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Micklavzina, Stanley; Almqvist, Monica; Sörensen, Stacey L. – Physics Education, 2014
Stanley Micklavzina, a US physics educator on sabbatical, teams up with a Swedish national research laboratory, a synchrotron radiation experimental group and a university science centre to develop and create educational and public outreach projects. Descriptions of the physics, science centre displays and public demonstrations covering the…
Descriptors: Physics, Science Laboratories, Radiation, Molecular Structure
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Borondo, J.; Benito, R. M.; Losada, J. C. – European Journal of Engineering Education, 2014
In this paper we introduce the methodology that we have followed to convert traditional notes into interactive online materials. The idea behind this has been to make self-consistent and interactive online materials capable of motivating the students to get involved in the learning process. For this purpose, we have used the e-learning environment…
Descriptors: Foreign Countries, Engineering, Engineering Education, Physics
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Main, Peter – School Science Review, 2014
The physics curriculum is usually defined by content but this does not provide students with an authentic experience of the subject. An alternative is that physics is defined more as a way of thinking and this idea is explored in terms of the purposes of physics education, assessment and the relationship of the subject with other disciplines. A…
Descriptors: Science Instruction, Physics, Science Curriculum, Secondary School Science
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Bartos, Stephen A.; Lederman, Norman G.; Lederman, Judith S. – School Science and Mathematics, 2014
Research has indicated that experts' subject matter knowledge structures (SMKSs) differ from those of novices in that they contain more cross-linking, interconnections, and overarching thematic elements, characteristics that are in accordance with those espoused in current reform documents. Unfortunately, teachers' SMKSs are not…
Descriptors: Pedagogical Content Knowledge, Science Teachers, Physics, Knowledge Base for Teaching
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Roth, Wolff-Michael; Jornet, Alfredo – Science Education, 2014
"Experience" is one of the most used terms in (science) education, and it is recognized as being related to learning (education). Yet "what" experience is and "how" it is related to learning and change remains untheorized. In this paper, we mainly draw on the work of J. Dewey and L. S. Vygotsky but also on M. Bakhtin…
Descriptors: Science Education, Scientific Concepts, Experience, Philosophy
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Kind, Vanessa – International Journal of Science Education, 2014
Aspects of chemistry content knowledge held by 265 UK-based pre-service teachers (PSTs) were probed using 28 diagnostic questions in five chemistry concept areas, "Particle theory and changes of state", "Mass conservation" (taught to 11-14-year-olds), and "Chemical bonding", "Mole calculations" and…
Descriptors: Science Education, Science Teachers, Preservice Teachers, Pedagogical Content Knowledge
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Danielsson, Anna T.; Lundin, Mattias – Cultural Studies of Science Education, 2014
In this forum we engage in a dialogue with Allison Gonsalves's paper '"Physics and the girly girl--there is a contradiction somewhere": Doctoral students' positioning around discourses of gender and competence in physics'. In her paper Gonsalves uses a sociocultural approach to examine women doctoral students'…
Descriptors: Science Education, Physics, Gender Differences, Doctoral Programs
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Zeng, Liang; Smith, Chris; Poelzer, G. Herold; Rodriguez, Jennifer; Corpuz, Edgar; Yanev, George – Physical Review Special Topics - Physics Education Research, 2014
In our pilot studies, we found that many introductory physics textbook illustrations with supporting text for sound standing waves of air columns in open-open, open-closed, and closed-closed pipes inhibit student understanding of sound standing wave phenomena due to student misunderstanding of how air molecules move within these pipes. Based on…
Descriptors: Textbooks, Physics, Illustrations, Scientific Concepts
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Sokolowski, Andrzej – International Journal of Mathematical Education in Science and Technology, 2014
Research has shown that students have difficulties with understanding the process of determining whether an object is speeding up or slowing down, especially when it is applied to the analysis of motion in the negative direction. As inductively organized learning through its scaffolding sequencing supports the process of knowledge acquisition…
Descriptors: Mathematics Instruction, Calculus, Motion, Inquiry
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Adebayo, Awoniyi Samuel; Judith, Kamanga – European Journal of Educational Sciences, 2014
The purpose of the study was to compare the effectiveness of cooperative learning strategy and Traditional instructional method on pupils' academic achievement and their motivation to learn in the physics classroom at Chibote Girls Secondary School in Kitwe District of Zambia. The research was a Pre-test- post-test control group design. The…
Descriptors: Cooperative Learning, Instructional Effectiveness, Conventional Instruction, Physics
Cepeda, Francisco Javier Delgado; Acosta, Ruben Dario Santiago – International Association for Development of the Information Society, 2014
This paper reports design and implementation outcomes at middle development advance of an educative program based on use and construction of widgets on Wolfram Alpha platform at higher education level for engineering and sciences areas. Widgets were based on Physics and Mathematics curricula under Project Oriented Learning and Blended Learning…
Descriptors: Electronic Learning, Blended Learning, Higher Education, Physics
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Frändberg, Birgitta; Lincoln, Per; Wallin, Anita – Research in Science Education, 2013
Explanations involving submicro levels of representation are central to science education, but known to be difficult for students in secondary school. This study examines students' written explanations of physical and chemical phenomena regarding matter and changes in matter, in a large-scale test. This is done in order to understand linguistic…
Descriptors: Foreign Countries, Science Education, Verbs, Vocabulary
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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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Rodd, Melissa; Reiss, Michael; Mujtaba, Tamjid – Research in Science & Technological Education, 2013
Background: The research on which this article is based was commissioned because of concerns about perceived shortages of willing and able young people choosing to study physics at university. Purpose: This article reports on first year physics undergraduates' narratives of why they are studying physics and uses these narratives to identify…
Descriptors: Undergraduate Students, Physics, Science Instruction, College Science
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Theilmann, Florian; Grusche, Sascha – Physics Education, 2013
Teaching prismatic colours usually boils down to establishing the take-home message that white light consists of "differently refrangible" coloured rays. This approach explains the classical spectrum of seven colours but has its limitations, e.g. in discussing spectra from setups with higher resolution or in understanding the well…
Descriptors: Science Instruction, Physics, Color, Scientific Principles
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