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Showing 1 to 15 of 55 results Save | Export
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Galili, Igal – Science & Education, 2019
This study considers the short list of Nature of Science (NOS) features frequently published and widely known in the science education discourse. It is argued that these features were oversimplified and a refinement of the claims may enrich or sometimes reverse them. The analysis shows the need to address the range of variation in each particular…
Descriptors: Scientific Principles, Science Education, Science History, Science Instruction
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Walsh, Kevin – School Science Review, 2018
Computer simulations have been used very effectively for many years in the teaching of science but the focus has been on cognitive development. This study, however, is an investigation into the possibility that a student's experimental skills in the real-world environment can be judged via the undertaking of a suitably chosen computer simulation…
Descriptors: Physics, Computer Simulation, Science Instruction, Cognitive Development
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Branchetti, Laura; Cattabriga, Alessia; Levrini, Olivia – Physical Review Physics Education Research, 2019
This paper aims to provide a contribution to the research in physics education regarding the interplay between mathematics and physics in teaching and learning physics at the university level. The argument is developed through a study focused on the historical case study of the blackbody that led Planck to make one of the most significant…
Descriptors: Science Education, Physics, Mathematics, Scientific Research
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Gould, Alan; Komatsu, Toshi; DeVore, Edna; Harman, Pamela; Koch, David – Physics Teacher, 2015
NASA's "Kepler Mission" has been wildly successful in discovering exoplanets. This paper summarizes the mission goals, briefly explains the transit method of finding exoplanets and design of the mission, provides some key findings, and describes useful education materials available at the "Kepler" website.
Descriptors: Astronomy, Space Exploration, Physics, Class Activities
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Zavrel, Erik; Sharpsteen, Eric – Physics Teacher, 2016
The importance of understanding and internalizing the scientific method can hardly be exaggerated. Unfortunately, it is all too common for high school--and even university--students to graduate with only a partial or oversimplified understanding of what the scientific method is and how to actually employ it. Help in remedying this situation may…
Descriptors: Science Instruction, Physics, Scientific Methodology, Science Process Skills
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Korte, Stefan; Berger, Roland; Hänze, Martin – Science & Education, 2017
We assessed the impact of teaching methodological aspects of physics on students' scientistic beliefs and subject interest in physics in a repeated-measurement design with a total of 142 students of upper secondary physics classes. Students gained knowledge of methodological aspects from the pre-test to the post-test and reported reduced…
Descriptors: Secondary School Students, Secondary School Science, Physics, Science Instruction
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Sinuraya, Jurubahasa – Journal of Education and Practice, 2016
This study aims to produce inquiry-oriented general physics learning material to improve student learning outcome. Development steps of learning materials were adapted from the design model of Dick and Carey. Stages of development consists of three phases: planning, development, and formative evaluation and revision. Implementation of formative…
Descriptors: Physics, Competence, Formative Evaluation, Pretests Posttests
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Atkin, Keith – Physics Education, 2015
The current use of two sets of units in the UK continues to be a source of muddle and confusion. Young people are taught metric (SI) units in school but, in the outside world, still have to contend with units such as inches, feet, pounds, stones and miles. Specialist teachers and practitioners of the sciences are not blameless. This paper…
Descriptors: Physics, Science Instruction, Metric System, Educational Change
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Sandoval, Christopher – Teaching Science, 2013
The Ruben Flame Tube is named after H. Ruben, who published the demonstration experiment in "Annalen der Physik" in 1905. This article presents one of the many demonstrations the author uses to engage, motivate, and challenge his students.
Descriptors: Scientific Concepts, Physics, Science Instruction, Teaching Methods
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Lautesse, Philippe; Vila Valls, Adrien; Ferlin, Fabrice; Héraud, Jean-Loup; Chabot, Hugues – Science & Education, 2015
One of the main problems in trying to understand quantum physics is the nature of the referent of quantum theory. This point is addressed in the official French curriculum in upper secondary school. Starting in 2012, after about 20 years of absence, quantum physics has returned to the national program. On the basis of the historical construction…
Descriptors: Quantum Mechanics, Physics, Secondary School Curriculum, Secondary School Science
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Cheng, Meng-Fei; Cheng, Yufang; Hung, Shuo-Hsien – Teaching Science, 2014
Based on our experience of teaching physics in middle and senior secondary school, we have found that students have difficulty in reasoning at the microscopic level. Their reasoning is limited to the observational level so they have problems in developing scientific models of magnetism. Here, we suggest several practical activities and the use of…
Descriptors: Thinking Skills, Magnets, Science Education, Computer Simulation
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Brown, Todd; Brown, Katrina; Barnot, Vickilyn – Science Activities: Classroom Projects and Curriculum Ideas, 2012
Reaction time, the time between a stimulus and a person's reaction to it, is a concept familiar to most teenagers, particularly in the context of driving. We describe a simple inexpensive activity that utilizes students' creativity and invokes the scientific method in order to explore reaction time. The goal of the activity is to give students a…
Descriptors: Reaction Time, Physics, Science Instruction, Science Activities
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Develaki, Maria – Science & Education, 2012
The availability of teaching units on the nature of science (NOS) can reinforce classroom instruction in the subject, taking into account the related deficiencies in textbook material and teacher training. We give a sequence of teaching units in which the teaching of Newton's gravitational theory is used as a basis for reflecting on the…
Descriptors: Scientific Methodology, Theories, Science History, Scientific Principles
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Denton, J. J.; Denton, M. H.; Kavanagh, A. J.; Harron, H.; Ulich, T.; Denton, J. S. – Physics Education, 2012
We report on a school-university collaboration to involve students in the deployment, testing, and operation of a very low frequency (VLF) radio receiver as part of an international network of such experiments. A background to the collaboration is presented, along with a summary of planning and development, and the ultimate deployment of the…
Descriptors: College School Cooperation, Radio, Physics, Science Instruction
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Koznjak, Boris – Physics Education, 2012
During the past few decades, a wide consensus has been reached in the community of science educators that it is almost unimaginable to conduct a quality science education without including the history and philosophy of science in some form in the science curriculum, and this is especially the case for physics education (Matthews 1994). However, in…
Descriptors: Physics, Science Curriculum, Historians, Textbooks
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