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Burko, Lior M. – Physics Teacher, 2017
A long time ago in a galaxy far, far away, two black holes, one of mass 36 solar masses and the other of mass 29 solar masses, were dancing their death waltz, leading to their coalescence and the emission of gravitational waves carrying away with them three solar masses of energy. More precisely, it happened 1.3 billion years ago at a distance of…
Descriptors: Laboratory Experiments, Science Instruction, Physics, Scientific Concepts
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Geraskin, Nikolay; Pironkov, Lyubomir; Kulikov, Evgeny; Glebov, Vasily – European Journal of Engineering Education, 2017
This paper presents the results of the European educational projects CORONA and CORONA-II which are dedicated to preserving and further developing nuclear knowledge and competencies in the area of VVER-type nuclear power reactors technologies (Water-Water Energetic Reactor, WWER or VVER). The development of the European Center of Competence for…
Descriptors: Facilities, Nuclear Energy, Distance Education, Foreign Countries
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Thees, Michael; Hochberg, Katrin; Kuhn, Jochen; Aeschlimann, Martin – Physics Teacher, 2017
The importance of Scanning Tunneling Microscopy (STM) in today's research and industry leads to the question of how to include such a key technology in physics education. Manfred Euler has developed an acoustic model experiment to illustrate the fundamental measuring principles based on an analogy between quantum mechanics and acoustics. Based on…
Descriptors: Physics, Quantum Mechanics, Acoustics, Handheld Devices
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Busch, Hauke – Physics Teacher, 2017
Over the last several years online homework solutions have become ever more accessible to students. This is due in part to programs like Yahoo Answers, Chegg, publisher solution manuals, and other web resources that are readily available online. The student can easily search any physics homework problem posted on the web in a matter of seconds and…
Descriptors: Science Instruction, Physics, Cheating, Plagiarism
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Simpson, E. C.; Shelley, M. – Physics Education, 2017
Nuclear masses and binding energies are some of the first nuclear properties met in high school physics, and can be used to introduce radioactive decays, fusion, and fission. With relatively little extension, they can also illustrate fundamental concepts in nuclear physics, such as shell structure and pairing, and to discuss how the elements…
Descriptors: Science Instruction, Scientific Concepts, Nuclear Physics, Energy
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Monteiro, Martin; Stari, Cecilia; Cabeza, Cecilia; Marti, Arturo C. – Physics Teacher, 2017
The spatial dependence of magnetic fields in simple configurations is a common topic in introductory electromagnetism lessons, both in high school and in university courses. In typical experiments, magnetic fields and distances are obtained taking point-by-point values using a Hall sensor and a ruler, respectively. Here, we show how to take…
Descriptors: Physics, Science Instruction, Introductory Courses, Science Experiments
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Leitão, Ulisses Azevedo; dos Anjos Pinheiro da Silva, Antonio; Trindade do Nascimento, Natália Cristina; da Cruz Gervásio, Lilian Mara Benedita – Physics Education, 2017
In this paper we report an investigative activity on hydrodynamics, in the context of an inquiry-based learning project. The aim is to analyse the experiment of a bullet shot underwater. Using "Tracker," a video analysing and modelling software, the displacement of the bullet was measured as function of time, processing a slow motion…
Descriptors: Physics, Scientific Concepts, Science Instruction, Inquiry
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Bani-Salameh, Hisham N. – Physics Education, 2017
We started this work with the goal of detecting misconceptions held by our students about force and motion. A total of 341 students participated in this study by taking the force concept inventory (FCI) test both before and after receiving instructions about force or motion. The data from this study were analysed using different statistical…
Descriptors: College Freshmen, Misconceptions, Physics, Scientific Concepts
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Broder, Darren; Burleigh, James; Christian, Matthew; Mowry, Shawn; Hassel, George E. – Physics Teacher, 2017
The Exploding Carts is a popular introductory physics activity in which a one-dimensional explosion is simulated utilizing two dynamics carts that are pushed apart by a spring-loaded plunger released from one of the carts. Traditional treatments of the Exploding Carts usually involve multiple trials where the mass of one or both of the carts is…
Descriptors: Physics, Science Instruction, Introductory Courses, Teaching Methods
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Allen, Bradley – Physics Teacher, 2017
One challenge for the introductory physics teacher is incorporating calculus techniques into the laboratory setting. It can be difficult to strike a balance between presenting an experimental task for which calculus is essential and making the mathematics accessible to learners who may be apprehensive about applying it. One-dimensional kinematics…
Descriptors: Introductory Courses, Mechanics (Physics), Calculus, Kinetics
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Herman, Rhett; Ballowe, Abigail; Ashley, Joe – Physics Teacher, 2017
Two students in a recent thermodynamics/statistical mechanics course needed to complete a course-related project to receive honors credit for the class. Such courses are typically theoretical, without an accompanying laboratory, although there are existing related hands-on exercises. The choice of the project was influenced by one student's desire…
Descriptors: Thermodynamics, Mechanics (Physics), Honors Curriculum, Engineering
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Cooper, A. Kat; Oliver-Hoyo, M. T. – Biochemistry and Molecular Biology Education, 2017
The high degree of complexity of macromolecular structure is extremely difficult for students to process. Students struggle to translate the simplified two-dimensional representations commonly used in biochemistry instruction to three-dimensional aspects crucial in understanding structure-property relationships. We designed four different physical…
Descriptors: Models, Molecular Structure, Biochemistry, Science Instruction
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Robertson, Bill – Science and Children, 2017
This column provides background science information for elementary teachers. This month's issue discusses the rotation of the moon. The author investigates what would happen if the moon did not rotate and addresses exactly why the Moon does what it does with respect to rotation.
Descriptors: Astronomy, Science Teachers, Elementary School Science, Physics
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Aji, Mahardika Prasetya; Karunawan, Jotti; Chasanah, Widyastuti Rochimatun; Nursuhud, Puji Iman; Wiguna, Pradita Ajeng; Sulhadi – Physics Education, 2017
A simple diffraction experiment was designed using banana stem as natural grating. Coherent beams of lasers with wavelengths of 632.8 nm and 532 nm that pass through banana stem produce periodic diffraction patterns on a screen. The diffraction experiments were able to measure the distances between the slit of the banana stem, i.e. d = (28.76 ±…
Descriptors: Lasers, Science Experiments, Teaching Methods, Spectroscopy
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Organtini, Giovanni – Physics Education, 2017
A simple model is presented to explain Higgs boson physics to the grand public. The model consists of a children's ball pool representing a Universe filled with a certain amount of the Higgs field. The model is suitable for usage as a hands-on tool in scientific exhibits and provides a clear explanation of almost all the aspects of the physics of…
Descriptors: Models, Scientific Concepts, Physics, Demonstrations (Educational)
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