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Marcum-Dietrich, Nanette; Kerlin, Steve; Staudt, Carolyn; Daniels, Melinda – Science Teacher, 2018
Science becomes engaging when students know that what they learn in the classroom relates to their own lives and communities. This article describes a project in which students use field exploration and online software to design virtual solutions to improve the hydrology of their school yard. The project is called Teaching Environmental…
Descriptors: Water, Environmental Education, Environmental Research, Sustainable Development
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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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Wilsey, Matthew; Kloser, Matthew – Science Teacher, 2015
Imagine middle and high school science classes without a science fair. Participation in science fairs is declining (Harmon 2011), a trend that some teachers, parents, and students find disturbing. The authors opine that the decline in science fairs calls for critically reviewing the potential disconnect between the aims and outcomes of science…
Descriptors: Science Fairs, Student Projects, Middle School Students, High School Students
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Ortolano, Girolamo; Finn, Julia; Ortolano, Leonard – Science Teacher, 2017
In this activity, students learned scientific practices and evidence-based reasoning by formulating and testing hypotheses about factors affecting human reaction time and examining those hypotheses with data from ruler-drop tests. The project aligns with all eight of the science and engineering practices (SEP) embodied in the "Next Generation…
Descriptors: Science Activities, Science Process Skills, Hypothesis Testing, Reaction Time
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Lederman, Judith; Gnanakkan, Dionysius; Bartels, Selina; Lederman, Norman – Science Teacher, 2015
Many students enter high school with some science knowledge and experience doing investigations but often know little about the nature of science (NOS) or how the knowledge is developed (i.e., science practices). As science teachers, we need to get students excited about science as quickly as possible with activities that introduce the practices…
Descriptors: Secondary School Science, High School Students, Science Instruction, Science Activities
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Wheeler, Lindsay B.; Whitworth, Brooke A.; Gonczi, Amanda L. – Science Teacher, 2014
The number of students majoring in science, technology, engineering, and math (STEM) is declining due in part to a lack of student interest (Fairweather 2008; NRC 2012; PCAST 2010). One reason may be the difference between how science is done in school and how it is done in the field (Osborne, Simon, and Collins 2003). An interdisciplinary…
Descriptors: Engineering Technology, Student Interests, Science Interests, STEM Education
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Putti, Alice – Science Teacher, 2012
This guided inquiry activity was developed to help students "view" an equilibrium system from the particulate level and make connections to their macroscopic observations. Part I helps students observe a physical equilibrium system in which water is transferred between two larger containers. In Part II, students examine what happens to a chemical…
Descriptors: Chemistry, Science Activities, Science Course Improvement Projects, Science Instruction
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Trautmann, Nancy; Fee, Jennifer; Kahler, Phil – Science Teacher, 2012
What bird species live in your area? Which migrate and which stay year-round? How do bird populations change over time? Citizen science provides the essential tools to address these questions and more. With ever-growing databases such as Project FeederWatch and eBird, students can connect with people around the world as they make observations,…
Descriptors: Environmental Education, Investigations, Ornithology, Science Course Improvement Projects
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Smith, Jennifer – Science Teacher, 2010
Many first-year chemistry students have memorized the steps of the "scientific method" and can recite them without any prompting. But when introduced to controlled, independent, and dependent variables, they hit a brick wall. Therefore, the author of this article created a lesson that allows students to determine the fastest way to dissolve a…
Descriptors: Scientific Methodology, Chemistry, Science Instruction, Hands on Science
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Beard, Lisa; Ciesielski, Peter; Hijazi, Frederick – Science Teacher, 2010
Research Experiences for Teachers (RET), funded by the National Science Foundation, offer teachers an opportunity to participate in current, hands-on scientific research in laboratories across the United States. These experiences provide an avenue for teachers to understand the process of research and gain insight on emerging technologies with the…
Descriptors: Faculty Development, Scientific Research, Laboratories, Teaching Methods
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Johnson, Samuel A.; Tutt, Tye – Science Teacher, 2008
Recently, a high school Science Club generated a large number of questions involving temperature. Therefore, they decided to construct a thermal gradient apparatus in order to conduct a wide range of experiments beyond the standard "cookbook" labs. They felt that this apparatus could be especially useful in future ninth-grade biology classes, in…
Descriptors: Scientific Methodology, Science Laboratories, Biology, Laboratory Equipment
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Hewitt, Paul G. – Science Teacher, 2006
Three sample physics problems are presented in this article. The solutions to the three problems addresses a major student difficulty in problem solving--knowing where to begin. The first suggested step is to begin by stating what is asked for. Step 2 is identifying the fundamental physics that underlies the problem situation. Step 3 is isolating…
Descriptors: Teaching Methods, Physics, Scientific Methodology, Problem Solving
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Melville, Wayne; Fazio, Xavier – Science Teacher, 2007
Due to his work to determine how cholera was spread in the 18th century, John Snow (1813-1858) has been hailed as the father of modern epidemiology. This article presents an inquiry model based on his life and work, which teachers can use to develop a series of biology lessons involving the history and nature of science. The lessons presented use…
Descriptors: Scientific Principles, Science Programs, Epidemiology, Science Instruction