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Charnel Malherbe-da Silva; Portia Kavai; Rian de Villiers – African Journal of Research in Mathematics, Science and Technology Education, 2023
This study explored the perceived benefits and challenges that Natural Sciences teachers experience when using blended teaching in Smart Schools. This qualitative research focused on public township schools with challenging socio-economic contexts in the Gauteng Province, South Africa. A non-probability purposive sampling method was followed. The…
Descriptors: Natural Sciences, Science Teachers, Teaching Experience, Blended Learning
Yuqing Fang; Peng Hou; Cuiyun Zeng; Changfeng Wan; Shuiliang Chen – Journal of Chemical Education, 2023
Integrating new synthetic methods and experimental techniques from the latest research reports into undergraduate laboratory experiments is of great significance, as it enables students to learn the cutting-edge technology of organic chemistry and cultivates their experimental skills and innovative thinking. In this study, an experiment on their…
Descriptors: Science Experiments, Science Laboratories, Undergraduate Study, Science Instruction
Angelica R. Cash; Julia R. Penick; Celia F. Todd; Monica C. So – Journal of Chemical Education, 2023
Summative lab assessments probe student mastery over concepts, but conventional ones often result in decreased student engagement and confidence. If conventional summative lab assessments are replaced by accessible gamified evaluations, such as online escape rooms, this leads to improved student engagement and confidence. In this work, we adapted…
Descriptors: Chemistry, Learner Engagement, Science Instruction, Electronic Learning
Gunnar Schwarz; Monique Kuonen – Journal of Chemical Education, 2023
We present a showcase of our experience with videos complementing analytical chemistry lectures to familiarize undergraduate students with instrumental element analysis. This includes a detailed account of how we planned, produced, and utilized a video to review the course content at the end of the semester. The analytical case study focused on…
Descriptors: Video Technology, Case Studies, Course Evaluation, Scientific Concepts
Tangalakis, Kathy; Julien, Brianna L.; Lexis, Louise; Hryciw, Deanne H.; Thomas, Colleen J.; Husaric, Maja; Towstoless, Michelle; MacKinnon, Philip J.; Miao, Yuan; Hayes, Alan – Advances in Physiology Education, 2023
Core concepts in physiology, designed by physiology educators to promote improved learning and teaching, have existed for over a decade. This study aimed to investigate the extent to which a set of 15 core concepts of physiology (developed by Michael and McFarland, U.S.-based educators) are reflected in the learning outcomes (LOs) of units…
Descriptors: Concept Formation, Scientific Concepts, Physiology, Science Instruction
Baosen Zhang; Ariana Frkonja-Kuczin; Zhong-Hui Duan; Aliaksei Boika – Journal of Chemical Education, 2023
Computer vision (CV) is a subfield of artificial intelligence (AI) that trains computers to understand our visual world based on digital images. There are many successful applications of CV including face and hand gesture detection, weather recording, smart farming, and self-driving cars. Recent advances in computer vision with machine learning…
Descriptors: Classification, Laboratory Equipment, Visual Aids, Optics
Hahn, Kenneth D.; Russell, Jacob M. – Physics Teacher, 2018
It has been noted that the static friction force poses challenges for students and, at times, even their instructors. Unlike the gravitational force, which has a precise and unambiguous magnitude (F[subscript G] = mg), the magnitude and direction of the static friction force depend on other forces at play. Friction can be understood rather well in…
Descriptors: Physics, Science Instruction, Scientific Concepts, Concept Formation
Ginsberg, Edw S. – Physics Teacher, 2018
The compatibility of the Newtonian formulation of mechanical energy and the transformation equations of Galilean relativity is demonstrated for three simple examples of motion treated in most introductory physics courses (free fall, a frictionless inclined plane, and a mass/spring system). Only elementary concepts and mathematics, accessible to…
Descriptors: Energy, Scientific Concepts, Physics, Motion
Colletti, Leonardo – Physics Education, 2018
Science and art are traditionally represented as two disciplines with completely divergent goals, methods, and public. It has been claimed that, if rightly addressed, science and art education could mutually support each other. In this paper I propose the recurrent reference to certain famous paintings during the ordinary progress of physics…
Descriptors: Science Instruction, Physics, Art Education, Interdisciplinary Approach
Janakiraman, Deepika – Journal of Chemical Education, 2018
The derivation for the Gibbs phase rule, provided in physical chemistry text books, often assumes that all the components are present in all the phases coexisting at equilibrium. However, very often we have situations where all the phases at equilibrium do not have all the components, the binary eutectic system being a classic example. The melt…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Misconceptions
Dean, Kevin – European Journal of Physics Education, 2018
The conical pendulum provides a rich source of theoretical and computational analysis and the present work presents a seamless continuation of the previous publication. The tension force F[subscript T] and centripetal force F[subscript C] are explored further in linearization analyses and the appropriate slopes are explained. A similar analysis is…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Frodyma, Marc; Le, My Phuong – Physics Teacher, 2018
The transformations of electric and magnetic fields are usually introduced by viewing systems such as a long, straight current-carrying wire and a parallel plate capacitor in two different reference frames. These well-known examples show that magnetism is a necessary consequence of augmenting electrostatics with relativity. Because they require…
Descriptors: Science Instruction, Physics, Scientific Concepts, Magnets
Niederer, Kyle A.; Fodor, Matthew D.; Catino, Arthur J. – Journal of Chemical Education, 2018
Torsional effects influence kinetic selectivity in a wide range of organic transformations. As such, textbooks commonly use Newman projections to illustrate the torsional effects that arise in their transition states. Unfortunately, these representations fall short when the reaction occurs "within a ring." In many cases, the torsional…
Descriptors: Chemistry, Science Instruction, Visualization, College Science
Yin, Dezhong; Chen, Jinhua; Gu, Bin; Geng, Wangchang – Journal of Chemical Education, 2018
A new experiment based on phase inversion of Pickering emulsions was carried out in a physical chemistry course. The emulsions were stabilized by surfactant-modified SiO[subscript 2] particles. As the concentration of surfactant increased, the emulsions changed from oil-in-water type (O/W) to water-in-oil type (W/O) type, and then reverted to be…
Descriptors: Chemistry, Scientific Concepts, Scientific Principles, Laboratory Experiments
Overduin, James; Perry, Jonathan; Huxford, Rachael; Selway, Jim – Physics Teacher, 2018
Popular demonstrations commonly use stretched spandex fabric to illustrate the way in which curved spacetime mimics the force of gravity in general relativity. There are significant potential conceptual pitfalls to such an approach. In particular, it obscures the fact that most of what we ordinarily feel as gravity is due to the warping of time…
Descriptors: Science Instruction, Physics, Scientific Concepts, Demonstrations (Educational)

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