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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1 to 15 of 471 results
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Crawford, Christina; Beason-Abmayr, Beth; Eich, Elizabeth; Scott, Jamie; Nichol, Carolyn – Science Teacher, 2015
Viruses are all around--and within. They replicate inside the cells of living organisms. An estimated 1.6 million to 40 million of them occupy each cubic meter of the air people breathe. The activity described in this article helps students understand how the structure of a virus allows it to infect a specific set of organisms and cell types.…
Descriptors: Science Instruction, Communicable Diseases, Biology, Active Learning
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Lovrencic, Michael; Vena, Laurie – Science Teacher, 2014
A kinesthetic technique for learning to recognize elements and compounds is presented in this article. The current common pedagogy appears to merge recognition and implementation into one naming method. A separate recognition skill is critical to students being able to correctly name and write the formulas of compounds. This article focuses on…
Descriptors: Science Instruction, Hands on Science, Kinesthetic Methods, Scientific Concepts
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Cook, Kristin; Keller, Donna; Myers, Alyce – Science Teacher, 2014
In this guided inquiry, students investigate advantages and disadvantages of genetic engineering by integrating popular fiction into their study of bioethics. What are the effects of artificially created hybrid creatures on characters in "The Hunger Games" and in our society? What are the effects on and basic rights of the organisms…
Descriptors: Ethics, Fiction, Popular Culture, Genetics
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Clary, Renee; Wandersee, James – Science Teacher, 2014
Some of the most important scientific studies are associated with either incredibly large dimensions (e.g., the universe) or extremely small proportions (e.g., the cell). While a teacher's curriculum may often switch from mega-expanses to minutia, they should question how easily students comprehend the change in sizes. This article addresses…
Descriptors: Science Education, Science Instruction, Inquiry, Scientific Concepts
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Gould, Roy; Sunbury, Susan; Dussault, Mary – Science Teacher, 2014
The "Next-Generation Science Standards" emphasize the importance of teaching the practices of science alongside content ideas and crosscutting concepts (NGSS Lead States 2013). Chief among these practices is the ability to gather, assess, analyze, and interpret data. Authentic inquiry near the leading-edge of science offers a wonderful…
Descriptors: Data, Data Analysis, Data Collection, Data Interpretation
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Rybczynski, Stephen; Li, Zheng; Hickey, R. James – Science Teacher, 2014
Civilization simply would not exist without plants, yet their importance is often overlooked. As the nation's ability to respond to the botanical challenges associated with food production, climate change, invasive species, and biodiversity loss continues to decrease (Kramer, Zorn- Arnold, and Havens 2010), educators must discourage this…
Descriptors: Botany, Plants (Botany), Inquiry, Ecology
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Dash, Carolyn; Hug, Barbara – Science Teacher, 2014
We constantly encounter data--in the form of graphs--that convey information about weather, medicine, politics, finances, and nutrition. These graphs are intended to help us visualize data for easy interpretation; however, approximately 41% of adults in the United States have low graph literacy (Galesic and Garcia-Retamero 2011). In this article,…
Descriptors: Climate, Graphs, Science Instruction, Teaching Methods
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Webber, Hannah; Nelson, Sarah J.; Weatherbee, Ryan; Zoellick, Bill; Schauffler, Molly – Science Teacher, 2014
Data literacy is complex. When students investigate the natural world, they must be able to gather data, organize it in tables and spreadsheets, analyze it in context, and describe and interpret it--usually as evidence to support a scientific argument. These skills are echoed in the science and engineering practices of the "Next Generation…
Descriptors: Science Instruction, Graphs, Science Process Skills, Data Analysis
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Wagler, Amy; Wagler, Ron – Science Teacher, 2014
Every high school graduate should be able to use data analysis and statistical reasoning to draw conclusions about the world. Two core statistical concepts for students to understand are the role of variability in measures and evaluating the effect of a variable. In the activity presented in this article, students investigate a scientific question…
Descriptors: High School Graduates, Data Analysis, Statistical Analysis, Inferences
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Johnstone, Christopher – Science Teacher, 2014
When learning about electricity, students are typically asked to complete a simple circuit involving a battery, wire, and lightbulb. This activity can be enhanced by adding discussion and discourse and can take on a unique final form in the case of "The Friendship Detector." In such electrical circuit activities, the completed circuit is…
Descriptors: Energy, Engineering Education, Educational Technology, Teaching Methods
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Kraus, Rudolf V. – Science Teacher, 2014
This article describes a two-day optics laboratory activity that investigates the scientific phenomenon of reflection, which students are generally familiar with but usually have not studied in depth. This investigation can be used on its own or as part of a larger unit on optics. This lesson encourages students to think critically and…
Descriptors: Science Instruction, Science Laboratories, Optics, Scientific Concepts
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Clary, Renee; Wandersee, James – Science Teacher, 2014
The "Next Generation Science Standards" (NGSS) focus attention on integrating engineering and math in science instruction. The dinosaur trackway project described in this article shows that it is possible to assign engineering applications to students in disciplines other than physics and to integrate math and engineering applications in…
Descriptors: Science Instruction, STEM Education, Engineering Education, Mathematics Education
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Tretter, Thomas; Ardasheva, Yuliya; Bookstrom, Eric – Science Teacher, 2014
Literacy skills are critical for building science knowledge. For English Language Learners (ELLs)--the fastest growing population in U.S. schools (Goldenberg 2008)--learning English compounds the challenge of learning complex science concepts. This challenge is particularly acute for learning academic, science-specific English words and language…
Descriptors: English Language Learners, Science Instruction, Teaching Methods, Scaffolding (Teaching Technique)
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D'Alessandro, John; Sorenson, Tim; Homoelle, Bradley; Hodun, Tony – Science Teacher, 2014
Reading is critical for scientific thinking. It is a foundation for many of the skills in which scientists and engineers must be proficient, such as conducting research, developing informed conjectures, and engaging in reasoned argument (NRC 2012). Yet, students frequently find science reading difficult, time-consuming, and frustrating. Strategies…
Descriptors: Reading Comprehension, Reading Strategies, Teaching Methods, Scientific Research
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Vondracek, Mark – Science Teacher, 2013
Students who do not progress to more advanced science disciplines in college generally do not realize that seemingly simple physical systems are--when studied in detail--more complex than one might imagine. This article presents one such phenomenon--the hydraulic jump--as a way to help students see the complexity behind the seemingly simple, and…
Descriptors: Science Instruction, Water, Scientific Concepts, Scientific Research
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