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Showing 1 to 15 of 89 results Save | Export
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Lisensky, George; Dauzvardis, Fabian; Jacquez, Tess – Journal of Chemical Education, 2021
Chemical energy storage and use is a critical part of a sustainable world. In this laboratory experiment, students construct and use an inexpensive hydrogen fuel cell to power a calculator or a clock. The reusable cells are prepared from plastic syringes and a nickel mesh that is coated with a palladium metal catalyst by electroless deposition.…
Descriptors: Energy, Introductory Courses, Chemistry, Science Experiments
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Sullivan, Kelley D. – Physics Teacher, 2019
The ubiquitous bouncy ball, or "superball," is an engaging child's toy that has endured for more than 50 years. But what makes a bouncy ball so uniquely suited to its name? Steel balls, for example, are more highly elastic than are butadiene bouncy balls. Yet it is butadiene balls, and not steel balls, that appear in toy stores and…
Descriptors: Science Instruction, Physics, Science Activities, Toys
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Karbowiak, Michal; Wibig, Tadeusz; Alvarez-Castillo, David; Beznosko, Dmitriy; Duffy, Alan R.; Góra, Dariusz; Homola, Piotr; Kasztelan, Marcin; Niedzwiecki, Michal – Physics Education, 2020
The Cosmic-Ray Extremely Distributed Observatory (CREDO) is the project to search and study ultra high-energy cosmic ray particles from deep space producing simultaneous extensive air showers over the entire exposed surface of the Earth. The concept of the CREDO infrastructure assumes absorbing all kinds of cosmic ray data from any apparatus all…
Descriptors: Science Instruction, Radiation, Science Activities, Energy
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Stilwell, Matthew D.; Yao, Chunhua; Vajko, Dale; Jeffery, Kelly; Powell, Douglas; Wang, Xudong; Gillian-Daniel, Anne Lynn – Science Teacher, 2021
What if "every breath you take, every move you make" (Sting 1983) could be harnessed to produce renewable energy? Triboelectric nanogenerators (TENGs) are state-of-the-art devices researchers are studying to do just that--convert kinetic energy into electrical energy at the source (Saurabh Rathore 2018). This type of electrical energy is…
Descriptors: Science Instruction, Energy, Power Technology, Science Experiments
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Baysal, Emine Akkas; Yörük, Ali Osman; Ocak, Ijlal – Journal of Science Learning, 2022
This research aims to develop students' scientific process and innovative thinking skills using digital activities in distance and face-to-face education. A total of 12 sixth-grade students in a primary school participated in the study. The research was action research. The analysis was carried out in the "Transmission of Electricity"…
Descriptors: Grade 6, Science Instruction, Science Process Skills, Thinking Skills
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Cybulskis, Viktor J.; Gawecki, Piotr; Zvinevich, Yury; Gounder, Rajamani; Ribeiro, Fabio H. – Journal of Chemical Education, 2021
A versatile and portable apparatus was developed to demonstrate exciting visual displays of catalytic phenomena that introduce basic concepts in catalysis, renewable energy, and chemical safety, in order to pique scientific curiosity in a variety of audiences including middle and high school students, undergraduate and graduate students, and the…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Concept Formation
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Kye, Hannah – Science and Children, 2019
In this article, second graders learn the basics of engineering through an exploration of magnetic levitation (maglev) technology. The author designed and taught the lessons to a class of 26 students enrolled in a month-long summer science program. The maglev lessons took place over three mornings (15 minutes for the first lesson and 40 minutes…
Descriptors: Grade 2, Engineering Education, Magnets, Summer Science Programs
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Kaur, Tejinder; Blair, David; Moschilla, John; Zadnik, Marjan – Physics Education, 2017
The Einstein-First project approaches the teaching of Einsteinian physics through the use of physical models and analogies. This paper presents an approach to the teaching of quantum physics which begins by emphasising the particle-nature of light through the use of toy projectiles to represent photons. This allows key concepts including the…
Descriptors: Science Instruction, Physics, Scientific Principles, Probability
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Bonanno, A.; Bozzo, G.; Grandinetti, M.; Sapia, P. – Physics Education, 2016
Several studies have showed the subsistence, even in students enrolled in scientific degree courses, of spontaneous ideas regarding the motion of bodies that conflict with Newton's laws. One of the causes is related to the intuitive preconceptions that students have about the role of friction as a force. In fact, in real world novices do not…
Descriptors: Physics, Science Instruction, Science Experiments, Foreign Countries
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Barbiric, Dora; Tribe, Lorena; Soriano, Rosario – Journal of Chemical Education, 2015
In this laboratory, students calculated the nutritional value of common foods to assess the energy content needed to answer an everyday life application; for example, how many kilometers can an average person run with the energy provided by 100 g (3.5 oz) of beef? The optimized geometries and the formation enthalpies of the nutritional components…
Descriptors: Chemistry, Energy, Food, Science Laboratories
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Falloon, Garry – Journal of Science Education and Technology, 2017
Considerable work over many years has explored the contribution technology can make to science learning, at all levels of education. In the school sector, historically this has focused on the use of fixed, desktop-based or semi-mobile laptop systems for purposes such as experiment data collection or analysis, or as a means of engaging or…
Descriptors: Science Instruction, Educational Technology, Technology Uses in Education, Handheld Devices
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Davies, Tony – Primary Science, 2014
Teaching children about circuits and the way electricity works is a "tricky business" because it is invisible. Just imagine all eyes are on the teacher as he or she produces for the class what looks like a ping-pong ball and then, with a wave of their hand, the incredible happens! This wonderful white sphere begins to glow red and a…
Descriptors: Science Instruction, Elementary School Science, Electronics, Scientific Concepts
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Hauge, B. L.; Helseth, L. E. – European Journal of Physics, 2012
Electromagnetic resonators are often used to detect foreign materials. Here we present a simple experiment for the measurement of liquid level. The resonator, consisting of a coil and a capacitor, is brought to resonance by an external magnetic field source, and the corresponding resonance frequency is determined using Fourier analysis combined…
Descriptors: Science Activities, Physics, Science Experiments, Science Instruction
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Froehle, Peter; Miller, Charles H. – Physics Teacher, 2012
An interesting, quick, and inexpensive lab that we do with our students is to tape one end of a string just less than halfway around the back side of a uniform solid cylinder m[subscript 1] and attach the other end of the string to a mass m[subscript 2] that is below a pulley (Fig. 1). Data can be collected using either an Ultra Pulley (Fig. 2) or…
Descriptors: Energy, Misconceptions, Conservation (Concept), Laboratory Experiments
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Keeley, Page – Science and Children, 2015
After completing a science unit on transfer of energy, including how chemical energy from a battery is converted to electrical energy; electrical circuits; and transformation of energy into sound, light, or heat; the students in Mrs. Finlay's fourth-grade science class were challenged to use what they learned to solve a problem. The students…
Descriptors: Scientific Concepts, Engineering Education, Formative Evaluation, Energy
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