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Gonczi, Amanda; Palosaari, Chuck; Mayer, Alex; Urban, Noel – Science Teacher, 2022
Computational modeling and thinking skill sets were previously relegated to computer scientists and programmers. As a result, computational tools are largely unfamiliar to K-12 science teachers and students. Using Mathematical and Computational Thinking and Developing and Using Models were included in the "Next Generation Science…
Descriptors: Learning Activities, High School Students, STEM Education, Computation
Washburn, Quinn; Wolf, Sarah; Well, Jay; Noell, Stephen; Lee, Chih-Ping; Bolaños, Luis M.; Giovannoni, Stephen J.; Suffridge, Christopher P. – Science Teacher, 2021
It is important that students understand the role the ocean plays in mitigating climate change, and how every person on this planet is uniquely connected to the ocean. Identifying these connections can be challenging for students in rural or underserved areas, many of whom do not live by, or interact with, the ocean. Through the use of the board…
Descriptors: Secondary School Science, High School Students, Science Instruction, Climate
Bahnson, Anna; Wilcox, Jesse; Kruse, Jerrid; Schou, Timothy – Science Teacher, 2020
The science and engineering practices in the "Next Generation Science Standards" seek to engage students in complex tasks including planning and carrying out investigations or engaging in argument from evidence. However, such tasks often require students to effectively collaborate. While our students get better at working together in an…
Descriptors: Teaching Methods, Social Development, Emotional Development, Cooperative Learning
McKinney, Daniel – Science Teacher, 2020
Teaching the tools and concepts associated with modern physics can often be a daunting and difficult task for secondary science teachers. Classical physics is often perceived as intimidating and complex in its own right. Modern physics addressing quantum phenomena where Newtonian laws break down is even more abstract for learners. However,…
Descriptors: Teaching Methods, Science Instruction, Physics, Scientific Concepts
Price, Argenta; Wieman, Carl; Perkins, Katherine – Science Teacher, 2019
Interactive science simulations (sims) have become popular tools for science educators, and research confirms that sims can improve student learning (Rutten, van Joolingen, and van der Veen 2012). Over the past 15 years, the PhET Interactive Simulations project at the University of Colorado Boulder has created a collection of 150 open (free)…
Descriptors: Simulation, Science Teachers, Learner Engagement, High School Teachers
Pearlman, Melanie – Science Teacher, 2019
Spices, of course, do not make a meal, but they make a meal more enjoyable and memorable. Games do the same, allowing teachers to interact with their students in a different way than they normally do. They also have the potential to challenge and assess students' understanding of content. Games allow teachers to "play" with their…
Descriptors: Science Instruction, Educational Games, Teaching Methods, Course Content
Enderle, Patrick; King, Natalie; Margulieux, Lauren – Science Teacher, 2021
Teaching about wave structure and function is a critical element of any physical science curriculum and supported by "Next Generation Science Standards (NGSS)" PS4: Waves and Their Applications in Technologies for Information Transfer. To support students' learning of these ideas, teachers often rely on developing graphic models of a…
Descriptors: Science Education, Standards, Teaching Methods, Science Curriculum
Ament, Caitlin Marie; Graham, Theodore J. – Science Teacher, 2017
This article presents a unit of study in which students examine skeletons and draw conclusions from the evidence they find in a simulated mass grave. The activity involves the foundation of forensic anthropology--interpreting the structure of skeletal remains to determine sex, age, height, and possible cause of death. Working through a series of…
Descriptors: Science Instruction, Teaching Methods, Anthropology, Evidence
Staudt, Carolyn; Hanzlick-Burton, Camden; Williamson, Carol; McIntyre, Cynthia – Science Teacher, 2015
The Innovative Technology in Science Inquiry (ITSI) project is a learning portal with hundreds of free, customizable science, math, and engineering activities funded by the National Science Foundation at the Concord Consortium, a nonprofit research and development organization dedicated to transforming education through technology. The project…
Descriptors: Internet, Genetics, Molecular Structure, Molecular Biology
Pallant, Amy; Damelin, Daniel; Pryputniewicz, Sarah – Science Teacher, 2013
This article describes the High-Adventure Science curriculum unit "Is There Life in Space?" This free online investigation, developed by The Concord Consortium, helps students see how scientists use modern tools to locate planets around distant stars and explore the probability of finding extraterrestrial life. This innovative curriculum…
Descriptors: Science Instruction, Computer Uses in Education, Educational Technology, Astronomy
Rau, Gerald – Science Teacher, 2012
Molecular similarity is one of the strongest lines of evidence for evolution--and one of the most difficult for students to grasp. That is because the underlying observations--that identical mutations are found in closely related species and the degree of similarity decreases with evolutionary distance--are not visible to the human eye. And it's…
Descriptors: Evolution, Genetics, Molecular Structure, Scientific Concepts
Krajcik, Joseph; Merritt, Joi – Science Teacher, 2012
The Next Generation Science Standards (NGSS)--now in development--will be based on "A Framework for K-12 Science Education" released by the National Research Council last summer. The "Framework" identifies seven scientific and engineering practices that should be used in science classrooms. These practices reflect the multiple ways in which…
Descriptors: Computers, Evidence, Engineering, Classrooms
Sneider, Cary; Stephenson, Chris; Schafer, Bruce; Flick, Larry – Science Teacher, 2014
A "Framework for K-12 Science Education" identified eight practices as "essential elements of the K-12 science and engineering curriculum" (NRC 2012, p. 49). Most of the practices, such as Developing and Using Models, Planning and Carrying Out Investigations, and Analyzing and Interpreting Data, are well known among science…
Descriptors: High School Students, Secondary School Science, Thinking Skills, Computation
Markowitz, Dina; Holt, Susan – Science Teacher, 2011
Students use manipulative models and small-scale simulations that promote learning of complex biological concepts. The authors have developed inexpensive wet-lab simulations and manipulative models for "Diagnosing Diabetes," "A Kidney Problem?" and "A Medical Mystery." (Contains 5 figures and 3 online resources.)
Descriptors: Science Instruction, Manipulative Materials, Simulation, Biology
Vick, Matthew E. – Science Teacher, 2010
The University of Colorado's Physics Education Technology (PhET) website offers free, high-quality simulations of many physics experiments that can be used in the classroom. The Circuit Construction Kit, for example, allows students to safely and constructively play with circuit components while learning the mathematics behind many circuit…
Descriptors: Physics, Educational Technology, Electronics, Simulation