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András Juhász – European Journal of Physics Education, 2022
In this part we introduce the Smart Dreamcatcher (SD) network, a visualization of the Microcosmos. The SD-network is a geometrical structure (3-uniform hypergraph) which allows a comprehensible explanation of quantitative characteristics of hadron particles at the level of elaboration by physics of 1970's-80's. The elementary particles correspond…
Descriptors: Networks, Nuclear Physics, Models, Science Instruction
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Eberly, B.; Lincoln, D. – Physics Teacher, 2022
Neutrinos are perhaps the least understood of the known denizens of the subatomic world. They have nearly no mass, interact only via the weak nuclear force and gravity, and, perhaps most surprising, the three known species of neutrinos can transform from one variant into another. This transformation, called neutrino oscillation, has been…
Descriptors: Scientific Concepts, Nuclear Physics, Scientific Research, Quantum Mechanics
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Day, James; Liao, Theresa Yu-Huan; Hoyt, Char; Can, Oguzhan – Physics Teacher, 2022
This paper shares a hands-on activity that introduces Feynman diagrams and the accompanying idea of using pictorial representations to describe the behavior of subatomic particles--specifically, for electrons and photons--in place of mathematical expressions. Built collaboratively by scientists and artists, it exemplifies a triumph of lateral…
Descriptors: Quantum Mechanics, Hands on Science, Visual Aids, Nuclear Physics
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Atkin, Keith – Physics Education, 2021
This paper shows how the freely downloadable software package called "SMath Studio" can be used to solve the time-independent Schrödinger equation using a simple step-wise approximation. The solution is illustrated with reference to the hydrogen atom for which trial eigenvalues are supplied by the energy level formula of the Bohr atom.
Descriptors: Computer Software, Equations (Mathematics), Problem Solving, Time
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Stuart, Ian – Primary Science, 2021
The atom is science's biggest idea! And now it is known that even children from 4 years of age can grasp it, creating science education's biggest worldwide opportunity. Dr. Jenny Donovan and Dr. Carole Haeusler of the University of Southern Queensland conducted multiple studies to show that primary-age children, mostly aged 7-9 years in their…
Descriptors: Elementary School Science, Science Instruction, Chemistry, Nuclear Physics
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Den Auwer, Christophe; Bayle, Simon; Beccia, Maria Rosa; Bosio, Sandra; Creff, Gaëlle; Jeanson, Aurélie; Michel, Hervé; Pitiot, Christophe; Zurita, Cyril – Journal of Chemical Education, 2022
As part of their third-year general chemistry program, students at the University of the Côte d'Azur are taught the basics of radioactivity. The view that third-year university students have of the periodic Table of the Elements is often reduced because it ignores the vast majority of isotopes. As part of this program, a practicum devoted to the…
Descriptors: Radiation, Chemistry, College Science, Science Instruction
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Bansal, Monika; Bansal, Sunil; Kumar, Ramandeep – Physics Education, 2021
Simulation of physics phenomena is an indispensable part of experimental studies. Undergraduate and postgraduate physics students are often introduced to the simulation of various phenomena as one of the most important pedagogical tools. In this document, we demonstrate the simulations of the two-body decay of a particle and equilibrium states in…
Descriptors: Physics, Simulation, College Science, Mechanics (Physics)
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Khan, F. A. – Physics Education, 2022
A number of useful and interesting exercises regarding nucleus and nuclear fission are performed to make these concepts more understandable to high school or even college students.
Descriptors: Science Instruction, Secondary School Science, High School Students, College Science
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Lincoln, Don – Physics Teacher, 2019
In the modern and exciting world of particle physics, in which scientists talk of Higgs bosons and supersymmetry, it would be natural for someone to dismiss the common proton as a particle too pedestrian to be interesting. Yet in the centennial year of the announcement of its discovery, studies of the humble nucleus of the hydrogen atom continue…
Descriptors: Nuclear Physics, Scientific Concepts, Science History, Measurement
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Parkin, Gerard – Journal of Chemical Education, 2019
Many compounds can be represented well in terms of the two-center-two-electron (2c-2e) bond model. However, it is well-known that this approach has limitations; for example, certain compounds require the use of three-center-two-electron (3c-2e) bonds to provide an adequate description of the bonding. Although a classic example of a compound that…
Descriptors: Inorganic Chemistry, Molecular Structure, Molecular Biology, Identification
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Deja, Katarzyna; Adamowski, Lukasz; Kirejczyk, Marek; Marcinkowska-Sanner, Maja; Gasowska, Martyna – Physics Education, 2020
This article presents the Polish project entitled 'Detektory dla Szkol' ('Detectors for Schools', throughout the paper referred to as 'the programme'). It was developed at the Education and Training Division of the National Centre for Nuclear Research (Narodowe Centrum Badan Jadrowych, NCBJ) in Poland. The programme allows the schools to borrow…
Descriptors: Foreign Countries, Science Education, Measurement Equipment, Science Equipment
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Wheeler, Sam – Physics Teacher, 2018
In 2013, I was an Einstein Fellow with the U.S. Department of Energy and I was asked by a colleague, working in a senator's office, if I would join him in a meeting with a physicist to "translate" the science into something more understandable. That meeting turned out to be a wonderful opportunity I would never have otherwise had. During…
Descriptors: Scientists, Scientific Research, International Organizations, Nuclear Physics
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Khan, F. A. – Physics Education, 2021
An elementary-level physics approach is used to calculate a number of interesting and useful quantities related to nuclear explosions. The set of eight exercises deals with nuclear fission fragments, the variation of fissile nucleus density in a fissioning nuclear device core with time, and the fireball.
Descriptors: Nuclear Physics, Nuclear Energy, Science Education, Science Activities
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Tanaka, Kazuo S.; Harada, Ken-ichi; Hayamizu, Tomohiro; Kita, Ryosuke; Kono, Rikako; Maruta, Kyoka; Nagahama, Hiroki; Ozawa, Naoya; Sakemi, Yasuhiro; Sugimori, Ryu – Physics Education, 2022
In Japan, research activities by junior and senior high school students show an upward trend. However, there are limited examples of research activities in the field of elementary particles and atoms. This is due to the difficulty associated with procuring research tools such as accelerators or particle detectors. Therefore, we hosted the 'Accel…
Descriptors: Science Instruction, Junior High School Students, High School Students, Science Experiments
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Kontomaris, Stylianos-Vasileios; Malamou, Anna – Physics Education, 2021
A significant goal when teaching at the secondary education level is to present the generality of the procedures that are being used to describe a wide range of different physical phenomena. However, this approach is abandoned by physics instructors in many cases since the general mathematical background needed to present the above generality is…
Descriptors: Science Instruction, Secondary School Science, Physics, Scientific Concepts
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