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Bøe, Maria Vetleseter; Viefers, Susanne – Science & Education, 2023
Teaching and learning of quantum physics at secondary level is an active field of research. One important challenge is finding ways to promote understanding of quantum concepts without the mathematical formalism that is embedded in quantum mechanics but unavailable on the secondary level. We investigated Norwegian secondary students' (N = 291)…
Descriptors: Secondary School Students, Scientific Principles, Physics, Science Instruction
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Kohnle, Antje; Jackson, Alexander; Paetkau, Mark – Physics Teacher, 2019
Learning introductory quantum physics is challenging, in part due to the different paradigms in classical mechanics and quantum physics. Classical mechanics is deterministic in that the equations of motion and the initial conditions fully determine a particle's trajectory. Quantum physics is an inherently probabilistic theory in that only…
Descriptors: Probability, Quantum Mechanics, Physics, Computer Simulation
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Dreyfus, Benjamin W.; Hoehn, Jessica R.; Elby, Andrew; Finkelstein, Noah D.; Gupta, Ayush – International Journal of STEM Education, 2019
Background: While there has been increasing recognition of the importance of attending to students' views about what counts as knowing and learning a STEM field, surveys that measure these "epistemological" beliefs are often used in ways that implicitly assume the fields, e.g., "physics," to be a single domain about which…
Descriptors: Student Attitudes, Scientific Attitudes, Science Education, Quantum Mechanics
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Stapleton, Andrew J. – Cultural Studies of Science Education, 2018
In response to the authors, I demonstrate how threshold concepts offer a means to both contextualise teaching and learning of quantum physics and help transform students into the culture of physics, and as a way to identify particularly troublesome concepts within quantum physics. By drawing parallels from my own doctoral research in another area…
Descriptors: Quantum Mechanics, Physics, Science Education, Imagery
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Bungum, Berit; Bøe, Maria Vetleseter; Henriksen, Ellen Karoline – Science Education, 2018
Quantum physics challenges our views of the physical world and describes phenomena that cannot be directly observed. The use of language is hence essential in the teaching of quantum physics. With a sociocultural view of learning, we investigate characteristics of preuniversity students' small-group discussions and their potential for enhancing…
Descriptors: Quantum Mechanics, Group Discussion, Science Achievement, Scientific Literacy
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Johansson, Anders; Andersson, Staffan; Salminen-Karlsson, Minna; Elmgren, Maja – Cultural Studies of Science Education, 2018
Educating new generations of physicists is often seen as a matter of attracting good students, teaching them physics and making sure that they stay at the university. Sometimes, questions are also raised about what could be done to increase diversity in recruitment. Using a discursive perspective, in this study of three introductory quantum…
Descriptors: Quantum Mechanics, Mechanics (Physics), Science Instruction, College Science
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Kizilcik, Hasan Sahin; Yavas, Pervin Ünlü – Journal of Education and Training Studies, 2017
The aim of this study is to identify the opinions of pre-service physics teachers about the difficulties in introductory quantum physics topics. In this study conducted with twenty-five pre-service physics teachers, the case study method was used. The participants were interviewed about introductory quantum physics topics. The interviews were…
Descriptors: Preservice Teachers, Physics, Teacher Attitudes, Science Education
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Day, James; Lantagne-Hurtubise, Étienne; Sheyerman, Alexander; Liao, Yu-Huan Theresa; Hoyt, Char – Physics Teacher, 2021
This paper introduces quantum materials and the notion of using models to aid the comprehension of complex ideas. It describes a hands-on activity, collaboratively developed by scientists and artists, that promotes an understanding of how experts take advantage of analogical thinking and model building to develop important frameworks. Quantum…
Descriptors: Science Instruction, Quantum Mechanics, Teaching Methods, Concept Formation
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Asikainen, Mervi A. – EURASIA Journal of Mathematics, Science & Technology Education, 2017
The study investigated the use of Quantum Physics Conceptual Survey (QPCS) in probing student understanding of quantum physics. Altogether 103 Finnish university students responded to QPCS. The mean scores of the student responses were calculated and the test was evaluated using common five indices: Item difficulty index, Item discrimination…
Descriptors: Quantum Mechanics, Physics, College Students, Student Surveys
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Yusuf, Irfan; Widyaningsih, Sri Wahyu; Sebayang, Sri Rosepda Br. – Journal of Turkish Science Education, 2018
E-learning media is one effective solution as a learning tool that could be implemented anytime and anywhere. Science, Technology, Engineering, and Mathematics (STEM) approach through the use of e-learning is expected to develop students Higher Order Thinking Skills (HOTS). This study aimed to measure students HOTS abilities through the use of…
Descriptors: Electronic Learning, STEM Education, Physics, Thinking Skills
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Vilarta Rodriguez, Luiza; van der Veen, Jan T.; Anjewierden, Anjo; van den Berg, Ed; de Jong, Ton – Physics Education, 2020
This paper describes the design process for a digital instructional sequence on introductory quantum physics for upper secondary education. Based on a collaboration between teachers and physics education researchers, this sequence incorporates relevant theoretical foundations from the field of science teaching to promote meaningful and conceptual…
Descriptors: Quantum Mechanics, Physics, Science Instruction, Secondary School Science
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Stadermann, Kirsten; Goedhart, Martin – Physics Education, 2022
High school students' difficulties with quantum physics (QP) are partly due to their limited understanding of the nature of science (NOS). The essence of QP can only be understood with informed views about NOS aspects such as the role of models and the relevance of controversies between physicists. Inversely, QP is an ideal topic for teaching…
Descriptors: Science Instruction, Physics, Quantum Mechanics, High School Students
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Everth, Thomas – Waikato Journal of Education, 2022
The climate emergency mandates a refocusing of society and education on the relationship between humans and the more-than-human world. Emerging from decades of social constructionism that openly promoted climate science denial, social and educational theorising now engages with new materialist philosophies and the agency of matter. Physicist Karen…
Descriptors: Climate, Ecology, Quantum Mechanics, Mechanics (Physics)
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Bouchée, T.; de Putter-Smits, L.; Thurlings, M.; Pepin, B. – Studies in Science Education, 2022
Research on teaching and learning quantum physics (QP) frequently explores students' conceptual difficulties to identify common patterns in their reasoning. The abstractness of QP is often found to be at the origin of students' conceptual difficulties. Due to this abstract nature students resort to common sense reasoning or classical thinking when…
Descriptors: Science Instruction, Mechanics (Physics), Scientific Concepts, Concept Formation
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Shafigh, Amir Abbas Eslami – Physics Education, 2021
In the transition from classical to modern physics, the idea of taking some certain quantities as distinct or bounded values and keeping the rest continuous has proved useful in dealing with many problems. In this paper we assume an upper bound on the velocity of classical particles and indicate that applying this assumption to electromagnetism…
Descriptors: Physics, Magnets, Motion, Introductory Courses
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