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John R. Jungck – Bioscene: Journal of College Biology Teaching, 2023
Why should our life science colleagues adopt, adapt, and implement fractal thinking into their research and teaching paradigms? While numerous articles and books have been written about the utility, power, and insight that can be gained by using fractal analysis of data and developing fractal models, other than just appreciating the beauty of…
Descriptors: Geometric Concepts, Biological Sciences, Science Instruction, Measurement
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Sebastian Tempelmann; Jakub Sowula; Trix Cacchione – International Journal of Science Education, 2025
Research reveals that teachers regularly refer to intuitive construals (IC) in formal science education. Only a few studies, however, have investigated why teachers refer to them. Alarmingly, these studies suggest didactic consideration is not the main reason for this. Instead, teachers introduce IC unintentionally or due to a lack of expertise. A…
Descriptors: Science Education, Preservice Teachers, Elementary School Teachers, Knowledge Level
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Atina Putri; Fahma Waluya Rosmansyah; Chessa Nur Triejunita; Yuda Sukmana; Nyilo Purnami; Sakina Sakina; Yuni Sari Amalia; Yusep Rosmansyah – Smart Learning Environments, 2025
The increasing popularity of mobile devices as alternative tools for learning has led to the adoption of virtual laboratory simulation (VLab) to enhance practical learning experiences. This paper introduces an interactive mobile learning application designed to facilitate medical students in learning ear anatomy using a three-dimensional model.…
Descriptors: Science Laboratories, Anatomy, Science Education, Computer Simulation
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Evi Aprianti; Ari Sunandar; Anandita Eka Setiadi – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
Understanding the photosynthesis concepts is challenging due to its abstract nature, often leading to student misconceptions. This study aims to identify and analyze misconceptions among science and social studies students using the image analysis method. A total of 78 students (32 science, 46 social studies) participated, selected through a…
Descriptors: Scientific Concepts, Misconceptions, Science Instruction, Grade 12
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ScottP. Buzzolani; Matthew J. Mistretta; Aleksandra E. Bugajczyk; Arun J. Sam; Samantha R. Elezi; Daniel L. Silverio – Journal of Chemical Education, 2025
The ability to extract structural information from a drawing of a molecule is key to being successful in organic chemistry. One source of difficulty for novices in interpreting structures is that hydrogens bound to carbon are represented implicitly in the often-used line-angle structures. Other representations that explicitly show hydrogens, such…
Descriptors: Undergraduate Students, Science Instruction, Chemistry, Organic Chemistry
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Min Wu; Peiyao Tian; Daner Sun; Dan Feng; Ma Luo – International Journal of Science and Mathematics Education, 2025
This study aimed to develop a comprehensive diagnostic tool for assessing upper-secondary school students' understanding of isomers, expanding upon existing two- and three-tier conceptual diagnostic methods. By incorporating 'Confidence Rating Factor' tiers within the answer and reason sections, a four-tier test was designed and developed. This…
Descriptors: Secondary School Science, High School Students, Scientific Concepts, Science Tests
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Jürgen Russ; Niels Hammer – Anatomical Sciences Education, 2025
This study describes the process of developing a high-impact, low-cost, and low-maintenance air ventilation system for anatomy facilities. It employed the strategic application of Value Engineering (VE), assuring that the air ventilation system meets contemporary threshold limit values (TLVs) for formaldehyde in the working zone of dissection…
Descriptors: Engineering, Anatomy, Science Laboratories, Laboratory Procedures
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Anneli Bergnell; Lisbeth Åberg-Bengtsson – Scandinavian Journal of Educational Research, 2025
This article is based on multimodal perspectives and contributes to research on how children deal with a multimodal illustration of scientific concepts used in emergent science (i.e., early years science) education. It presents a study of a group of 14 preschoolers observed when dealing with the concept of stability, as illustrated in a…
Descriptors: Preschool Children, Early Childhood Education, Science Education, Learning Modalities
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Rizcallah, Joseph A. – Physics Education, 2021
We reexamine the approximate formula for the path difference in the double-slit interference experiment, establish its limits of applicability from a geometric perspective and discuss its validity for the two-source interference of acoustic and surface waves.
Descriptors: Geometry, Physics, Acoustics, Scientific Concepts
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Astrid Berg; Magnus Hultén – Chemistry Education Research and Practice, 2024
The importance of introducing students to mechanistic reasoning (MR) early in their schooling is emphasised in research. The goal of this case study was to contribute with knowledge on how early primary students' (9-10 year-olds) MR in chemistry is expressed and developed in a classroom practice framed by model-based inquiry. The study focuses on…
Descriptors: Elementary School Students, Abstract Reasoning, Chemistry, Scientific Concepts
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Christopher Wheatley; James Wells; John Stewart – Physical Review Physics Education Research, 2024
The Brief Electricity and Magnetism Assessment (BEMA) is a multiple-choice instrument commonly used to measure introductory undergraduate students' conceptual understanding of electricity and magnetism. This study used a network analysis technique called modified module analysis-partial (MMA-P) to identify clusters of correlated responses, also…
Descriptors: Multiple Choice Tests, Energy, Magnets, Undergraduate Students
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Kamali Sripathi; Aidan Hoskinson – CBE - Life Sciences Education, 2024
Genetic variation is historically challenging for undergraduate students to master, potentially due to its grounding in both evolution and genetics. Traditionally, student expertise in genetic variation has been evaluated using Key Concepts. However, Cognitive Construals may add to a more nuanced picture of students' developing expertise. Here, we…
Descriptors: Genetics, Undergraduate Students, Science Instruction, Evolution
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Vaunam P. Venkadasalam; Nicole E. Larsen; Patricia A. Ganea – Developmental Psychology, 2024
Evaluating evidence and restructuring beliefs based on anomalous evidence are fundamental aspects of scientific reasoning. These skills can be challenging for both children and adults, especially in domains where they possess inaccurate prior beliefs that can interfere with the acquisition of correct scientific information (e.g., heavier objects…
Descriptors: Foreign Countries, Young Children, Concept Formation, Cognitive Development
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Helen Georgiou – Teaching Science, 2024
Thermal cameras have shown to have utility in secondary school classrooms and undergraduate courses. In this paper, the author argues for their potential in the primary school classroom and presents a range of activities that can be undertaken with thermal cameras (or supplied images). With limited access in mind, the activities in this paper have…
Descriptors: Science Instruction, Heat, Photography, Science Activities
Nicholas Griffin; Marshall Ritchie; Tyler Lynn; Kate Dear; Tyler Christian John Deutsch; Leigha Dillard; Kenneth Overway; Barnabas Otoo – Journal of Chemical Education, 2024
Owing to the critical role of stereochemistry in biotechnology, medicine, and industry, it must be well represented in undergraduate lab curricula. To achieve these stereochemical laboratory requirements without sacrificing existing lab techniques, we modified two standard laboratory experiments to include chiral GC analysis as follows. (1) The…
Descriptors: College Science, Undergraduate Students, Chemistry, Laboratory Procedures
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