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Showing 1 to 15 of 55 results Save | Export
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Tytler, Russell; Prain, Vaughan – Teaching Science, 2022
Despite longstanding calls to integrate school science and mathematics, concerns remain about how to achieve high-quality learning in both subjects. In reporting on a teaching approach that aimed to achieve this outcome, the authors focus particularly on the teacher's role. The Interdisciplinary Mathematics and Science project (IMS), an Australian…
Descriptors: Interdisciplinary Approach, Mathematics Education, Science Education, Teaching Methods
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Venkatesh, Ishwariya; Makky, Khadijah – American Biology Teacher, 2020
The field of epigenetics is progressing rapidly and becoming indispensable to the study of fundamental gene regulation. Recent advances are redefining our understanding of core components that regulate gene expression during development and in human diseases. Scientific knowledge on the importance of epigenetic regulation is now well known and…
Descriptors: Science Instruction, Teaching Methods, Genetics, Science Education
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Chan, Chin Han; Fellows, Christopher M.; Hess, Michael; Hiorns, Roger; Hoven, Voravee P.; Russell, Gregory T.; dos Santos, Cla´udio G.; S?turcova´, Adriana; Theato, Patrick – Journal of Chemical Education, 2017
Polymer education relies on generally agreed terminology and nomenclature rules. The Polymer Division of the International Union of Pure and Applied Chemistry (IUPAC) generates and recommends such rules for naming processes and materials in polymer science. It is the goal of IUPAC that these recommendations be applied in polymer science curricula…
Descriptors: Plastics, Science Education, Chemistry, Academic Standards
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Kenneth Rotheram – School Science Review, 2014
The Teaching, Learning and Creativity (TLC) model suggests a wide variety of activities in three different phases. In the Teaching Phase, the teacher will discuss, demonstrate key experiments and provide data for pupils to interpret. In the Learning Phase, pupils will analyse text, do a simple test and write an essay. In the Creativity Phase,…
Descriptors: Creativity, Models, Science Education, Teaching Models
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DeFina, Anthony V. – Science Teacher, 2017
To promote teaching science through inquiry, the author wanted to use his experience in the Galápagos to design a lesson that allows students to immerse themselves in the essential science and engineering practices identified in the "Next Generation Science Standards," as they ask questions; analyze and interpret data; engage in argument…
Descriptors: Science Education, Science Instruction, Science Process Skills, Evolution
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Biddy, Quentin – Science Teacher, 2015
As society becomes more technological, the need for scientific literacy grows . Part of scientific literacy is understanding the nature of science, which can be revealed, in part, by learning the historical context of current science concepts. History of science can be taught using scientific inquiry, scientific argumentation, and authentic…
Descriptors: Scientific Principles, Scientific Literacy, Scientific Concepts, Teaching Models
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Statham, Mick – Primary Science, 2014
In a previous article (2014), this author outlined the practical use of visualisation as a way of starting lessons. The purpose of this is to create interest, hold attention, and provide some mental experience of the conceptual learning to follow. In this way, links can be created between the teaching activity in the first few minutes of the…
Descriptors: Creative Thinking, Visualization, Teaching Methods, Relaxation Training
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Foster, Collin – Primary Science, 2014
Evolution offers an intellectually satisfying and extremely well-supported explanation for the diversity of life in the natural world, its similarities and differences, how changes occur and how new life forms have developed. There are plenty of reasons to anticipate the teaching of evolution with exhilaration. In recent years, the issue of…
Descriptors: Science Instruction, Science Curriculum, Teaching Methods, Teaching Models
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Romine, William L.; Banerjee, Tanvi – Journal of Science Education and Technology, 2012
Exemplary science instructors use inquiry to tailor content to student's learning needs; traditional textbooks treat science as a set of facts and a rigid curriculum. Publishers now allow instructors to compile pieces of published and/or self-authored text to make custom textbooks. This brings numerous advantages, including the ability to produce…
Descriptors: Evidence, Student Attitudes, Textbooks, Teaching Models
Brydolf, Carol – Education Digest: Essential Readings Condensed for Quick Review, 2012
Cost-effective, easily replicated program is a win-win situation for high schoolers who teach science and for their elementary students. The thank-you letter from Leslie, a grade-schooler in San Diego County's Ramona Unified School District, speaks volumes about the excitement generated by "Celebrate Science"--an innovative,…
Descriptors: Elementary School Students, High School Students, Elementary School Science, Science Instruction
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Angle, Julie – Science Scope, 2011
The recently released document "A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" emphasizes the importance of engaging students in practices of science and engineering to help them understand how scientific knowledge about the natural world develops. The document identifies eight essential…
Descriptors: Evidence, Investigations, Elementary Secondary Education, Motion
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Bybee, Rodger W. – Science Scope, 2011
In this article, the author presents the science and engineering practices from the recently released "A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" (NRC 2011). The author recognizes the changes implied by the new framework, and eventually a new generation of science education standards will present new…
Descriptors: Elementary Secondary Education, Engineering, Technology Education, Science Education
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Gonen, Selahattin; Kocakaya, Serhat – Turkish Online Journal of Distance Education, 2010
Students enter the classrooms with a preexisting knowledge of science concepts. These science concepts sometimes show inconsistency with the accepted ones by the scientists and called as misconceptions. Studies applied science field have to get possession of abilities that not only detect these misconceptions also help to solve these problems.…
Descriptors: Physics, Science Education, Science Curriculum, Misconceptions
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Richards-Babb, Michelle; Penn, John H.; Withers, Michelle – Journal of Chemical Education, 2014
Providing chemistry graduate students with opportunities to learn about evidence-based teaching and to practice teaching skills in a mentored environment is crucial to their professional development. Herein is described the model for a graduate-level teaching practicum course specifically focused on the chemistry discipline. This course addressed…
Descriptors: Practicums, Science Education, Graduate Students, Professional Development
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Hallstrom, Jonas; Gyberg, Per – International Journal of Technology and Design Education, 2011
The history of technology can play an important role in illuminating the fundamentals of technological change, but it is important that technology teachers, teacher educators, curriculum developers and researchers can be provided with good analytical tools for this purpose. In this article, we propose a model of techno-historical interplay, as a…
Descriptors: Technology Education, Science Education, Curriculum Development, Curriculum Enrichment
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