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Joseph Salve; Pranshi Upadhyay; K. K. Mashood; Sanjay Chandrasekharan – Science & Education, 2025
Science learning requires students to build new mental models of imperceptible mechanisms (photosynthesis, circadian rhythms, atmospheric pressure, etc.). Since mechanisms are structurally complex and dynamic, building such mental models requires mentally simulating novel structures, their state changes, and higher-order transformations…
Descriptors: Language Usage, Schemata (Cognition), Science Education, Science Instruction
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Valeria Edelsztein; Claudio Cormick – Science & Education, 2025
In this article, we tackle the phenomenon of what seems to be a misunderstanding between science education theory and philosophy of science--one which does not seem to have received any attention in the literature. While there seems to be a consensus within the realm of science education on limiting or altogether denying the explanatory role of…
Descriptors: Scientific Principles, Scientific Concepts, Science Education, Epistemology
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Antonio García-Carmona – Science & Education, 2025
For many years, hegemonic approaches to teaching the nature of science (NOS) have focused mainly on understanding some epistemic (i.e., rational, or cognitive) aspects involved in the construction of science. So, aspects of a non-epistemic (i.e., non-rational, contextual, or extra-scientific) nature have been practically neglected in these…
Descriptors: Science Instruction, Teaching Methods, Scientific Principles, Holistic Approach
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Paul G. Waddell; Michael R. Probert; Natalie T. Johnson – Journal of Chemical Education, 2024
A new teaching resource comprised of raw X-ray diffraction data sets from crystallography experiments has been compiled. The aim of this resource is to provide a tool with which to plug the teaching gap between crystals and chemical structures present at various levels of education, as well as providing examples for early stage researchers and…
Descriptors: Science Education, Science Instruction, Teaching Methods, Chemistry
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Isik Saliha Karal Eyüboglu; Fatma Ocak Sirtkaya – Pedagogies: An International Journal, 2025
Orientation is a component of pedagogical content knowledge and represents a general view of teaching and learning science. Science instructors hold orientations to teaching science teachers and orientation can be illustrated by an instructor's purposes and goals for instruction. Due to the central role of the instructors in preparing qualified…
Descriptors: Pedagogical Content Knowledge, Teacher Attitudes, College Faculty, Science Instruction
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Eleanor S. Armstrong – Cultural Studies of Science Education, 2025
In this paper I demonstrate how zines (pronounced 'zeen', a word that is a contraction of 'magazine') about space science can be theorised as a site of science education at the margins. Through exploring different zines and their potential to create counter-narratives I offer a series of objects that might reshape how we teach and learn about…
Descriptors: Periodicals, Astronomy, Space Exploration, Space Sciences
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Aloys Iyamuremye; Francois Niyongabo Niyonzima; Innocent Twagilimana – Cogent Education, 2024
Web-based discussion tools have emerged as valuable platforms in teaching and learning chemistry. Despite the increasing use of web-based discussion tools, their effectiveness in enhancing cognitive, social, and teaching aspects of organic chemistry remains underexplored. Therefore, this review aims to address the gap by synthesizing relevant…
Descriptors: Literature Reviews, Organic Chemistry, Science Education, Science Instruction
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Ricardo Marcos; André Gomes; Marta Santos; António Coelho – Anatomical Sciences Education, 2025
Histology is a preclinical subject transversal in medical, dental, and veterinary curricula. Classical teaching approaches in histology are often undermined by lower motivation and engagement of students, which may be addressed by innovative learning environments. Herein, we developed a serious game approach and compared it with a classical…
Descriptors: Veterinary Medical Education, Game Based Learning, Gamification, Learner Engagement
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William E. Lindsay; Valerie K. Otero – Science Education, 2025
This ethnographic cross-case study examines five teachers' year-long efforts to implement practice-based physics instruction within the unique organizational context of a no-excuses charter network. The teachers were attempting to adapt their didactic, rigid, and compliance-based instructional approach to include more opportunities for students to…
Descriptors: Charter Schools, Science Instruction, Teaching Methods, Physics
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James Deehan; Amy MacDonald; Christopher Morris – Studies in Science Education, 2024
Effective science education is crucial for developing a scientifically literate citizenry, and for many, foundational primary science education experiences play a significant role in defining their long-term science trajectories. However, primary science education has been limited by a dissonance between the poor science trajectories for…
Descriptors: Intervention, Science Education, Science Instruction, Instructional Effectiveness
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James B. McKinlay; Katherine Kearns – Biochemistry and Molecular Biology Education, 2025
In the classroom, metabolism is often approached and received as a mundane exercise in memorization. Teaching metabolism also faces the challenge of negative perceptions that can impede learning. We sought to improve the learning experience in an undergraduate lecture course on microbial metabolism by implementing an illustrated story that follows…
Descriptors: Undergraduate Study, Microbiology, Science Instruction, Science Education
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Jonathan McCausland; Scott McDonald – Journal of Research in Science Teaching, 2024
This is a study intended to address white supremacy in science education. To accomplish this, we describe how one White intern, Boaz, learned to teach science in anti-racist ways. By detailing how whiteness mattered in his learning to teach, we demonstrate that whiteness is potentially constant in White peoples' learning to teach science in…
Descriptors: Racism, Science Teachers, Science Education, Science Instruction
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Julian Shu Kai Goh; Ramya Chandrasekaran; Srinivasa Rao Sirasanagandla; Sanchalika Acharyya; Sreenivasulu Reddy Mogali – Anatomical Sciences Education, 2024
Plastination, a permanent preservation method for human tissues and organs, is increasingly being used in anatomy education. However, there is a paucity of systematic reviews and meta-analyses summarizing the educational efficacy of plastinated specimens. This meta-analysis compared the assessment scores of students exposed to plastinated…
Descriptors: Anatomy, Instructional Effectiveness, Preservation, Human Body
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Ying-Chih Chen; Michelle Jordan; Jongchan Park; Emily Starrett – Science Education, 2024
An essential aspect of scientific practice involves grappling with the generation of predictions, representations, interpretations, investigations, and communications related to scientific phenomena, all of which are inherently permeated with uncertainty. Transferring this practice from expert settings to the classroom is invaluable yet…
Descriptors: Science Instruction, Teaching Methods, Science Process Skills, Ambiguity (Context)
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Ampatzidis, Georgios; Ergazaki, Marida – Science & Education, 2023
Nature of science (NOS) is considered an important component of scientific literacy. Supporting students to develop a comprehensive NOS understanding is one of the most commonly described objectives within science education. Moreover, history of science can arguably provide a good context for NOS teaching and learning; it has been suggested that…
Descriptors: Scientific Principles, Science Instruction, Teaching Methods, History
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