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Tamar Fuhrmann; Leah Rosenbaum; Aditi Wagh; Adelmo Eloy; Jacob Wolf; Paulo Blikstein; Michelle Wilkerson – Science Education, 2025
When learning about scientific phenomena, students are expected to "mechanistically" explain how underlying interactions produce the observable phenomenon and "conceptually" connect the observed phenomenon to canonical scientific knowledge. This paper investigates how the integration of the complementary processes of designing…
Descriptors: Mechanics (Physics), Thinking Skills, Scientific Concepts, Concept Formation
Odden, Tor Ole B. – Science Education, 2021
When learning science, students must often make sense of complex and counterintuitive ideas. However, this process of sensemaking is difficult, and consequently students risk emerging from science courses with highly fragmented understandings. In this study, I examine the ways in which students create conceptual connections to resolve such…
Descriptors: Concept Formation, Energy, Physics, Introductory Courses
Plummer, Julia D.; Palma, Christopher; Rubin, KeriAnn; Flarend, Alice; Ong, Yann Shiou; Ghent, Chrysta; Gleason, Timothy; McDonald, Scott; Botzer, Brandon; Furman, Tanya – Science Education, 2020
We previously proposed a hypothetical learning progression around the disciplinary core idea of the Solar System and its formation as a first step in a research program to begin to fill this gap and address questions of student learning in this domain. In this study, we evaluate the effectiveness of two dimensions within the learning progression,…
Descriptors: Astronomy, Grade 6, Science Instruction, Student Attitudes
Clark, Douglas B.; Menekse, Muhsin; Ozdemir, Gokhan; D'Angelo, Cynthis M.; Price Schleigh, Sharon – Science Education, 2014
Substantial variation has been observed across an international series of studies examining the consistency of students' explanations of force and the most common meanings of force apparent in those explanations. On the surface, the variations among studies might be attributed to differences at the national level, but the studies also demonstrate…
Descriptors: Foreign Countries, Physics, Scientific Concepts, Comparative Analysis
Chen, Ying-Chih; Hand, Brian; McDowell, Leah – Science Education, 2013
This quasi-experimental and pre/posttest study was designed to examine whether fourth-grade students who engaged in collaboratively writing letters to 11th-grade students performed better on tests of conceptual understanding of a unit on force and motion than students who did not. The participants included 835 fourth-grade students and 416…
Descriptors: Quasiexperimental Design, Pretests Posttests, Grade 4, Grade 11
Hutchison, Paul; Hammer, David – Science Education, 2010
Studies of learning in school settings indicate that many students frame activities in science classes as the production of answers for the teacher or test, rather than as making new sense of the natural world. A case study of an episode from a class taught by the first author demonstrates what productive and unproductive student framing can look…
Descriptors: Science Instruction, Epistemology, Science Activities, Case Studies
Lidar, Malena; Almqvist, Jonas; Ostman, Leif – Science Education, 2010
During the past few decades, researchers from a cognitive science tradition and a sociocultural perspective on learning have discussed how to understand students' conceptions of the earth. In this article, some of the questions discussed in this debate are elaborated in relation to meaning making in educational settings. The aim is to illustrate…
Descriptors: Sociocultural Patterns, Cognitive Psychology, Grade 5, Epistemology
Anderson, David; Nashon, Samson – Science Education, 2007
It is recognized widely that learning is a dynamic and idiosyncratic process of construction and reconstruction of concepts in response to new experiences. It is influenced by the learner's prior knowledge, motivation, and sociocultural context. This study investigated how year 11 and 12 physics students' metacognition influences the development…
Descriptors: Prior Learning, Physics, Figurative Language, Metacognition

Halloun, Ibrahim – Science Education, 1998
Presents the epistemology of scientific concepts from a schematic modeling perspective. Discusses students' initial cognitive states based on the level of commensurability between students' own concepts and their scientific counterparts. Contains 87 references. (DDR)
Descriptors: Cognitive Processes, Concept Formation, Elementary Secondary Education, Epistemology

Gil-Perez, Daniel; Carrascosa, Jaime – Science Education, 1990
Discussed is a constructivist model of science learning and its possible use in the treatment of science misconceptions. Science learning as conceptual and methodological change is described. (KR)
Descriptors: Cognitive Development, Cognitive Structures, Concept Formation, Learning Processes
Furtak, Erin Marie; Ruiz-Primo, Maria Araceli – Science Education, 2008
The National Research Council ([NRC], 2001) has stated that formative assessment is essential to fulfilling the mission of the National Science Education Standards (NRC, 1996). This paper explores the relative utility of four different types of formative assessment prompts in eliciting middle school students' ideas about sinking and floating.…
Descriptors: Writing Skills, Thinking Skills, Discussion (Teaching Technique), Writing (Composition)

Sneider, Cary I.; Ohadi, Mark M. – Science Education, 1998
Presents a study designed to test the effectiveness of a constructivist-historical teaching strategy in changing students' misconceptions about the earth's shape and gravity at the upper elementary and middle school levels. Contains 27 references. (DDR)
Descriptors: Concept Formation, Earth Science, Elementary Education, Gravity (Physics)

Galili, Igal; Kaplan, Dov – Science Education, 1996
Analyzed operational knowledge of the weight concept of high school students after two educational levels: introductory and advanced physics. Results showed that apparent and true weight concepts are poorly assimilated by most of the advanced placement students. Discusses origins of the shortcomings of the alternative knowledge about weight.…
Descriptors: Concept Formation, High School Students, Misconceptions, Physics

Odom, Arthur L.; Kelly, Paul V. – Science Education, 2001
Explores the effectiveness of concept mapping, the learning cycle, expository instruction, and a combination of concept mapping/learning cycle in promoting conceptual understanding of diffusion and osmosis. Concludes that the concept mapping/learning cycle and concept mapping treatment groups significantly outperformed the expository treatment…
Descriptors: Concept Formation, Concept Mapping, Diffusion (Physics), Learning Processes

Beeth, Michael E. – Science Education, 1998
Argues for an approach to conceptual-change instruction that places students' science conceptions and their ability to reflect on those conceptions at the center of science instruction. Focuses on the effect of using status concepts. Contains 24 references. (DDR)
Descriptors: Concept Formation, Constructivism (Learning), Elementary Education, General Science