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Showing 1 to 15 of 58 results Save | Export
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Leonora Kaldaras; Hope O. Akaeze; Joseph Krajcik – Journal of Research in Science Teaching, 2024
Chemical bonding is central to explaining many phenomena. Research in chemical education and the Framework for K-12 Science Education (the "Framework") argue for new approaches to learning chemical bonding grounded in (1) using ideas of the balance of electric forces and energy minimization to explain bond formation, (2) using learning…
Descriptors: Science Education, Academic Standards, Chemistry, Energy
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LeGresley, Sarah E.; Delgado, Jennifer A.; Bruner, Christopher R.; Murray, Michael J.; Fischer, Christopher J. – Physical Review Physics Education Research, 2019
Here we demonstrate the benefits of a new curriculum for introductory calculus-based physics that motivates classical mechanics using a modified version of Hamiltonian mechanics. This curriculum shifts the initial focus of instruction away from forces and the associated vector mathematics, which are known to be problematic for students, to the…
Descriptors: Undergraduate Students, College Science, Science Instruction, Introductory Courses
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Binder, P.-M.; Collins, Topaz P.; Blacksmith, Kristal – Physics Teacher, 2020
The purpose of this paper is to describe a three-year limited-run offer of an energy science certificate in the University of Hawaii at Hilo campus, along with lessons learned that can be of use to other institutions considering comparable programs. Energy science is a loosely defined discipline that traditionally straddles physics and mechanical,…
Descriptors: Physics, Energy, Science Instruction, Science Curriculum
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Onur Yalçin; Fatma Sadik – Journal of Baltic Science Education, 2024
This research is a needs analysis study aimed at developing a curriculum based on an interdisciplinary context-based learning approach within the 10th-grade physics course, focusing on the electricity and magnetism unit. The research was designed according to the case study model and data were collected from expert, teacher, and student sample…
Descriptors: Curriculum Development, Science Curriculum, Physics, Interdisciplinary Approach
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Baquete, Aguiar Muambalane; Grayson, Diane; Mutimucuio, Inocente Vasco – International Journal of Science Education, 2016
Indigenous knowledge is at risk of being lost in many parts of the world. It is important to find ways to preserve it for both cultural and practical reasons, since it is often well-suited to addressing local needs using available resources. If indigenous knowledge can be incorporated into school science curricula, it can also provide familiar…
Descriptors: Indigenous Knowledge, Physics, Scientific Concepts, Interviews
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Preston, Christine; Hubber, Peter; Bondurant-Scott, Michele; Gunesekere, Ishara – Teaching Science, 2020
Constructing Direct Current (DC) electric circuits is simple and engaging for primary students, but that is not all there is to learning about electricity. Mandatory learning in the Australian Curriculum: Science (ACARA, 2018) expects Year 6 students to explain some of the processes underlying electric circuits. The abstract nature of key…
Descriptors: Energy, Teaching Methods, Elementary School Students, Science Curriculum
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Wiener, Gerfried J.; Woithe, Julia; Brown, Alexander; Jende, Konrad – Physics Education, 2016
In the context of the recent re-start of CERN's Large Hadron Collider (LHC) and the challenge presented by unidentified falling objects (UFOs), we seek to facilitate the introduction of high energy physics in the classroom. Therefore, this paper provides an overview of the LHC and its operation, highlighting existing education resources, and…
Descriptors: Physics, Science Instruction, Energy, Science Curriculum
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LoPresto, Michael C. – Physics Education, 2016
What follows is a description of the procedure for and results of a simple experiment on the formation of impact craters designed for the laboratory portions of lower mathematical-level general education science courses such as conceptual physics or descriptive astronomy. The experiment provides necessary experience with data collection and…
Descriptors: Physics, Experiments, Science Instruction, Science Curriculum
Friedman, Lawrence B.; Margolin, Jonathan; Swanlund, Andrew; Dhillon, Sonica; Liu, Feng – American Institutes for Research, 2017
Playground Physics is a technology-based application and accompanying curriculum designed by New York Hall of Science (NYSCI) to support middle school students' science engagement and learning of force, energy, and motion. The program includes professional development, the Playground Physics app, and a curriculum aligned with New York State…
Descriptors: Middle School Students, Science Instruction, Secondary School Science, Physics
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Haglund, Jesper; Jeppsson, Fredrik; Schönborn, Konrad J. – Research in Science Education, 2016
Integration of technology, social learning and scientific models offers pedagogical opportunities for science education. A particularly interesting area is thermal science, where students often struggle with abstract concepts, such as heat. In taking on this conceptual obstacle, we explore how hand-held infrared (IR) visualization technology can…
Descriptors: Foreign Countries, Photography, Energy, Physics
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Tracy, Charles – School Science Review, 2014
The National Curriculum for England has been revised and the statements on energy have some new phrasing and some new ideas. In this article, I will reflect on how these changes might be beneficial, relieving some of the strictures of previous drafts and providing opportunities to talk about energy in new, more constructive ways. I will discuss…
Descriptors: Foreign Countries, Science Education, Energy, Scientific Concepts
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Krajcik, Joe – Science and Children, 2013
What should all students know about the physical sciences? Why should all students have a basic understanding of these ideas? An amazing number of new scientific breakthroughs have occurred in the last 20 years that impact daily lives. This article focuses on the "Next Generation Science Standards" (NGSS) disciplinary core ideas in…
Descriptors: Physical Sciences, Science Instruction, Scientific Concepts, Engineering
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Donovan, D. A.; Atkins, L. J.; Salter, I. Y.; Gallagher, D. J.; Kratz, R. F.; Rousseau, J. V.; Nelson, G. D. – CBE - Life Sciences Education, 2013
We report on the development of a life sciences curriculum, targeted to undergraduate students, which was modeled after a commercially available physics curriculum and based on aspects of how people learn. Our paper describes the collaborative development process and necessary modifications required to apply a physics pedagogical model in a life…
Descriptors: Physics, Botany, Biology, Educational Change
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Fung, Dennis; Lui, Wai-mei – International Journal of Science Education, 2016
This paper, through discussion of a teaching intervention at two secondary schools in Hong Kong, demonstrates the learning advancement brought about by group work and dissects the facilitating role of teachers in collaborative discussions. One-hundred and fifty-two Secondary Two (Grade 8) students were divided into three pedagogical groups, namely…
Descriptors: Teacher Role, Science Instruction, Science Education, Group Activities
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Taber, Keith S. – Physics Education, 2011
Teaching about the nature of science is seen as a priority within science education, and has also been highlighted as a suitable context for challenging the most able ("gifted") learners at secondary school level. This article discusses a practical session designed to introduce the idea of physical (natural) laws. The session asks…
Descriptors: Scientific Principles, Science Instruction, Teaching Methods, Secondary School Science
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