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Cross, Susan; Willis, Patrick – 1994
Almost every school in the United States has natural areas nearby that are often overlooked as learning sites. The intent of this document is to provide educators with a platform to begin natural resource programming at sites near their school. Philosophical as well as concrete information is outlined to provide both intrinsic and conceptual…
Descriptors: Elementary Education, Environmental Education, Hands on Science, Natural Resources
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Grambo, Greg – Gifted Child Today Magazine, 1996
Suggestions are offered for a classroom project of planning and conducting an archaeological dig on or near school property. Principles of archaeological practice such as making drawings of the site and using a grid frame to record locations are explained. Also suggested is a simulation activity in which students pick imbedded "findings" out of…
Descriptors: Archaeology, Elementary Secondary Education, Experiential Learning, Hands on Science
Vaughn, Rachel L; Seifer, Sarena; Vye Mihalynuk, Tanis – National Service Learning Clearinghouse, 2004
Service-learning in the chemistry curriculum provides an opportunity for students to learn while contributing to their communities. Examples of chemistry service-learning projects at the post-secondary level include: (1) teaching students about lead poisoning avoidance while assessing and analyzing lead content in the paint of older homes; (2)…
Descriptors: Higher Education, Science Projects, Poisoning, Hands on Science
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McCormick, Terry L. – Science Teacher, 1995
Descriptors: Computer Interfaces, Computer Uses in Education, Hands on Science, Integrated Activities
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Erzberger, Andria; And Others – Physics Teacher, 1996
Describes the activities of the Physics Teachers Action Research Group in which college physics teachers work together in planning, revising, and evaluating student projects that foster greater conceptual understanding and address student misconceptions. Presents the details of a project in which students were asked to build an accelerometer. (JRH)
Descriptors: Acceleration (Physics), Hands on Science, Mechanics (Physics), Misconceptions
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Altshuler, Ken – Science Teacher, 1995
Describes a project where students build a motorized car that can perform well in two distinctly different competitions: traveling 20 meters in the shortest time and pulling a 500-gram mass the farthest distance in 20 seconds. Enables students to apply physics principles to a real problem and to discover the importance of teamwork on large…
Descriptors: Cooperative Learning, Engineering, Hands on Science, Interdisciplinary Approach
Houghton, Janaye Matteson; Houghton, Robert S. – 1994
Today and in the future, critical toolmaking advances will need to be made in the area of circuit design, construction, and implementation. Traditional school curriculum has sidestepped the area of tool design, especially at the elementary level. This publication addresses a calling for a new curriculum direction, based not only on the study of…
Descriptors: Electric Circuits, Electricity, Electronics, Elementary Education
Russell, Helen Ross – 1997
In a world where science has become too confined to books and too reliant on technology, and science fairs have been taken over by parents, this paper offers suggestions to help young people have actual hands-on experience with nature. Topics include soil formation; ants; earthworms; temperature; weather predictions; rain acidity; physical science…
Descriptors: Elementary Education, Elementary School Science, Hands on Science, Naturalistic Observation
Burnett, Robin – 1992
This document presents a science project appropriate for lower elementary grades which is intended to introduce the ways of science, not to give established information or teach specific procedures. Each activity (corresponding to 10 days) contains three sections: teacher notes, teacher narrative, and research notes. Sample activities include: (1)…
Descriptors: Biology, Entomology, Grade 2, Hands on Science
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Wenning, Carl J.; Muehsler, Hans – Physics Teacher, 1996
Describes the implementation and evaluation of a nondirected student research project that aimed at acquainting students with some of the procedures used by physicists in the real world. Outlines specific project designs used by the students. (JRH)
Descriptors: Alternative Assessment, Cooperative Learning, Hands on Science, Physics
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Budd, Raymond T. – Gifted Child Today, 2003
This article discusses how Magnetic Levitation (Maglev) can be taught to gifted students in grades 4-9 using hands-on activities that align to the National Science Standards. Principles of magnetic levitation, advantages of magnetic levitation, construction of a Maglev project, testing and evaluation of vehicles, and presentation of the unit are…
Descriptors: Academic Standards, Academically Gifted, Classroom Techniques, Elementary Secondary Education
Bonnet, Bob; Keen, Dan – 1996
This book approaches the development of science fair projects from the point of view that science should be enjoyable, interesting, and thought-provoking. The scientific concepts introduced here will later help young students to understand more advanced scientific principles. These projects develop skills such as classification, making measured…
Descriptors: Data Collection, Elementary Education, Environmental Education, Hands on Science
Water Education Foundation, Sacramento, CA. – 1991
This teacher's guide presents 12 hands-on laboratory activities for high school science classes that cover the environmental issue of water resources in California. The activities are separated into three sections. Five activities in the section on water quality address the topics of groundwater, water hardness, bottled water, water purity, and…
Descriptors: Conservation (Environment), Ecology, Environmental Education, Hands on Science
Reames, Spencer E., Comp. – 1993
Because of the daily impact of biotechnology, it is important that students have some knowledge and experience with biotechnology in order to enable them to deal with the issues that arise as a result of its implementation. The purpose of this workbook is to assist in the efforts to expose students to the concepts of biotechnology through hands-on…
Descriptors: Biochemistry, Biology, Biotechnology, Cytology
Learning, 1996
Describes creative methods of teaching elementary level science: eighth-grade hands-on experiments are made with rare rocks and gems via a "Mining by Mail" program; third-grade students use the "I Wonder" approach to examine questions of interest; process skills are adapted for different age levels. A staff development folder…
Descriptors: Creative Teaching, Elementary Education, Elementary School Science, Elementary School Students
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