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Yaseen, Zeynep; Aubusson, Peter – Research in Science Education, 2020
This article describes an investigation into teaching and learning with student-generated animations combined with a representational pedagogy. In particular, it reports on interactive discussions that were stimulated by the students' own animations as well as their critiques of experts' animations. Animations representing views of states of…
Descriptors: Animation, High School Students, Grade 11, Secondary School Science
Seibert, Johann; Kay, Christopher W. M.; Huwer, Johannes – Journal of Chemical Education, 2019
Given that students are constantly communicating and documenting special experiences in their social and private lives with digital devices, we suggest that this behavior could be used to record and deepen learning experiences-such as visualizing reactions at the molecular level-in a chemistry class. An example would be the creation of stop-motion…
Descriptors: Science Instruction, Chemistry, Science Experiments, Educational Technology
Diget, C. Aa.; Pastore, A.; Leech, K.; Haylett, T.; Lock, S.; Sanders, T.; Shelley, M.; Willett, H. V.; Keegans, J.; Sinclair, L.; Simpson, E. C. – Physics Education, 2017
We present a new teaching and outreach activity based around the construction of a three-dimensional chart of isotopes using LEGO® bricks. The activity, "binding blocks", demonstrates nuclear and astrophysical processes through a seven-meter chart of all nuclear isotopes, built from over 26000 LEGO® bricks. It integrates A-Level and GCSE…
Descriptors: Science Instruction, Scientific Concepts, Nuclear Energy, Nuclear Physics
Kin, Ng Hong; Ling, Tan Aik – Teaching Science, 2016
The concept of specificity of enzyme action can potentially be abstract for some students as they fail to appreciate how the three-dimensional configuration of enzymes and the active sites confer perfect fit for specific substrates. In science text books, the specificity of enzyme-substrate binding is typically likened to the action of a lock and…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Models
Farmer, Jim – Australian Senior Mathematics Journal, 2014
This article reviews the famous "matching problem," with a particular focus on the expected number of objects that are correctly placed. The author discusses the following topics: three versions suitable for teaching the matching problem in the classroom; the solution to the matching problem; the use of the strong form of mathematical…
Descriptors: Foreign Countries, Secondary School Mathematics, Mathematics Instruction, Logical Thinking
Teplá, Milada; Klímová, Helena – Biochemistry and Molecular Biology Education, 2015
Teaching the subject of the electron transport chain is one of the most challenging aspects of the chemistry curriculum at the high school level. This article presents an educational program called "Electron Transport Chain" which consists of 14 visual animations including a biochemistry quiz. The program was created in the Adobe Flash…
Descriptors: Visual Aids, Animation, Computer Uses in Education, Teaching Methods
Kamp, Brandi L.; Deaton, Cynthia C. M. – Science Activities: Classroom Projects and Curriculum Ideas, 2013
Learning about microscopic things, such as cells, can often be mundane to students because they are not able to see or manipulate what they are learning about. Students often recall learning about cell division through memorization--thus they find it tedious and dull. Few opportunities exist that allow students to explore and manipulate cells or…
Descriptors: Science Instruction, Scientific Concepts, Learning Activities, Learner Engagement
Moore, Emily B.; Chamberlain, Julia M.; Parson, Robert; Perkins, Katherine K. – Journal of Chemical Education, 2014
Developing fluency across symbolic-, macroscopic-, and particulate-level representations is central to learning chemistry. Within the chemistry education community, animations and simulations that support multi-representational fluency are considered critical. With advances in the accessibility and sophistication of technology,…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
Thornton, Michael G.; Thornton, Timothy R.; Ernst, Jeremy V.; Clark, Aaron C. – Technology and Engineering Teacher, 2014
Technological advances continue to reshape the skill sets necessary for students to succeed both in the classroom and in the workforce. The ability to communicate information verbally and graphically can be viewed as a necessary skill that should be developed in a secondary technology education curriculum (Silva, 2008). This article outlines a…
Descriptors: Fundamental Concepts, Animation, Technology Education, Secondary School Science
Prilliman, Stephen G. – Journal of Chemical Education, 2014
The College Board's recently revised curriculum for advanced placement (AP) chemistry places a strong emphasis on conceptual understanding, including representations of particle phenomena. This change in emphasis is informed by years of research showing that students could perform algorithmic calculations but not explain those calculations…
Descriptors: Science Instruction, Secondary School Science, High Schools, College Science
Henriksen, Ellen K.; Bungum, Berit; Angell, Carl; Tellefsen, Catherine W.; Frågåt, Thomas; Bøe, Maria Vetleseter – Physics Education, 2014
In this article, we discuss how quantum physics and relativity can be taught in upper secondary school, in ways that promote conceptual understanding and philosophical reflections. We present the ReleQuant project, in which web-based teaching modules have been developed. The modules address competence aims in the Norwegian national curriculum for…
Descriptors: Quantum Mechanics, Physics, Secondary School Science, Secondary School Curriculum
Chai, David; Garcia, Alejandro L. – Physics Teacher, 2011
Animation has become enormously popular in feature films, television, and video games. Art departments and film schools at universities as well as animation programs at high schools have expanded in recent years to meet the growing demands for animation artists. Professional animators identify the technological facet as the most rapidly advancing…
Descriptors: Animation, Teaching Methods, Artists, Science Instruction
Hoban, Garry; Nielsen, Wendy – Teaching Science, 2010
"Slowmation" (abbreviated from "Slow Animation") is a simplified way of making an animation that enables students to create their own as a new way of learning about a science concept. When students make a slowmation, they create a sequence of five multimodal representations (the 5 Rs) with each one contributing to the learning…
Descriptors: Animation, Hands on Science, Teaching Methods, Scientific Concepts
Liu, Dennis – CBE - Life Sciences Education, 2007
It seems hard to believe that Dolly the cloned sheep was born 10 years ago, kindling furious arguments over the prospects and ethics of cloning a human. Today, the controversy over cloning is entwined, often confused, with concerns over the use of human embryonic stem cells. Most people are unclear what cloning is, and they know even less when it…
Descriptors: Ethics, Genetics, Science Instruction, Scientific Research
Sariçayir, Hakan; Sahin, Musa; Üce, Musa – EURASIA Journal of Mathematics, Science & Technology Education, 2006
Since their introduction into schools, educators have tried to utilize computers in classes in order to make difficult topics more comprehensible. Chemistry educators, when faced with the task of teaching a topic that cannot be taught through experiments in a laboratory, resort to computers to help students visualize difficult concepts and…
Descriptors: Computer Uses in Education, Animation, Computer Simulation, Educational Technology
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