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Isherwood, Matthew – Studies in Art Education: A Journal of Issues and Research in Art Education, 2021
This article engages in a conversation around the idea of queer energy; a term used by Eve Kosofsky Sedgwick to describe the nourishing and sustaining force of high and low cultural objects. In doing so, it examines the idea of disidentification as a queer reading practice integral to the formation and endurance of queer folk who must navigate…
Descriptors: LGBTQ People, Student Experience, Minority Group Students, Artists
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Samsudin, Achmad; Afif, Nur Faadhilah; Nugraha, Muhamad Gina; Suhandi, Andi; Fratiwi, Nuzulira Janeusse; Aminudin, Adam Hadiana; Adimayuda, Rizal; Linuwih, Suharto; Costu, Bayram – Journal of Turkish Science Education, 2021
This study aimed to expand PDEODE*E Tasks with the Think-Pair-Share model for reconstructing students' misconceptions on work and energy. The PDEODE*E Tasks with Think-Pair-Share model implemented for students who had not taught the concept of work and energy. The participants include 36 students of tenth grade (22 girls and 14 boys, whose ages…
Descriptors: Science Instruction, Scientific Concepts, Misconceptions, Energy
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Tofel-Grehl, Colby; Braden, Sarah; Penrod, Candace; Wheeler, Laura; Hansen, Tyler; Jones, Andrew; Chamberlain, Clayton – Science and Children, 2023
Animals depend on their surroundings for their survival. In consuming their food, animals are consuming energy. This cycling of matter and the accompanying flow of energy within an ecosystem occurs because of interactions among and between organisms. To guide students in modeling how ecosystems function, the authors share "Ecosystem…
Descriptors: Science Instruction, Teaching Methods, Standards, Energy
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Moore, Thomas – Chemical Engineering Education, 2022
It is natural to interpret entropy as a measure of energy dispersion. However, the classical, phenomenological introduction to the topic, which relies on detailed analysis of Carnot engines, obscures this interpretation. Here, we propose a modification of the classical approach, which allows the basic properties of entropy to be proven without…
Descriptors: Energy, Teaching Methods, Scientific Concepts, Science Instruction
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Açisli Çelik, Sibel – International Online Journal of Education and Teaching, 2021
In the research it was aimed to explore the attitudes and metaphorical perceptions of science, primary school and elementary school mathematics pre-service teachers towards renewable energy resources. The sample of the study consisted of 140 pre-service teachers' studying in the Science Education, Classroom Education and Elementary School…
Descriptors: Preservice Teachers, Student Attitudes, Figurative Language, Energy Conservation
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Papadopoulou, Souzana K.; Feidantsis, Konstantinos G.; Hassapidou, Maria N.; Methenitis, Spyridon – Research Quarterly for Exercise and Sport, 2021
Purpose: The aim of the present study was to identify the contribution of nutrition, physical activity (PA), and total energy intake and expenditure on body weight and composition in adolescents. Methods: Body composition, PA, and dietary intakes from 904 Greek adolescents (446 boys and 458 girls; Age: 14.6 ± 1.5 yrs), were evaluated. All…
Descriptors: Nutrition, Physical Activity Level, Adolescents, Gender Differences
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Duarte, Sergio; Lima, Nathan – Physics Education, 2021
Einstein's relation between mass and energy is perhaps the most famous equation of Physics. Despite its simplicity, the meaning of E[subscript 0] = mc[superscript 2] is not easy to grasp. Furthermore, its traditional derivations rely either on the integral of "momentum," on properties of electromagnetic radiation, or even on the…
Descriptors: Science Instruction, Science Experiments, Physics, Scientific Concepts
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Gombert, Sebastian; Di Mitri, Daniele; Karademir, Onur; Kubsch, Marcus; Kolbe, Hannah; Tautz, Simon; Grimm, Adrian; Bohm, Isabell; Neumann, Knut; Drachsler, Hendrik – Journal of Computer Assisted Learning, 2023
Background: Formative assessments are needed to enable monitoring how student knowledge develops throughout a unit. Constructed response items which require learners to formulate their own free-text responses are well suited for testing their active knowledge. However, assessing such constructed responses in an automated fashion is a complex task…
Descriptors: Coding, Energy, Scientific Concepts, Formative Evaluation
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Lee, Scott; Thomas, Joshua; Cooley, Max; Irving, Richard – Physics Teacher, 2021
Exciting examples of physics principles illuminate the power and scope of our discipline. In this paper, we discuss a conservation of energy example for an introductory course. Energy conservation is applied to bird and dinosaur eggs to derive a method to predict the incubation period and the embryonic metabolism solely from the egg geometry. The…
Descriptors: Energy Conservation, Physics, Time, Metabolism
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Cross, Rod – Physics Education, 2022
A loop-the-loop experiment is described to show how sliding friction affects motion of the ball. Conservation of energy can be used to explain the basic physics, but significant energy loss is observed in practice and expands the usefulness of this apparatus as a teaching tool.
Descriptors: Science Instruction, Science Experiments, Scientific Concepts, Concept Formation
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Ross, Keith – School Science Review, 2021
We often say food and fuels "contain" energy. It is more accurate to say that energy is stored in the "fuel-oxygen system" generated during photosynthesis. It is definitely "not" stored in fuels or food (except for the very small amount of energy that can be obtained during anaerobic respiration). Aerobic respiration…
Descriptors: Science Instruction, Energy, Botany, Scientific Concepts
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Wang, Li; Violet, Camille; DuChanois, Ryan M.; Elimelech, Menachem – Journal of Chemical Education, 2020
Minimizing the energy consumption of desalination processes is an important goal for augmenting freshwater production and mitigating water scarcity. Chemical, civil, mechanical, and environmental engineering students can derive and analyze the energy consumption of desalination processes by applying engineering fundamentals such as thermodynamics,…
Descriptors: Energy, Chemistry, Science Instruction, Engineering Education
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Yao, Jian-Xin; Liu, Yi-Xuan; Guo, Yu-Ying – Instructional Science: An International Journal of the Learning Sciences, 2023
The "Integrated Development of Key Competences" has been identified as the core idea in education to face competition in the 21st century. Similarly, reform efforts in science education emphasize the importance of integrating scientific practices and disciplinary core ideas. The learning progression (LP) is viewed as a robust tool to…
Descriptors: Science Education, Learning Trajectories, Middle School Students, Energy
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Brecha, Robert J. – Physics Education, 2021
Simple energy balance models of planetary systems are of fundamental importance to understanding equilibrium temperatures. Most textbooks that discuss energy balance take a further step and include the effects of an atmosphere on the surface temperature. It is noticeable, however, that in such discussions of planetary surface energy balance some…
Descriptors: Earth Science, Models, Science Instruction, 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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