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Jeffrey Nordine; Marcus Kubsch; David Fortus; Joseph Krajcik; Knut Neumann – Journal of Research in Science Teaching, 2024
One reason for the widespread use of the energy concept across the sciences is that energy analysis can be used to interpret the behavior of systems even if one does not know the particular mechanisms that underlie the observed behavior. By providing an approach to interpreting unfamiliar phenomena, energy provides a lens on phenomena that can set…
Descriptors: Middle School Students, Energy, Scientific Concepts, Science Instruction
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Braskén, Mats; Pörn, Ray – LUMAT: International Journal on Math, Science and Technology Education, 2021
Although one of key ideas behind the introduction of STEM (or STEAM) as a unifying concept, is to emphasize the interdisciplinary character of many real world problems, there is a non-trivial educational challenge in exceeding existing subject boundaries and implementing multidisciplinary activities into the classroom. The present case study…
Descriptors: Energy Education, Interdisciplinary Approach, Units of Study, Grade 9
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Stoeckel, Marta R. – Physics Teacher, 2018
The abstract nature of electric potential difference (voltage) can make it a difficult concept to grasp, but understanding the relative nature of voltage is central to developing a conceptual understanding of electric circuits. In laboratory situations, I see these conceptual difficulties manifest when students have difficulty placing voltmeter…
Descriptors: Energy, Energy Education, Power Technology, Scientific Concepts
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Lu, Yang; Santino, Luciano M.; Acharya, Shinjita; Anandarajah, Hari; D'Arcy, Julio M. – Journal of Chemical Education, 2017
The design and fabrication of functional scientific instrumentation allows students to forge a link between commonly reported numbers and physical material properties. Here, a two-point and four-point probe station for measuring electrical properties of solid materials is fabricated via 3D printing utilizing an inexpensive benchtop…
Descriptors: Energy, Electronics, Energy Education, Power Technology
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Wade-Jaimes, Katherine; Demir, Kadir; Qureshi, Azhar – Science Education, 2018
Modeling is considered an important scientific practice, and modeling instruction has the potential to support conceptual change in students in physics. However, when students are not taught how to think about modeling, and how to develop and use models, the learning potential of modeling may be limited. This paper argues that the use and explicit…
Descriptors: Energy Education, High School Students, Physics, Educational Strategies
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Ryoo, Kihyun; Bedell, Kristin – Journal of Research in Science Teaching, 2017
Although extensive research has shown the educational value of different types of interactive visualizations on students' science learning in general, how such technologies can contribute to English learners' (ELs) understanding of complex scientific concepts has not been sufficiently explored to date. This mixed-methods study investigated how…
Descriptors: Visualization, Energy Education, Scientific Concepts, English Language Learners
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Kitagawa, Laura – Science and Children, 2016
What is the Sun? What effect does it have on the Earth? How do we protect ourselves from the Sun's harmful rays? These are a few of the questions the author wanted her kindergarten students to explore regarding the Sun and solar energy. Using the "Next Generation Science Standards" (NGSS) framework that notes kindergarten students should…
Descriptors: Kindergarten, Energy, Radiation, Hands on Science
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Lambert-Torres, Germano; de Moraes, Carlos Henrique Valerio; Coutinho, Maurilio Pereira; Martins, Helga Gonzaga; Borges da Silva, Luiz Eduardo – European Journal of Engineering Education, 2017
This paper describes a non-classical logic course primarily indicated for graduate students in electrical engineering and energy engineering. The content of this course is based on the vision that it is not enough for a student to indefinitely accumulate knowledge; it is necessary to explore all the occasions to update, deepen, and enrich that…
Descriptors: Engineering Education, Energy, Energy Education, Power Technology
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Privat, Romain; Jaubert, Jean-Noe¨l; Berger, Etienne; Coniglio, Lucie; Lemaitre, Ce´cile; Meimaroglou, Dimitrios; Warth, Vale´rie – Journal of Chemical Education, 2016
Robust and fast methods for chemical or multiphase equilibrium calculation are routinely needed by chemical-process engineers working on sizing or simulation aspects. Yet, while industrial applications essentially require calculation tools capable of discriminating between stable and nonstable states and converging to nontrivial solutions,…
Descriptors: Energy Education, Power Technology, Scientific Concepts, Scientific Principles
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Pfister, Hans – Physics Teacher, 2014
Physics students encountering electric circuits for the first time often ask why adding more resistors to a circuit sometimes increases and sometimes decreases the resulting total resistance. It appears that these students have an inadequate understanding of current flow and resistance. Students who do not adopt a model of current, voltage, and…
Descriptors: Physics, Equipment, Energy Education, Science Equipment
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Roman, Harry T. – Technology and Engineering Teacher, 2014
A serious drawback to electric vehicles [batteries only] is the idle time needed to recharge their batteries. In this challenge, students can develop ideas and concepts for battery change-out at automotive service stations. Such a capability would extend the range of electric vehicles.
Descriptors: Motor Vehicles, Auto Mechanics, Power Technology, Energy Education
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Moynihan, Richard; van Kampen, Paul; Finlayson, Odilla; McLoughlin, Eilish – School Science Review, 2016
This article describes the development of a lesson sequence that supports secondary-level students to construct an explanatory model for electrostatic attraction using a guided enquiry method. The students examine electrostatic interactions at a macro level and explain the phenomena at the atomic level. Pre-tests, post-tests, homework assignments…
Descriptors: Secondary School Students, Concept Teaching, Scientific Concepts, Inquiry
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Duit, Reinders; Neumann, Knut – School Science Review, 2014
The energy concept is one of the most important ideas for students to understand. Looking at phenomena through the lens of energy provides powerful tools to model, analyse and predict phenomena in the scientific disciplines. The cross-disciplinary nature of the energy concept enables students to look at phenomena from different angles, helping…
Descriptors: Energy, Science Instruction, Energy Education, Teaching Methods
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Haugland, Ole Anton – Physics Teacher, 2014
The bicycle generator is often mentioned as an example of a method to produce electric energy. It is cheap and easily accessible, so it is a natural example to use in teaching. There are different types, but I prefer the old side-wall dynamo. The most common explanation of its working principle seems to be something like the illustration in Fig.…
Descriptors: Science Education, Teaching Methods, Power Technology, Energy Education
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Millar, Robin – School Science Review, 2014
A key challenge in designing a teaching programme on energy is in deciding how best to deal with the differences in how the word "energy" is used and understood in everyday discourse and in science. Many of the most important decisions and choices about energy matters, both for individuals and society, can be adequately understood from…
Descriptors: Energy, Energy Education, Teaching Methods, Science Instruction
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