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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 91 to 105 of 5,075 results
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Cox, Scott – Science Teacher, 2012
After years of using Rube Goldberg-inspired projects to teach concepts of simple machines, the author sought a comparable project to reinforce electricity lessons in his ninth-grade Science and Technology course. The Friendship Detector gives students a chance to design, test, and build a complex circuit with multiple switches and battery-powered…
Descriptors: Friendship, Value Judgment, Science Instruction, Scientific Concepts
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Dixon, James; Kuldell, Natalie – Science Teacher, 2012
Genetic engineering is taught in biology--but as a scientific tool and not as a means to explore engineering design. Yet, given the clever behaviors and patterns that can be found when examining living systems, biology classes seem well positioned to teach foundational engineering design principles (Kuldell 2007). This article examines a new,…
Descriptors: Genetics, Biology, Science Instruction, Secondary School Science
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Meyer, Daniel – Science Teacher, 2012
In looking at successful inquiry activities, patterns in pedagogical approach emerge (Meyer et al. 2011). This article discusses one such approach--the design challenge. A design challenge can be defined as an activity in which students are given an explicit task to create a product that meets a defined goal. However, simply asking students to…
Descriptors: Problem Solving, Creative Activities, Learning Activities, Instructional Design
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Conn, Kathleen – Science Teacher, 2012
Drama and imagination have a place in every classroom, not just in the English teacher's. In fact, nowhere are they more critical to students' motivation than in bringing to life the often arcane equations of science. By inventing curiosity-provoking scenarios that require students to apply science concepts and processes as integral and…
Descriptors: Creativity, Rote Learning, Learning Motivation, Memorization
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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
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Clary, Renee; Wandersee, James – Science Teacher, 2012
Gravel is a component of parking lots, highway shoulders, garden pathways, and filtration systems. Few people bother to scientifically examine gravel and determine its origin, but gravel can be an effective, inexpensive, and abundant resource for science classrooms. It can serve as a portal for several interdisciplinary science activities and…
Descriptors: Thinking Skills, Hands on Science, Science Activities, Geology
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Wyner, Yael – Science Teacher, 2012
This article explores ways that people impact ecological systems and how those systems can influence people's daily lives. Students use newspaper articles and case studies of scientific research to link daily human life and disrupted ecological function. This activity prompts students to think about their relationships with the natural world,…
Descriptors: Environmental Education, Relevance (Education), Conservation (Environment), Student Attitudes
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Pallant, Amy; Pryputniewicz, Sarah; Lee, Hee-Sun – Science Teacher, 2012
Scientists, and science in general, move from the unknown to increasing levels of certainty. Teaching students about science means encouraging them to embrace and investigate the unknown, make reliable scientific claims, justify those claims with evidence, and evaluate the quality of the evidence. In all areas of science--and especially in…
Descriptors: Science Education, Space Sciences, Secondary School Science, High Schools
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Jones, Rachael Adams – Science Teacher, 2012
Too often, teachers scratch their heads and ask, "What were my students thinking?" then answer, "I don't want to know." But teachers should want to know, and students should question their own thinking, as well. Critical thinking involves not just problem solving, creativity, analysis, and synthesis but also self-awareness of learning and learning…
Descriptors: Educational Strategies, Learning Strategies, Critical Thinking, Misconceptions
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Bonner, David – Science Teacher, 2012
Conducting labs isn't a new way to teach physics, but labs have become increasingly prevalent with the rise of inquiry. Physics students collect mostly quantitative data, often represented by graphs or tables. Interpreting this data can be a challenge for students, especially when it comes to experimental error. To address this issue, this article…
Descriptors: Physics, Science Instruction, Science Laboratories, Inquiry
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Reiser, Brian J.; Berland, Leema K.; Kenyon, Lisa – Science Teacher, 2012
"A Framework for K-12 Science Education" identifies eight science and engineering practices for K-12 classrooms. These practices, along with core ideas and crosscutting concepts, define the nation's learning goals for science. An important advance from earlier standards (AAAS 1993, NRC 1996), these practices are clearly identified "not" as…
Descriptors: Thinking Skills, Elementary School Science, Secondary School Science, Science Education
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Martin, Susan Ferguson; Green, Andre – Science Teacher, 2012
Learning centers can help teachers assess students' content knowledge without penalizing them for language barriers. With the increasing number of English language learners (ELLs) in classrooms, the emphasis on mastery of content and inclusion of all students in class discussions and activities will provide all students a chance for scientific…
Descriptors: Teaching Methods, English (Second Language), Water, Scientific Literacy
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Carver, Jeffrey; Wasserman, Bradley – Science Teacher, 2012
Hydroponics is a process in which plants are grown using nutrient-rich water instead of soil. Because this process maximizes the use of water and nutrients--providing only what the plant uses in controlled and easily maintained systems--it is a viable alternative to traditional farming methods. The amount of control in these systems also ensures…
Descriptors: Agricultural Occupations, Biology, Sustainability, Science Instruction
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Llerandi-Roman, Pablo A. – Science Teacher, 2012
Many Earth science lessons today still focus on memorizing the names of rocks and minerals. This led the author to develop a lesson that reveals the fascinating stories told by rocks through the study of their physical properties. He first designed the lesson for Puerto Rican teachers, hence its Spanish title: "Las Rocas Nos Cuentan Su Historia."…
Descriptors: Teaching Methods, Earth Science, Worksheets, Geology
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Tretter, Thomas – Science Teacher, 2012
Teachers strive to engage students in rich and varied experiences involving exploration. These experiences should be accessible to all types of learners (e.g., visual, kinesthetic, mathematically inclined), offering multiple pathways for engagement at different levels of sophistication and accommodating both conceptual and computational…
Descriptors: Physics, Video Technology, Teaching Methods, Science Instruction
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