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Jacob E. Hansen; Jonathan A. Chickering; Amy J. Sullivan; Zachary E. Stelter – Advances in Physiology Education, 2025
Models that illustrate renal fluid dynamics are scarce within the secondary and postsecondary landscape. This work summarizes the efforts to build a rudimentary model renal corpuscle (MRC) that can be employed in a problem-based learning exercise or demonstration to teach basic principles of renal physiology to secondary students or…
Descriptors: Models, Physiology, Science Instruction, Scientific Concepts
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Mahaveer Genwa; Jyoti Singh; Sunny Manohar; Chetna Angrish – Journal of Chemical Education, 2023
The analysis of functional groups in organic compounds and inorganic ions in salts is a laboratory experiment that forms an inevitable part of the undergraduate chemistry curriculum in the science field all over the world. With this experiment, the student learns the testing techniques for the chemicals and gets a true sense of the importance of…
Descriptors: Organic Chemistry, Science Instruction, Pollution, Laboratory Experiments
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Oh, Phil Seok; Ha, Heesoo; Yoo, Yeon Joon – Science Education, 2022
This study aimed to explore what kinds of epistemological messages were conveyed through teacher discourse in modeling-based and traditional elementary science classrooms and how teachers framed the two classrooms distinctively through these messages. Data came from two sixth-grade teachers' science classrooms--one characterized as a…
Descriptors: Elementary School Science, Epistemology, Models, Science Instruction
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Beil, Fabian; Thees, Michael; Kapp, Sebastian; Kuhn, Jochen – Physics Teacher, 2023
In introductory electric circuits in middle school, students often carry strongly held alternative conceptions. Common to many of these is an idea of electric current as some kind of substance that originates from the battery and moves toward electronic components. Learners often argue that current influences those one by one as they are…
Descriptors: Introductory Courses, Electronic Equipment, Middle School Students, Science Instruction
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Rafael Amador-Rodri´guez; Daniel Insuasty; Maximiliano Me´ndez-Lo´pez; Edgar Ma´rquez; Natalia Ospina-Quintero – Journal of Chemical Education, 2023
This research aimed to use students' modeling processes as a means of scientific inquiry. Students constructed models to explain the interactions between felodipine R and S and protein. The approach encouraged active student participation in molecular interaction modeling and offered students a "model-based teaching" experience for…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, Models
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Seyda Gul; Funda Yalinkilic – Education and Information Technologies, 2025
In recent years, 3D printing technology or 3D printing models have become a powerful educational tool used in many fields such as medicine, engineering and science. However, research on the integration of these technologies into formal educational environments and the researches examining their effect on students' learning biology is quite…
Descriptors: Science Education, Science Instruction, Teaching Methods, Biochemistry
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Boiangiu Razvan-Stefan; Popa Laura Nicoleta; Marius Miha?an – Biochemistry and Molecular Biology Education, 2025
A strong understanding of molecular structure is key for mastering structure-function concepts in life sciences and is based on the visualization of biomolecules. Therefore, various approaches to help students translate between the 2D space of a textbook figure to the 3D space of a molecule have been developed. Object-based learning is an approach…
Descriptors: Computer Peripherals, Printing, Molecular Structure, Scientific Concepts
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María Esther Téllez-Acosta; Andres Acher; Scott P. McDonald – Journal of Science Teacher Education, 2024
Learning to plan modeling-based investigations (MBIs) presents significant challenges for pre-service elementary teachers. Although they understand disciplinary core ideas and modeling practices, they address both as competing learning goals and, as novices, they have not experienced how to structure MBIs for their future students. In the context…
Descriptors: Preservice Teachers, Elementary School Teachers, Models, Investigations
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Yidnekachew Awraris Kebede; Firew Kebede Zema; Girma Moti Geletu; Samuel Assefa Zinabu – SAGE Open, 2025
The jigsaw model is a dynamic cooperative learning approach where students become experts on different segments of the material and teach their peers, thereby enhancing engagement accountability, team work, and ultimately improving academic achievement. This study investigated the effectiveness of a cooperative learning strategy on secondary…
Descriptors: Foreign Countries, Cooperative Learning, Science Achievement, Biology
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Resa M. Kelly; John H. Kim; Adrian Villalta-Cerdas; Sarah J. R. Hansen; Sevil Akaygun – Journal of Science Education and Technology, 2025
Atomic-level visualizations serve as pivotal instructional tools in chemistry education, providing insights into the particulate level of matter, a dimension fundamental, yet typically invisible, in the study of chemistry. This research investigates how students' engagement with these visualizations influences their conceptual understanding of…
Descriptors: Chemistry, Science Instruction, Video Technology, Comparative Analysis
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Silvia Wen-Yu Lee – Research in Science & Technological Education, 2024
Research purposes and design: This study aimed to compare the effects of different explicit approaches used in modeling-based instruction on students' understanding of scientific models and modeling (USMM). In Study 1, a self-study approach was compared to a preliminary explicit approach. In Study 2, preliminary explicit approach and embedded…
Descriptors: Teaching Methods, Science Instruction, Models, Epistemology
Jonathan Robert Bowers – ProQuest LLC, 2024
To make sense of our interconnected and algorithm driven world, students increasingly need proficiency with computational thinking (CT), systems thinking (ST), and computational modeling. One aspect of computational modeling that can support students with CT, ST, and modeling is testing and debugging. Testing and debugging enables students to…
Descriptors: Troubleshooting, Thinking Skills, Computation, Computer Science Education
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Daniel A. Mak; Sebastian Dunn; David Coombes; Carlo R. Carere; Jane R. Allison; Volker Nock; André O. Hudson; Renwick C. J. Dobson – Biochemistry and Molecular Biology Education, 2024
Enzymes are nature's catalysts, mediating chemical processes in living systems. The study of enzyme function and mechanism includes defining the maximum catalytic rate and affinity for substrate/s (among other factors), referred to as enzyme kinetics. Enzyme kinetics is a staple of biochemistry curricula and other disciplines, from molecular and…
Descriptors: Biochemistry, Kinetics, Science Instruction, Teaching Methods
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Amy J. Hopper; Angus M. Brown – Advances in Physiology Education, 2024
In this article we analyze the classic Hodgkin and Keynes 1955 paper describing investigations of the independence principle, with the expectation that there is much students and educators can learn from such exercises, most notably how the authors applied their diverse skill set to tackling the numerous obstacles that the study presented. The…
Descriptors: Science Education, Physiology, Scientific Principles, Scientific Concepts
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Winkelmann, Jan – Science & Education, 2023
Idealizations are omnipresent in science. However, to date, science education research has paid surprisingly little attention to the use of idealizations in fostering students' model competence and understanding of the nature of science (NOS). The starting point for the theoretical reflection in this paper is that insufficient consideration of…
Descriptors: Science Education, Scientific Concepts, Educational Research, Science Instruction
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