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Showing 1 to 15 of 21 results Save | Export
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Fotou, Nikolaos; Abrahams, Ian – Research in Science & Technological Education, 2023
Background: The use of analogies as reasoning tools that play a key role in human cognition at all ages has been of interest to educators, scientists, and philosophers ever since Aristotle. Indeed, research has consistently found that analogies provided by teachers can, and do, play an important role in facilitating student understanding of…
Descriptors: Logical Thinking, Prediction, Abstract Reasoning, Novelty (Stimulus Dimension)
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Dodd, Rebecca V.; Rafi, Damir; Stackhouse, Ashlyn A.; Brown, Celia A.; Westacott, Rachel J.; Meeran, Karim; Hughes, Elizabeth; Wilkinson, Paul; Gurnell, Mark; Swales, Catherine; Sam, Amir H. – Advances in Health Sciences Education, 2023
Previous literature has explored unconscious racial biases in clinical education and medicine, finding that people with darker skin tones can be underrepresented in learning resources and managed differently in a clinical setting. This study aimed to examine whether patient skin colour can affect the diagnostic ability and confidence of medical…
Descriptors: Patients, Human Body, Racial Attitudes, Racism
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Dutta, Rubina; Mantri, Archana; Singh, Gurjinder – Smart Learning Environments, 2022
The education system evolves and transforms towards interactive and immersive learning tools in this digital age. Augmented reality has also evolved as a ubiquitous, robust, and effective technology for providing innovative educational tools. In engineering education, many abstract concepts require technological intervention for conceptual…
Descriptors: Usability, Computer Simulation, Engineering Education, Intervention
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Resnick, Ilyse; Rinne, Luke; Barbieri, Christina; Jordan, Nancy C. – Journal of Educational Psychology, 2019
Reasoning about numerical magnitudes is a key aspect of mathematics learning. Most research examining the relation of magnitude understanding to general mathematics achievement has focused on whole number and fraction magnitudes. The present longitudinal study (N = 435) used a 3-step latent class analysis to examine reasoning about magnitudes on a…
Descriptors: Elementary School Students, Grade 4, Abstract Reasoning, Arithmetic
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Resnick, Ilyse; Newcombe, Nora S.; Shipley, Thomas F. – Cognitive Science, 2017
Being able to estimate quantity is important in everyday life and for success in the STEM disciplines. However, people have difficulty reasoning about magnitudes outside of human perception (e.g., nanoseconds, geologic time). This study examines patterns of estimation errors across temporal and spatial magnitudes at large scales. We evaluated the…
Descriptors: STEM Education, Error Patterns, Accuracy, Abstract Reasoning
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Jessica E. Bartley; Michael C. Riedel; Taylor Salo; Emily R. Boeving; Katherine L. Bottenhorn; Elsa I. Bravo; Rosalie Odean; Alina Nazareth; Robert W. Laird; Matthew T. Sutherland; Shannon M. Pruden; Eric Brewe; Angela R. Laird – npj Science of Learning, 2019
Understanding how students learn is crucial for helping them succeed. We examined brain function in 107 undergraduate students during a task known to be challenging for many students--physics problem solving--to characterize the underlying neural mechanisms and determine how these support comprehension and proficiency. Further, we applied module…
Descriptors: Brain, Cognitive Processes, Science Process Skills, Abstract Reasoning
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He, Wei; Yang, Yingying; Gao, Dingguo – Journal of Cognition and Development, 2018
There have been mixed results in studies investigating proportional reasoning in young children. The current study aimed to examine whether providing visual scaling cues and structuring the reasoning process can improve proportional reasoning in 5- to 6-year-old children. In a series of computerized tasks, children compared the sweetness of 2…
Descriptors: Abstract Reasoning, Young Children, Task Analysis, Evaluative Thinking
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Kaufmann, Ilana; Hamza, Karim M.; Rundgren, Carl-Johan; Eriksson, Lars – International Journal of Science Education, 2017
This study explores first-year university students' reasoning as they learn to draw Lewis structures. We also present a theoretical account of the formal procedure commonly taught for drawing these structures. Students' discussions during problem-solving activities were video recorded and detailed analyses of the discussions were made through the…
Descriptors: College Freshmen, Abstract Reasoning, Learning Processes, Problem Solving
Foreman-Murray, Lindsay; Fuchs, Lynn S. – Journal of Learning Disabilities, 2019
Students' explanations of their mathematical thinking and conclusions have become a greater part of the assessment landscape in recent years. With a sample of 71 fourth-grade students at risk for mathematics learning disabilities, we investigated the relation between student accuracy in comparing the magnitude of fractions and the quality of…
Descriptors: Elementary School Students, Grade 4, Elementary School Mathematics, Mathematics Skills
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Belén C. Guerra-Carrillo; Silvia A. Bunge – npj Science of Learning, 2018
Reasoning, our ability to solve novel problems, has been shown to improve as a result of learning experiences. However, the underlying mechanisms of change in this high-level cognitive ability are unclear. We hypothesized that possible mechanisms include improvements in the encoding, maintenance, and/or integration of relations among mental…
Descriptors: Eye Movements, Abstract Reasoning, Thinking Skills, Skill Development
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Bragg, Leicha A.; Herbert, Sandra – Australian Primary Mathematics Classroom, 2017
Mathematical reasoning is one of the four proficiencies in the Australian Curriculum: Mathematics (AC:M) where it is described as: "[the] capacity for logical thought and actions, such as analysing, proving, evaluating, explaining, inferring, justifying and generalising" (Australian Curriculum, Assessment and Reporting Authority [ACARA],…
Descriptors: Foreign Countries, Mathematics Instruction, Mathematics Skills, Mathematical Logic
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Tolmie, Andrew K.; Ghazali, Zayba; Morris, Suzanne – British Journal of Educational Psychology, 2016
Background: Research has identified the core skills that predict success during primary school in reading and arithmetic, and this knowledge increasingly informs teaching. However, there has been no comparable work that pinpoints the core skills that underlie success in science. Aims and method: The present paper attempts to redress this by…
Descriptors: Children, Primary Education, Elementary School Science, Science Education
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Newman, Eryn J.; Garry, Maryanne; Unkelbach, Christian; Bernstein, Daniel M.; Lindsay, D. Stephen; Nash, Robert A. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2015
When people rapidly judge the truth of claims presented with or without related but nonprobative photos, the photos tend to inflate the subjective truth of those claims--a "truthiness" effect (Newman et al., 2012). For example, people more often judged the claim "Macadamia nuts are in the same evolutionary family as peaches" to…
Descriptors: Value Judgment, Accuracy, Cognitive Processes, Photography
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Meindertsma, Heidi B.; Dijk, Marijn W. G.; Steenbeek, Henderien W.; van Geert, Paul L. C. – Research in Science Education, 2014
In educational settings, continuous assessment of the child's level of understanding is necessary to effectively utilize the principles of scaffolding and to create contexts that can advance the scientific reasoning of the child. In this article, we argue that a child's performance is a dynamic notion that is created by all elements in…
Descriptors: Preschool Children, Science Process Skills, Scientific Attitudes, Abstract Reasoning
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Möhring, Wenke; Newcombe, Nora S.; Levine, Susan C.; Frick, Andrea – Journal of Cognition and Development, 2016
Proportional reasoning involves thinking about parts and wholes (i.e., about fractional quantities). Yet, research on proportional reasoning and fraction learning has proceeded separately. This study assessed proportional reasoning and formal fraction knowledge in 8- to 10-year-olds. Participants (N = 52) saw combinations of cherry juice and water…
Descriptors: Spatial Ability, Abstract Reasoning, Mathematics Skills, Fractions
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