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Goldston, M. Jenice; Pan, Shanlin; Boykin, Karen; Allison, Elizabeth; Wehby, Scott – Science Teacher, 2016
Nanoscience development affects almost every discipline of science, engineering, and technology. Not surprisingly, "the science of small" is also finding its way into science classrooms. In general, "nano" refers to a billionth of a meter--about 1/50,000 the width of a hair follicle. The term "nanoparticle" usually…
Descriptors: Molecular Structure, Technology, Chemistry, Science Instruction
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Askew, Jennifer; Gray, Ron – Science Teacher, 2016
British scientist John Dalton (1766-1844), French scientist Joseph Louis Gay-Lussac (1778-1850), and Italian scientist Amedeo Avogadro (1776-1856) are familiar to many chemistry students. Such students may understand the importance of Dalton's atomic theory, model how Gay-Lussac's law relates the pressure and the temperature of a gas, and use…
Descriptors: Science Instruction, Chemistry, Molecular Structure, Scientific Concepts
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Murphy, Beth; Hedwall, Melissa; Dirks, Andrew; Stretch, Elizabeth – Science Teacher, 2017
Reading provides a unique window into the history and nature of science and the norms of scientific communication and supports students in developing critical-reading skills in engaging ways. Effective use of reading promotes a spirit of inquiry and an understanding of science concepts while also addressing expectations of the Common Core State…
Descriptors: Units of Study, Molecular Structure, Science Education History, Content Area Reading
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Lotter, Christine; Taylor, Laurie – Science Teacher, 2016
In the 2 day lesson presented in this article, students explain how ionic substances interact in solutions by developing and revising their own explanatory models. The lesson engaged students in three-dimensional learning through creating and revising their own models to explain the interaction of ionic substances and polar molecules in a closed…
Descriptors: Molecular Structure, Science Activities, Science Instruction, Scientific Methodology
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Wilcox, Jesse; Kruse, Jerrid; Herman, Benjamin – Science Teacher, 2015
Even though density is taught in middle school, high school students often struggle to understand that the density of a substance is consistent regardless of amount. This is because many high school students know density = mass/volume, but do not have the conceptual understanding necessary to explain density-related phenomena. The scaffolded…
Descriptors: Scientific Concepts, Misconceptions, Science Instruction, Scientific Principles
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Aydin, Sevgi; Hanuscin, Deborah L. – Science Teacher, 2011
In this article, the authors describe a lesson that uses the 5E Learning Cycle to help students not only understand the atomic model but also how Ernest Rutherford helped develop it. The lesson uses Rutherford's gold foil experiment to focus on three aspects of the nature of science: the empirical nature of science, the tentativeness of scientific…
Descriptors: Scientific Principles, Learning Processes, Science Instruction, Nuclear Energy
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Zrelak, Yoshi; McCallister, Gary – Science Teacher, 2009
While not organic in nature, quick-"growing" artificial membranes can be a profound visual aid when teaching students about cellular processes and the chemical nature of membranes. Students are often intrigued when they see biological and chemical concepts come to life before their eyes. In this article, the authors share their approach to growing…
Descriptors: Visual Aids, Chemistry, Biology, Science Instruction
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Wise, Alyssa; Schank, Patricia; Stanford, Tina; Horsma, Geri – Science Teacher, 2009
In this article, the authors provide a brief overview of the emerging field of nanoscience and why it is an important area of education. They next explain the science behind the new nanoparticulate sunscreens, describe the different elements of the unit, and reflect on some of the opportunities and challenges of teaching nanoscience at the high…
Descriptors: High Schools, Secondary School Science, Science Instruction, Scientific Principles