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Moyer, Richard; Everett, Susan – Science Scope, 2010
This article describes a lesson where students explore the absorbency of several towels with different weaves and weights. The lesson follows the 5E learning-cycle model and incorporates engineering in the sense of product testing with a focus on the relationship between the weave of a towel and its absorbency. The National Science Education…
Descriptors: Science Instruction, Scientific Principles, Middle School Students, Secondary School Science
Wilcox, Jesse; Kruse, Jerrid – Science Scope, 2012
Although inquiry is more engaging and results in more meaningful learning (Minner, Levy, and Century 2010) than traditional science classroom instruction, actually involving students in the process is difficult. Furthermore, many students have misconceptions about Earth's seasons, which are supported by students' prior knowledge of heat sources.…
Descriptors: Investigations, Prior Learning, Misconceptions, Science Instruction
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
Khourey-Bowers, Claudia – Science Scope, 2009
The purpose of this article is to share a learning-cycle sequence of lessons designed to convey the particulate nature of matter through use of physical models and analogical thinking. This activity was adapted from Conceptual Chemistry, a long-running professional development program for teachers of grades 4-9. Conceptual Chemistry's approach is…
Descriptors: Chemistry, Scientific Concepts, Scientific Principles, Scientific Literacy
Worch, Eric – Science Scope, 2009
The United States has a significant deficit in the number of university students choosing to major in science, technology, engineering, and mathematics (STEM) and subsequently entering STEM professions (National Science Board 2008). One way to address this problem is to find ways to make STEM careers more interesting and intellectually accessible…
Descriptors: Scientific Principles, Scientific Concepts, Inquiry, Scientific Attitudes
Balgopal, Meena; Cornwall, Shaun; Gill-Robinson, Heather; Reinhart, Damien S. – Science Scope, 2009
When the nature of science (NOS) is reinforced, middle school students will be able to appreciate scientific inquiry processes and communication, as outlined in the National Science Education Standards (NRC 1996). To this end, the authors developed a mummy-making and dissection activity to help sixth- and seventh-grade students learn more about…
Descriptors: Middle School Students, Scientific Principles, Anthropology, Inferences
Easley, Linda M. – Science Scope, 2005
Cemeteries can be outdoor museums, teeming with valuable information that tells a story. They provide archaeologists with an opportunity to examine how artifacts (tombstones and monuments) reflect cultural change and how societies differ from one another. Archaeologists can record information about the size, shape, symbols, and weathering of the…
Descriptors: Scientific Principles, Science Activities, Archaeology, Environmental Education
Forde, Evan B. – Science Scope, 2004
Educating the public about safety issues related to severe weather is part of the National Oceanic and Atmospheric Administration's (NOAA) mission. This month's insert, Severe Weather, has been created by NOAA to help educate the public about hazardous weather conditions. The four types of severe weather highlighted in this poster are hurricanes,…
Descriptors: Space Sciences, Scientific Principles, Safety, Meteorology
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
Pecore, John; Sacks, David – Science Scope, 2005
In this article, the authors describe an activity developed to assist students with constructing their own understanding of Earth's history and provide questions to help teach the geologic time scale. The lesson is aligned to the following National Science Education Standards: Science as Inquiry, Earth's History, and Nature of Science. While…
Descriptors: Scientific Principles, Heterogeneous Grouping, Geology, Science Activities
Kao,Yvonne S; Zenner, Greta M.; Gimm, J. Aura – Science Scope, 2005
Nanotechnology deals with machines, materials, and structures and their behaviors at the scale of atoms and molecules, or the nanoscale. By working on this scale, scientists are able to create enhanced materials with desirable properties, such as stain-resistance. The authors developed the activity described in this article to introduce middle…
Descriptors: Teaching Methods, Scientific Principles, Scientific Research, Scientists
Roy, Ken – Science Scope, 2005
Model rocketry is one of the best ways to get students interested in the physical sciences. Following safety guidelines, rocketry can really turn students on to science and also help them understand the applications of theories and scientific principles (Newton's laws of motion, force, mass, projectile motion, etc.) they are learning. The study…
Descriptors: Scientific Principles, Physical Sciences, Motion, Physics
Hemling, Melissa A.; Sammel, Lauren M.; Zenner, Greta; Payne, Amy C.; Crone, Wendy C. – Science Scope, 2006
Many traditional classroom science and technology activities often ask students to complete prepackaged labs that ensure that everyone arrives at the same "scientifically accurate" solution or theory, which ignores the important problem-solving and creative aspects of scientific research and technological design. Students rarely have the…
Descriptors: Scientific Principles, Scientific Research, Research Problems, Patients

Guzdziol, Edward S. – Science Scope, 1991
Activities involving concave rubber disks are utilized to illustrate the scientific principles of kinetic and potential energy. Provides teacher instructions and questions related to the activity. (MDH)
Descriptors: Energy, Junior High Schools, Kinetics, Middle Schools
Crawford, Teresa – Science Scope, 2003
As science teachers, they understand the importance of gaining student interest to promote learning. They know how challenging it is to spark the curiosity to truly engage students in the processes of "doing science." One often-used method of motivation is the demonstration of science in action. Demonstrations such as "discrepant events". They are…
Descriptors: Science Activities, Scientific Principles, Student Interests, Science Teachers
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