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Ekin, Sabit; O'Hara, John F.; Turgut, Emrah; Colston, Nicole; Young, Jeffrey L. – IEEE Transactions on Education, 2021
Contribution: A do-it-yourself (DIY) light wave sensing (LWS) and communication project was developed to generate interest and clarify basic electromagnetic (EM) and wireless sensing/communication concepts among students at different education levels from middle school to undergraduate. This article demonstrates the nature of the project and its…
Descriptors: Science Education, Science Instruction, Scientific Concepts, Hands on Science
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Franse, Rooske K.; van Schijndel, Tessa J. P.; Plankman, Tamara I.; Raijmakers, Maartje E. J. – Science Education, 2021
Research on the impact of guided investigation, including verbal guidance strategies, has expanded in the recent decade, and the current work contributes to this line of research in a museum context. The current in-depth study examines the impact of verbal guidance strategies on family learning at an open-ended museum exhibit, considering…
Descriptors: Museums, Science Experiments, Exhibits, Family Involvement
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Xiantong, Yang; Mengmeng, Zhang; Xin, Song; Lan, Hou; Qiang, Wang – Journal of Baltic Science Education, 2019
Due to the vast territory, there are problems of unbalanced development of education and students' ability level in China. In order to explore the relation between regional education equity and the development of students' scientific ability, and to better promote the development of education and students' growth, it is urgent to carry out the…
Descriptors: Foreign Countries, Elementary School Students, Grade 6, Science Experiments
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Huseby, Anders; Bungum, Berit – Physics Education, 2019
Quantum physics is challenging for young students, but also a source of fascination. "Observation" is a key concept in order to understand how principles and experimental results in quantum physics differ from what we are used to in classical physics and everyday experiences. In this study we investigate how pre-university physics…
Descriptors: Observation, Secondary School Students, Quantum Mechanics, Secondary School Science
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Perea Martins, J. E. M. – Physics Education, 2019
This work proposes simple experiments to introduce some fundamental concepts of the measurement area. It associates theory and practice through a strategy where the students create a real temperature data set with an Arduino board and three LM35DZ sensors and later use mathematical software to identify theoretical concepts as measurement accuracy…
Descriptors: Scientific Concepts, Accuracy, Climate, Science Experiments
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Namchanthra, Witchayaporn; Khemmani, Supitch; Wicharn, Surawut; Plaipichit, Suwan; Pipatpanukul, Chinnawut; Puttharugsa, Chokchai – Physics Education, 2019
This paper describes the use of a smartphone's sensors to investigate the motion of a torsion pendulum to demonstrate energy conservation. The smartphone was placed on and attached to a metal disk hanging by a wire. The oscillation of the disk was measured using the smartphone's sensors to simultaneously record angular position, angular speed and…
Descriptors: Science Instruction, Physics, Motion, Energy Conservation
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Zimmerman, Tahl; Ibrahim, Mariama; Gyawali, Rabin; Ibrahim, Salam A. – Journal of Food Science Education, 2019
This laboratory activity was designed to strengthen our Food and Nutritional Science students' knowledge of biochemistry concepts and the relationship between these concepts and food science. The result was a laboratory experience in which biochemistry concepts are taught using yogurt as a model, in order to link those concepts to food safety, an…
Descriptors: Biochemistry, Foods Instruction, Nutrition Instruction, Scientific Concepts
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Lane, W. Brian – Physics Teacher, 2019
In tabletop games involving dice, it is important to ensure randomness of the dice rolls and to protect other gaming elements from being scattered by rolling dice. One way of ensuring random rolls and protecting gaming elements is to drop dice into a dice-rolling tower ("dice tower"). A dice tower is usually small (20 cm by 20 cm) and…
Descriptors: Science Instruction, Physics, Educational Games, Manipulative Materials
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McCullagh, John F. – School Science Review, 2019
The physical and chemical properties of Milk of Magnesia provide examples of chemical concepts and opportunities for investigative practical work for secondary chemistry students of all ages. Basing the lesson on the contents of that familiar blue bottle, which is probably lurking somewhere in a cupboard in most households, also showcases the role…
Descriptors: Biochemistry, Science Instruction, Secondary School Students, Pharmacy
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Ambrosino, Christine M.; Rivera, Malia Ana J. – Journal of Biological Education, 2022
This high school-level, place-based, inquiry-driven laboratory module familiarises students with techniques used to analyse animal behaviour while facilitating the development of the observational skills highlighted by the Next Generation Science Standards (NGSS). Throughout the module, students observe, quantify, and discuss local invertebrate…
Descriptors: High School Students, Place Based Education, Science Instruction, Science Laboratories
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Molz, Alexander; Kuhn, Jochen; Müller, Andreas – Physical Review Physics Education Research, 2022
Affective and cognitive outcomes of science teaching in schools may be enhanced by science outreach labs (SOLs). Particularly interesting is whether and how to connect SOL visits to in-school science learning. Recent studies--among others, in this journal--have confirmed SOLs' positive affective effects. However, research remains inconclusive…
Descriptors: Science Education, Science Laboratories, Outreach Programs, Program Effectiveness
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Orwat, Kinga; Bernard, Pawel; Migdal-Mikuli, Anna – Journal of Chemical Education, 2016
The aim of this laboratory exercise is to present a high school hands-on laboratory experiment, focused on obtaining and investigating the properties of various polymorphic forms of aluminum oxide. Amphoterism plays a key role when discussing the law of periodicity and periodic changes of acid-base properties of elements and their compounds. In…
Descriptors: Science Instruction, Secondary School Science, High School Students, Science Laboratories
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Garcia, Jennifer; Schultz, Linda D. – Journal of Chemical Education, 2016
The classic technique for sulfate analysis in an undergraduate quantitative analysis lab involves precipitation as the barium salt with barium chloride, collection of the precipitate by gravity filtration using ashless filter paper, and removal of the filter paper by charring over a Bunsen burner. The entire process is time-consuming, hazardous,…
Descriptors: Science Instruction, College Science, Undergraduate Study, Science Experiments
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Monga, Vishakha; Bussie`re, Guillaume; Crichton, Paul; Daswani, Sailesh – Journal of Chemical Education, 2016
Interdisciplinary experiments are being offered in upper-division chemistry laboratory courses in an attempt to encourage students to make a connection between techniques learned in one discipline to affirm chemical principles that form the basis of chemical reactions in another chemistry discipline. A new interdisciplinary experiment is described…
Descriptors: College Science, Undergraduate Study, Science Instruction, Kinetics
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Donnell, Anna M.; Nahan, Keaton; Holloway, Dawone; Vonderheide, Anne P. – Journal of Chemical Education, 2016
Arsenic is a toxic element to which humans are primarily exposed through food and water; it occurs as a result of human activities and naturally from the earth's crust. An experiment was developed for a senior level analytical laboratory utilizing an Inductively Coupled Plasma-Mass Spectrometer (ICP-MS) for the analysis of arsenic in household…
Descriptors: Hazardous Materials, Science Experiments, Science Laboratories, Spectroscopy
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