Strategies and Working Memory in Elementary School
Farideh Hamidi; Shokoofeh Soleymani; Sara Dazy; Maryam Meshkat – Athens Journal of Education, 2024
This study strived to determine the effectiveness of integrative teaching of reading strategies and working memory on basic math and problem-solving skills. It is a quasi-experimental pretest-posttest study carried out on 50 second-graders from Chahashk Shandiz village in the academic year of 2020-2021 who were randomly selected by cluster…
Descriptors: Mathematics Instruction, Reading Strategies, Grade 2, Elementary School Students
Sternberg, Robert J. – Education Sciences, 2021
This article introduces the concept of adaptive intelligence--the intelligence one needs to adapt to current problems and anticipate future problems of real-world environments--and discusses its implications for education. Adaptive intelligence involves not only promoting one's own ability to survive and thrive, but also that of others in one's…
Descriptors: Intelligence, Adjustment (to Environment), Creative Thinking, Logical Thinking
Finke, Sabrina; Kemény, Ferenc; Sommer, Markus; Krnjic, Vesna; Arendasy, Martin; Slany, Wolfgang; Landerl, Karin – Computer Science Education, 2022
Background: Key to optimizing Computational Thinking (CT) instruction is a precise understanding of the underlying cognitive skills. Román-González et al. (2017) reported unique contributions of spatial abilities and reasoning, whereas arithmetic was not significantly related to CT. Disentangling the influence of spatial and numerical skills on CT…
Descriptors: Spatial Ability, Cognitive Ability, Abstract Reasoning, Arithmetic
D' Souza, Dorothy A. C.; Clare, A. C. – Journal on School Educational Technology, 2018
Situated Learning takes place in the social and physical context within which it will be used. In this model, the pupil is "situated" in the learning experience and knowledge acquisition becomes a part of their learning activity. From their experiences pupils "construct" their own knowledge in various learning situations. The…
Descriptors: Secondary School Students, Problem Solving, Context Effect, Experiential Learning
Lynn S. Fuchs; Douglas Fuchs; Sonya K. Sterba; Marcia A. Barnes; Pamela M. Seethaler; Paul Changas – Grantee Submission, 2022
This study's purpose was to investigate effects of 3 intervention approaches for building working memory (WM) and improving word-problem solving (WPS). Children with mathematics difficulties (n = 240; 7.51 years [SD = 0.33]) were randomized to 4 conditions: a control group, general WM training with contiguous math practice, WPS intervention…
Descriptors: Problem Solving, Short Term Memory, Intervention, Mathematics Instruction
Bouck, Emily C.; Bassette, Laura; Shurr, Jordan; Park, Jiyoon; Kerr, Jackie; Whorley, Abbie – Journal of Special Education Technology, 2017
Fractions are an important mathematical concept; however, fractions are also a struggle for many students with disabilities. This study explored a new framework adapted from the evidence-based concrete-representational-abstract framework: the virtual-representational-abstract (VRA) framework. The VRA framework involves teaching students to solve…
Descriptors: Fractions, Disabilities, Teaching Methods, Mathematical Concepts
Satsangi, Rajiv; Hammer, Rachel; Bouck, Emily C. – Remedial and Special Education, 2020
As K-12 mathematics standards shift toward emphasizing both conceptual and procedural knowledge in secondary courses such as algebra and geometry, the struggles for students with disabilities become more pronounced. To address these challenges, research has commonly explored the use of technology to aid in the teaching of students with…
Descriptors: Video Technology, Geometry, Word Problems (Mathematics), Teaching Methods
Hofer, Sarah I.; Schumacher, Ralph; Rubin, Herbert; Stern, Elsbeth – Journal of Educational Psychology, 2018
Physics educators today face two major challenges: supporting the acquisition of a solid base of conceptual knowledge and reducing the persisting gender gap. In the present quasi-experimental study, we investigated the potential of physics instruction that is enriched with evidence-based cognitively activating methods, such as inventing with…
Descriptors: Physics, Science Instruction, Scientific Concepts, Teaching Methods
Veerbeek, Jochanan; Hessels, Marco G. P.; Vogelaar, Simone; Resing, Wilma C. M. – Journal of Cognitive Education and Psychology, 2017
Proponents of dynamic testing have advocated its use as a replacement or addition to conventional tests. This research aimed to investigate the effects of using versus not using a pretest on both the outcome on the posttest and the processes used in solving inductive reasoning tasks in dynamic testing using a graduated prompts training.…
Descriptors: Pretests Posttests, Investigations, Problem Solving, Alternative Assessment
Sung, Woonhee; Black, John B. – Journal of Research on Technology in Education, 2021
This study examined what factors might have a positive impact on students' learning outcomes in mathematical understanding and computational thinking skills. Specifically, whether the proposed instructional design combining computational perspectives and an embodied approach in mathematics learning improves (a) mathematics learning, (b)…
Descriptors: Instructional Design, Mathematics Instruction, Teaching Methods, Outcomes of Education
Adnyani, Luh Putu Widya; Kurniawan, Indra; Pinahayu, Ek Ajeng Rahmi – Journal of Research and Advances in Mathematics Education, 2018
The aim of this research is knowing whether research instrument is feasible or no to get data of research. The instrument of this research is logical mathematics quotient test with 25 problems in multiple choice and mathematics problem solving test with 4 questions in essay. Testing the appropriateness of instrument of logical mathematics…
Descriptors: Mathematics Instruction, High School Students, Teaching Methods, Problem Solving
Tan, Sema; Erdimez, Omer; Zimmerman, Robert – Acta Didactica Napocensia, 2017
Concept maps measured a student's understanding of the complexity of concepts, and interrelationships. Novak and Gowin (1984) claimed that the continuous use of concept maps increased the complexity and interconnectedness of students' understanding of relationships between concepts in a particular science domain. This study has two purposes; the…
Descriptors: Concept Mapping, Science Instruction, Scientific Concepts, Statistical Analysis
Gomez, Mertie M.; Herron, Julie – Journal of the International Association of Special Education, 2021
This archival data study examined the relations between cognitive abilities and math reasoning for Hispanic English learner (EL) students in grades 1 through 5 with an identified learning disability. The 295 student participants were referred for an initial psycho-educational Spanish or English evaluation due to academic concerns by their school…
Descriptors: Cognitive Ability, Mathematics Instruction, Problem Solving, Spanish Speaking
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