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Fidget Spinner and the Principle of Conservation of Angular Momentum: A 3D-Print Demonstration Model
de Almeida, Pamella Aline; Onisaki, Hadassa; de Almeida, Juarez Trindade; Costa, Lúcio Campos; Brockington, Guilherme – Physics Education, 2020
Principles of conservation are essential to the physical understanding of the universe. When thinking about its teaching, especially aimed at basic education, experimental activities can be great allies for its understanding. In this article, we present a demonstrative model using a fidget spinner arranged in a structure constructed using 3D…
Descriptors: Science Instruction, Scientific Principles, Motion, Physics
Cross, Rod – Physics Education, 2017
When a hard object rolls on a soft surface, or vice versa, rolling friction arises from deformation of the soft object or the soft surface. The friction force can be described in terms of an offset in the normal reaction force or in terms of energy loss arising from the deformation. The origin of the friction force itself is not entirely clear. It…
Descriptors: Science Instruction, Scientific Concepts, Physics, Motion
Hawes, Chloe E.; Ruiz, Michael J. – Physics Education, 2018
Costume jewelry beads are employed to demonstrate how a beam of beads are able to transform into a simple pendulum (single bead) where the pendulum length remains constant throughout. These beads are common and inexpensive for instructors, as well as attractive and exciting for students. Beads are removed from the top, keeping the same pendulum…
Descriptors: Physics, Science Instruction, Teaching Methods, Motion
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
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)
González, Manuel Á.; González, Miguel Á.; Vegas, Jesús; Llamas, César – Physics Education, 2017
A simple experiment on the determination of the coefficient of restitution of different materials is taken as the basis of an extendable work that can be done by students in an autonomous way. On the whole, the work described in this paper would involve concepts of kinematics, materials science, air drag and buoyancy, and would help students to…
Descriptors: Science Instruction, Science Experiments, Physics, Scientific Concepts
Kazachkov, Alexander; Kireš, Marián – Physics Education, 2017
Previous work covers building a tower from a stack of homogeneous rectangular plates, each with a maximum shift in displacement. We suggest using plates shaped as curvilinear triangles bounded by segments of power-law functions. The masses of the plates and the position of their center of mass are calculated and measured experimentally after…
Descriptors: Science Instruction, Calculus, Teaching Methods, Scientific Concepts
Diget, C. Aa.; Pastore, A.; Leech, K.; Haylett, T.; Lock, S.; Sanders, T.; Shelley, M.; Willett, H. V.; Keegans, J.; Sinclair, L.; Simpson, E. C. – Physics Education, 2017
We present a new teaching and outreach activity based around the construction of a three-dimensional chart of isotopes using LEGO® bricks. The activity, "binding blocks", demonstrates nuclear and astrophysical processes through a seven-meter chart of all nuclear isotopes, built from over 26000 LEGO® bricks. It integrates A-Level and GCSE…
Descriptors: Science Instruction, Scientific Concepts, Nuclear Energy, Nuclear Physics
Koura, Hiroyuki – Physics Education, 2014
Three-dimensional (3D) nuclear charts were created using toy blocks, which represent the atomic masses per nucleon number and the total half-lives for each nucleus in the entire region of the nuclear mass. The bulk properties of the nuclei can be easily understood by using these charts. Subsequently, these charts were used in outreach activities…
Descriptors: Science Instruction, Charts, Toys, Manipulative Materials
Gluck, P. – Physics Education, 2010
Slinkies and soft springs readily lend themselves to experimental and theoretical investigations which are extensions of the usual high school material. We describe both the static and dynamic properties of these springs and suggest that some may be used in regular class work, while other aspects are ideal for individual projects. (Contains 9…
Descriptors: High School Students, Secondary School Science, Physics, Science Instruction
Guemez, J.; Fiolhais, C.; Fiolhais, M. – Physics Education, 2009
The use of toys in physics teaching is common. This brief review of the physics of toys intends to show that they are not only very useful in lectures and demonstrations in order to motivate students but also very interesting from a scientific point of view. However, since their physics is sometimes too cumbersome, the effect can be the opposite.…
Descriptors: Physics, Toys, Lecture Method, Science Instruction
Lapp, David R. – Physics Education, 2008
This article describes an activity that can be performed with an inexpensive plastic toy popper. The activity builds skill at analysing motion and results in the calculation of a surprisingly extreme acceleration. (Contains 1 figure.)
Descriptors: Scientific Concepts, High School Students, Secondary School Science, Science Instruction
King, Chris – Physics Education, 2002
Balls made of modelling clay (Plasticine[TM]) can be used to generate a classroom discussion about the scientific evidence used to determine the structure of the Earth. This allows pupils to appreciate how evidence is used to support hypotheses and to distinguish fact from hypothesis. It also provides opportunity to correct misconceptions held by…
Descriptors: Students, Misconceptions, Investigations, Discussion (Teaching Technique)

Sevilla, J.; And Others – Physics Education, 1991
The development of aids for teaching a general physics course to blind students is discussed. Described are how the materials should be used considering the topic of equilibrium of a rigid body. Results and improvements obtained with this method of teaching are briefly discussed. (KR)
Descriptors: Disabilities, Manipulative Materials, Models, Physics