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Fletcher, Kurt; Rommel-Esham, Katie; Farthing, Dori; Sheldon, Amy – Science Scope, 2011
The transfer of energy from one form to another can be difficult to understand. The electrical energy that turns on a lamp may come from the burning of coal, water falling at a hydroelectric plant, nuclear reactions, or gusts of wind caused by the uneven heating of the Earth. The authors have developed and tested an exciting hands-on activity to…
Descriptors: Energy, Demonstrations (Educational), Laboratory Equipment, Science Instruction
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Roy, Ken – Science Scope, 2011
In building projects or renovations, architects and administrators tend to label the science instructional space as a "science classroom," as opposed to a "science laboratory." What exactly is a science classroom, and what is a science laboratory? According to OSHA's Laboratory Standard (OSHA #29 CFR part 1910.1450), "laboratory" means a facility…
Descriptors: Science Laboratories, Science Teachers, Science Instruction, Chemistry
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Gooding, Julia; Metz, Bill – Science Scope, 2011
Having students design their own methods regarding data collection during a lab may help them formulate appropriate investigative procedures. The authors use a modified gallery walk to develop science skills. (Contains 3 figures.)
Descriptors: Science Process Skills, Science Activities, Scientific Methodology, Science Education
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Roy, Ken – Science Scope, 2010
Batteries commonly used in flashlights and other household devices produce hydrogen gas as a product of zinc electrode corrosion. The amount of gas produced is affected by the batteries' design and charge rate. Dangerous levels of hydrogen gas can be released if battery types are mixed, batteries are damaged, batteries are of different ages, or…
Descriptors: Student Behavior, Child Safety, Science Instruction, Laboratory Safety
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Albert, Jennifer; Blanchard, Margaret; Grable, Lisa; Reed, Rebecca – Science Scope, 2010
The Crime Scene Labs is a technology-enhanced unit with seven laboratory stations. Probes at many of the stations facilitate students collecting and analyzing their own data (some lessons are adapted from Volz and Sapatka 2000). The labs are designed to build 21st-century skills and model reform-based practices (NRC 1996). The crime scene allows…
Descriptors: Science Activities, Crime, Science Instruction, Science Laboratories
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Ende, Fred – Science Scope, 2012
Ask students to name the aspects of science class they enjoy most, and working on labs will undoubtedly be mentioned. What often won't be included, however, is writing lab reports. For many students, the process of exploration and data collection is paramount, while the explanation and analysis of findings often takes a backseat. After all, if…
Descriptors: Ecology, Scientific Literacy, Science Education, Science Laboratories
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Taylor, Amy; Jones, Gail; Pearl, Thomas P. – Science Scope, 2008
Nanoscience, or the study of the world at the size of a billionth of a meter, has the potential to help students see how all of the sciences are related. Behavior of materials at the nanoscale differs from materials at the macroscale. This article introduces three nanoscale properties and how they relate to various science domains. Three…
Descriptors: Learning Processes, Science Instruction, Scientific Concepts, Teaching Methods
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Herald, Christine – Science Scope, 2010
According to the National Science Education Standards, students should be able to describe an object by its position, direction of motion, and speed (NRC 1996). During a unit on motion, the author decided to use Hot Wheels cars as the object students would describe. The first two activities are used to introduce students to the equipment and the…
Descriptors: Science Activities, Science Instruction, Science Laboratories, Scientific Principles
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Straulino, Samuele; Terzuoli, Alessandra – Science Scope, 2010
In the first months of 2009, the International Year of Astronomy, the authors developed an educational project for middle-level students connected with the first astronomical discoveries that Galileo Galilei (1564-1642) made 400 years ago. The project included the construction of a basic telescope and the observation of the Moon. The project, if…
Descriptors: Astronomy, Middle School Students, Secondary School Science, Science Instruction
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Benedis-Grab, Gregory – Science Scope, 2011
Interdisciplinary teaching is a great way to focus on overarching concepts and help students make connections across disciplines. Historically, art and science have been connected disciplines. The botanical prints of the 18th and 19th centuries and early work with microscopes are two examples of a need for strong artistic skills in the science…
Descriptors: Biology, Methods, Teaching Methods, Art Education
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Miller, Leslie; Chang, Ching-I; Hoyt, Daniel – Science Scope, 2010
CSI: The Experience, a traveling museum exhibit and a companion web adventure, was created through a grant from the National Science Foundation as a potential model for informal learning. The website was designed to enrich and complement the exhibit by modeling the forensic process. Substantive science, real-world lab techniques, and higher-level…
Descriptors: Science Careers, Informal Education, Apprenticeships, Exhibits
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Bigham, Gary – Science Scope, 2010
Off-road motorcycle racing and ATV riding. Gardening and fishing. What do these high-adrenaline and slower-paced pastimes have in common? Each requires soil, and the texture of that soil has an effect on all of them. In the inquiry-based lessons described here, students work both in the field or laboratory and in the classroom to collect soil…
Descriptors: Soil Science, Science Instruction, Inquiry, Teaching Methods
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Allen, Jared; Buckingham, Jane; Roper, Randall; Marrs, Kathleen – Science Scope, 2010
This article discusses how real research on Down syndrome, being done in a lab at Indiana University-Purdue University Indianapolis (IUPUI), was incorporated into a laboratory activity for middle school students. The activity asked students to evaluate real evidence from the research laboratory of a GK-12 fellow (a graduate student funded by the…
Descriptors: Middle School Students, Graduate Students, Research Methodology, Down Syndrome
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Sweeney, Ryan M.; Martin-Hansen, Lisa; Verma, Geeta; Dunkhase, John – Science Scope, 2009
Learning about osmosis and diffusion is often a challenging task for middle school students. Here the authors present a lesson that was converted from a "cookbook" lab (McLaughlin and Thompson 2007) into a more inquiry-oriented lab that uses inquiry teaching strategies and hands-on investigations to teach middle-grade students about osmosis and…
Descriptors: Middle Schools, Investigations, Teaching Methods, Middle School Students
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Gordon, Jessica – Science Scope, 2008
Water is an essential resource for all living things. How we live on our watershed can impact water quantity and quality. It is important to recognize how humans alter watershed dynamics, but students often find it challenging to visualize watershed processes and understand how decisions that they make as individuals and together as a community…
Descriptors: Water Quality, Conservation (Environment), Water Pollution, Science Instruction
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