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Ayesha Farheen; Hang T. Nguyen; Isaiah Nelsen; Scott E. Lewis – Journal of Chemical Education, 2024
Studies investigating chemistry students' understanding of intermolecular forces have listed alternative conceptions; however, there is a call to investigate why students might have these alternative conceptions. This study describes how second semester general chemistry students predict the location of dipole-dipole forces between two molecules…
Descriptors: Chemistry, Student Attitudes, Scientific Concepts, Science Education
Emma Teresa Booth; Virginia J. Flood; Benedikt W. Harrer – Physical Review Physics Education Research, 2025
Embodied forms of representation like gesture have been shown to play an important role in how learners conceptualize phenomena in physics; however, we know little about how students use gesture to capture the idea of "instantaneity." Drawing on multimodal microanalysis of interaction, we examine how undergraduate physics students use…
Descriptors: Nonverbal Communication, Cooperative Learning, Problem Solving, Physics
Vetti Giri – Research in Science Education, 2025
Science education literature states that fostering students' and teachers' knowledge of NOS has shifted from being a desirable goal to an essential one. This article focuses on the development of NOS conceptions among MA Education students. To develop those conceptions, the researcher designed various learning activities in the context of…
Descriptors: Science Education, Scientific Principles, Genetics, Group Discussion
Manz, Eve; Georgen, Chris – Science Education, 2023
Both professional and classroom-based scientific communities develop and test explanatory models of the natural world. For students to take up models as tools for sensemaking, practice must be agentive (where students use and revise models "for" specific purposes) and conceptually productive (where students make progress on their ideas).…
Descriptors: Models, Grade 5, Science Education, Scientific Concepts
Ronald L. Reyes – Journal of Chemical Education, 2023
Chemical education practices in teaching and instruction have seen significant progress in recent decades. However, despite the advances in chemical education, challenges in providing connections and synchronicity between conceptual understanding and student appreciation remain at the forefront of the global drive for sustainability in science…
Descriptors: Chemistry, Science Education, Scientific Concepts, Concept Formation
Taksina Sreelohor; Sarawut Jakpeng; Sumalee Chaijaroen – Journal of Education and Learning, 2025
This study aims to develop and validate a Constructivist Learning Environment Model to address secondary students' misconceptions in learning Science. Employing a Design and Development approach (Richey & Klein, 2007), the research is conducted in two phases. Phase 1 focuses on model design, drawing from an extensive literature review to…
Descriptors: Constructivism (Learning), Science Education, Scientific Concepts, Misconceptions
Monday Moju; Lezly Taylor; Blessing Iweuno – Discover Education, 2025
The societal and industrial relevance of chemistry has established its status as a compulsory subject in numerous national curricula. However, previous research highlights significant challenges faced by students in learning chemistry, largely attributed to its abstract nature and the multiple ways chemical concepts are represented. These…
Descriptors: Chemistry, Science Education, Barriers, Scientific Concepts
Glykeria Fragkiadaki; Eirini-Maria Frangedaki; Iro Zachariadi; Vasilia Christidou – Research in Science Education, 2025
A growing body of empirical studies in the field of early childhood science education suggests play as a dynamic means to engage young children with the natural world and create the conditions for children's learning and development in science. Although our understanding of play in science as an activity deepens, we still do not know much about…
Descriptors: Early Childhood Education, Science Education, Play, Toys
Sebastian Björnhammer; Iann Lundegård; Jakob Gyllenpalm – Cultural Studies of Science Education, 2024
In science education, students need to work with laboratory elements that create conditions for them to learn to do science and experience the value of making meaning in this process. However, students rarely get to carry out investigations that resemble actual scientific practices. More often, they are encouraged to follow an already given…
Descriptors: Science Education, Scientific Concepts, Active Learning, Inquiry
Mark A. J. Parker; Holly Hedgeland; Nicholas St. J. Braithwaite; Sally E. Jordan – European Journal of Science and Mathematics Education, 2024
The study outlines the early-stage development of a free-response General Relativity Concept Inventory (GRCI), an educational instrument designed to test for conceptual understanding of General Relativity. Data were collected for the study by having 26 participants from General Relativity courses work through the questions on the GRCI. Interviews…
Descriptors: Scientific Concepts, Physics, Science Tests, Thinking Skills
Benjie Wang; Wei Han; Yingjie Zhang; Qian Wang; Dan Li; Ziling Tang; Qingdian Kong – Journal of Baltic Science Education, 2024
A central objective of science education is to foster a profound comprehension of fundamental scientific principles among students. Research has shown that a highly integrated knowledge structure is a key factor in achieving a deep understanding. This research has developed a friction force conceptual framework to model students' different…
Descriptors: Foreign Countries, Science Education, Scientific Concepts, Physics
Pavel Doulík; Jirí Škoda; Martin Bílek; Zuzana Procházková – Journal of Baltic Science Education, 2024
Contemporary secondary science education is characterised by a greater inclination towards the constructivist paradigm of education and the development of inquiry-oriented teaching. The basic principle of this paradigm is the dynamic modification of preconceptions towards the desired level given by the school curriculum. This places particular…
Descriptors: Secondary School Students, Early Adolescents, Scientific Concepts, Concept Formation
Katie Gormley; Sally Birdsall; Bev France – Journal of Biological Education, 2024
The importance of genetic diversity, especially within small populations of endangered species, is becoming increasingly apparent. Genetic engineering techniques that could potentially enhance diversity are now being developed. However, the use of such techniques would require social licence and yet within the general population there is limited…
Descriptors: Science Education, Biology, Genetics, Animals
Caryn Babaian; Sudhir Kumar – American Biology Teacher, 2024
When students think of evolution, they might imagine T. rex, or perhaps an abiotic scene of sizzling electrical storms and harsh reducing atmospheres, an Earth that looks like a lunar landscape. Natural selection automatically elicits responses that include "survival of the fittest," and "descent with modification," and with…
Descriptors: Evolution, Science Education, Cancer, Teaching Methods
Ylva Hamnell-Pamment – International Journal of Science and Mathematics Education, 2024
Many science students struggle with using scientific language and making sense of scientific phenomena. Thus, there is an increased interest in science education research and public policy with regard to understanding and promoting scientific language use and sensemaking in science classrooms. However, there is a lack of comparative studies on how…
Descriptors: Science Education, Language Usage, Science Achievement, Concept Mapping

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