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Titlebook: Connecting Science and Engineering Education Practices in Meaningful Ways; Building Bridges Leonard A. Annetta,James Minogue Book 2016 Spri

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發(fā)表于 2025-3-21 19:54:27 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Connecting Science and Engineering Education Practices in Meaningful Ways
副標(biāo)題Building Bridges
編輯Leonard A. Annetta,James Minogue
視頻videohttp://file.papertrans.cn/236/235601/235601.mp4
概述Addresses the Next Generation Science Standards (NGSS) inclusion of Engineering Practices.Provides practical tried-and-true examples from an international perspective.Takes a balanced look at the succ
叢書名稱Contemporary Trends and Issues in Science Education
圖書封面Titlebook: Connecting Science and Engineering Education Practices in Meaningful Ways; Building Bridges Leonard A. Annetta,James Minogue Book 2016 Spri
描述.The need for a scientifically literate citizenry, one that is able to think critically and engage productively in the engineering design process, has never been greater. By raising engineering design to the same level as scientific inquiry the Next Generation Science Standards’ (NGSS) have signaled their commitment to the integration of engineering design into the fabric of science education. This call has raised many critical questions...How well do these new standards represent what actually engineers do? Where do the deep connections among science and engineering practices lie? To what extent can (or even should) science and engineering practices co-exist in formal and informal educational spaces? Which of the core science concepts are best to leverage in the pursuit of coherent and compelling integration of engineering practices? What science important content may be pushed aside? ?This book, tackles many of these tough questions head on..All of the contributing authors consider the same core question: Given the rapidly changing landscape of science education, including the elevated status of engineering design, what are the best approaches to the effective integration of the
出版日期Book 2016
關(guān)鍵詞Engineering design practices; Engineering education; Game design education; Learning engineering; Learni
版次1
doihttps://doi.org/10.1007/978-3-319-16399-4
isbn_softcover978-3-319-79228-6
isbn_ebook978-3-319-16399-4Series ISSN 1878-0482 Series E-ISSN 1878-0784
issn_series 1878-0482
copyrightSpringer International Publishing Switzerland 2016
The information of publication is updating

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Museum Design Experiences That Recognize New Ways to Be Smart to generate their own divergent solutions. In this chapter, we share insights into how the quality of the invitation into engineering activities allows different learners to experience success and to exhibit skill sets and expertise that aren’t always privileged in school. We also explore how museu
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Five Principles for Supporting Design Activityoped using rigorous design principles and each involves a substantive science problem that requires students to mathematize some construct (i.e., design a model) to meet a client’s need. Further, given the selected MEAs have been utilized in a wide variety of settings (e.g., urban, rural, suburban,
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Instrumental STEM (iSTEM): An Integrated STEM Instructional Modelsts must understand, build, modify, and maintain tools and instruments in order to do their jobs. This means that if a science teacher intends to teach a student how to do science like practicing scientists, then the instruction would include building, modifying, and maintaining tools and instrument
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Robotics Education Done Right: Robotics Expansion?, A STEAM Based Curriculaher as well as the motors and sensors already assembled in order to facilitate construction. These kits have only a few set ways things can go together and all the pieces that are premade for them to fit nicely together. There are typically only a few ways these pieces can adjoin and, therefore, whi
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Infusing Engineering Concepts into High School Science: Opportunities and Challengescience, which include what engineering concepts are appropriate for high school science and how these concepts can be infused into instruction. Since the goal of infusing engineering concepts is to facilitate both the learning of science content and engineering, one of the findings from the project
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