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Dauer, Joseph T.; Bergan-Roller, Heather E.; King, Gretchen P.; Kjose, McKenzie; Galt, Nicholas J.; Helikar, Tomáš – International Journal of STEM Education, 2019
Background: Computational modeling is an increasingly common practice for disciplinary experts and therefore necessitates integration into science curricula. Computational models afford an opportunity for students to investigate the dynamics of biological systems, but there is significant gap in our knowledge of how these activities impact student…
Descriptors: Computation, Schemata (Cognition), Genetics, Introductory Courses
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O'Rear, Connor D.; McNeil, Nicole M. – Developmental Science, 2019
How does improving children's ability to label set sizes without counting affect the development of understanding of the cardinality principle? It may accelerate development by facilitating subsequent alignment and comparison of the cardinal label for a given set and the last word counted when counting that set (Mix et al., 2012). Alternatively,…
Descriptors: Geometric Concepts, Number Concepts, Computation, Preschool Children
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Peters-Burton, Erin E.; Parrish, Jennifer C.; Mulvey, Bridget K. – Science & Education, 2019
An understanding of how science is enacted and how scientific knowledge is generated, or the nature of science (NOS), is a major goal of science education. NOS views have almost exclusively been assessed using the Views of Nature of Science (VNOS) suite of instruments, which consists of open-ended questions. The purpose of this study was to…
Descriptors: Science Education, Scientific Literacy, Scoring, Accuracy
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Banaruee, Hassan; Khoshsima, Hooshang; Zare-Behtash, Esmail; Yarahmadzehi, Nahid – Cogent Education, 2019
Describing the processes of metaphor comprehension has been a hot topic of discussion among researchers throughout the past four decades. One of the major challenges has been to find a mechanism that can describe the processes involved in the comprehension of various kinds of metaphors. This article suggests that different types of metaphors could…
Descriptors: Figurative Language, Reading Comprehension, Concept Formation, Abstract Reasoning
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Abell, Timothy N.; Bretz, Stacey Lowery – Journal of Chemical Education, 2019
Learning thermodynamics requires understanding abstract topics such as entropy and spontaneity. Students tend to rely on metaphors and everyday meanings to reason about these topics. This study investigates how students explain dissolution and precipitation using the concepts of entropy and spontaneity. Students from general chemistry, physical…
Descriptors: Thermodynamics, Science Instruction, Scientific Concepts, Chemistry
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Lee, Jin Woo; Ostrowski, Anastasia; Daly, Shanna R.; Huang-Saad, Aileen; Seifert, Colleen M. – European Journal of Engineering Education, 2019
With increasing demand for improved medical equipment and healthcare, next-generation biomedical engineers need strong design skills. Equipping biomedical engineering students with tools for idea generation and development can increase student design success. Design Heuristics are an ideation tool developed through empirical studies of product…
Descriptors: Concept Formation, Biomedicine, Engineering Education, Design
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Kohan, Walter Omar; Costa Carvalho, Magda – Studies in Philosophy and Education, 2019
In the world of Philosophy for Children (P4C), the word "method" is found frequently in its literature and in its practitioner's handbooks. This paper focuses on the idea of community of philosophical inquiry (CPI) as P4C's methodological framework for educational purposes, and evaluates that framework and those purposes in light of the…
Descriptors: Educational Philosophy, Guidelines, Teaching Methods, Philosophy
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Katzin, Naama; Salti, Moti; Henik, Avishai – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
At the early stages of concept acquisition, physical properties are inseparable of the concepts they form. With development, the concept seems to depart from the physical entities from which it emerged and seems to exist beyond its physical attributes. Numerosity is an abstract concept; however, physical properties such as diameter, area, and…
Descriptors: Numbers, Holistic Approach, Concept Formation, Geometric Concepts
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de Andrade, Vanessa; Freire, Sofia; Baptista, Mónica – Research in Science Education, 2019
This article describes a system of analysis aimed at characterizing students' scientific explanations. Science education literature and reform documents have been highlighting the importance of scientific explanations for students' conceptual understanding and for their understanding of the nature of scientific knowledge. Nevertheless, and despite…
Descriptors: Science Education, Scientific Concepts, Knowledge Level, Student Attitudes
Mewborne, Michael; Mitchell, Jerry T. – Geography Teacher, 2019
Games have been used as instructional tools throughout history. Educational experiences are more effective when learners are active participants, and when teachers carefully choose fun games with appropriate game mechanics and clear curricular connections, students can engage in rigorous mental processes. At the same time, students may learn a…
Descriptors: Educational Games, Geography Instruction, Teaching Methods, Concept Formation
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Lockwood, Elise; Purdy, Branwen – Journal for Research in Mathematics Education, 2019
The multiplication principle (MP) is a fundamental aspect of combinatorial enumeration, serving as an effective tool for solving counting problems and underlying many key combinatorial formulas. In this study, we used guided reinvention to investigate 2 undergraduate students' reasoning about the MP, and we sought to answer the following research…
Descriptors: Undergraduate Students, Multiplication, Mathematical Concepts, Mathematical Logic
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Lenfestey, Mark – Physics Teacher, 2019
Students often find the study of electrostatics to be abstract, heavily mathematical, and non-intuitive. This paper describes an inquiry-based approach to teaching electrostatics in an introductory calculus-based physics class that emphasizes the primacy of student conceptual understanding.
Descriptors: Science Instruction, Inquiry, Teaching Methods, Calculus
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Simon, Martin A. – Research in Mathematics Education, 2019
Promoting an understanding of multiplication of fractions has proved difficult for mathematics educators. I discuss a research study aimed at developing a concept of multiplication that supports both multiplication of whole numbers and multiplication of fractions. The study demonstrates how domain-specific theories grounded in two major…
Descriptors: Multiplication, Fractions, Mathematics Instruction, Mathematical Concepts
Gette, Cody Ray – ProQuest LLC, 2019
Physics education research over the past few decades has made significant advances toward improving instructional practices and developing effective instructional materials for physics classrooms. In some contexts, however, after multiple instructional refinements difficulties can remain persistent. Recent findings in PER suggest that many of…
Descriptors: Physics, Logical Thinking, Concept Formation, Science Instruction
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Mary Beth Patry; Eva Marie Horn – Review Journal of Autism and Developmental Disorders, 2019
The purpose of this article was to synthesize the available research regarding the development of complex schemata in individuals with autism across its entire developmental process beginning with prototype formation, followed by categorization, and finally the development of schema. Specific research questions addressed the quality of research…
Descriptors: Schemata (Cognition), Concept Formation, Autism Spectrum Disorders, Cognitive Ability
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