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MacKenzie, Ann Haley; McDowell, Brian – Science Scope, 2012
What do paleontologists, dinosaur tracks, and the nature of science have in common? They're combined here in an inquiry activity where students use methods of observation and inference to devise evidence-based explanations for the data they collect about dinosaur tracks, much like the methods used by paleontologists. Students then debate the…
Descriptors: Paleontology, Scientific Concepts, Interdisciplinary Approach, Science Instruction
Talley, Brooke L.; Henkel, Melissa A. – Science Scope, 2007
Every schoolyard presents a wealth of opportunities for science exploration. To capitalize on this resource, the authors developed an activity in which students assessed whether their schoolyard could provide a viable habitat for treefrogs. This inquiry-based module was composed of three lessons: A Hoppin' Treefrog Adventure, Field Research Means…
Descriptors: Playgrounds, Science Education, Hands on Science, Inquiry
Elwess, Nancy L.; Bouchard, Adam – Science Scope, 2007
In this inquiry-based activity, Roborovsky hamsters are used to provide students with an opportunity to develop their skills of analysis, inquiry, and design. These hamsters are easy to maintain, yet offer students a means to use conventional techniques and those of their own design to make further observations through measuring, assessing, and…
Descriptors: Science Activities, Inquiry, Animals, Science Instruction
Kuhl, James; Shaffer, Karen – Science Scope, 2008
Constructing model hot air balloons is an activity that captures the imaginations of students, enabling teachers to present required content to minds that are open to receive it. Additionally, there are few activities that lend themselves to integrating so much content across subject areas. In this article, the authors describe how they have…
Descriptors: Science Activities, Metric System, Earth Science, Measurement
Curry, Kristen; Moore, Jerilou; Sumrall, William J. – Science Scope, 2007
When students investigate science, they model, imitate, and perform science much as scientists do. Learning science in this way is best, according to the locus of control research. Based on this research, students need to develop an internal belief that they can control science outcomes and become a part of science through their own hands-on…
Descriptors: Locus of Control, Investigations, Student Attitudes, Scientific Principles
Drouin, Pamela; Welty, David J.; Repeta, Daniel; Engle-Belknap, Cheryl A.; Cramer, Catherine; Frashure, Kim; Chen, Robert – Science Scope, 2006
In this article, the authors present a classroom experiment that was developed to introduce middle school learners to the carbon cycle. The experiment deals with transfer of CO[subscript 2] between liquid reservoirs and the effect CO[subscript 2] has on algae growth. It allows students to observe the influence of the carbon cycle on algae growth,…
Descriptors: Research Design, Middle School Students, Science Experiments, Secondary School Science
Snyder, Robert – Science Scope, 2005
Collecting weather data is a traditional part of a meteorology unit at the middle level. However, making connections between the data and weather conditions can be a challenge. One way to make these connections clearer is to enter the data into a database. This allows students to quickly compare different fields of data and recognize which…
Descriptors: Meteorology, Databases, Weather, Data Collection
Kademan, Robyn – Science Scope, 2005
One of the most beneficial uses for technology in the science classroom is data manipulation. During labs and other learning experiences, students can quickly put the data they collect into spreadsheets or databases. Then they can make comparisons, create graphs, draw conclusions, sort the data in new ways, and, ultimately, give their data…
Descriptors: Databases, Data Collection, Science Education, Spreadsheets

Poelker, Brian – Science Scope, 1992
Describes an activity to study the concepts of force and gravity. Students use trigonometry to measure the height of a water balloon shot into the air by a giant slingshot by two methods. A lesson plan provides materials needed, procedures, a chart to record data, and extensions for the activity. (MDH)
Descriptors: Data Collection, Force, Gravity (Physics), Integrated Activities