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Peer reviewedRoss, Michael Elsohn – Young Children, 2000
Notes that children are scientists at play, positing theories and making observations about their activities. Suggests that successful early childhood science programs include open-ended, free-choice activities; a wide array of equipment; safe supervision; spontaneity; a variety of discovery locations; helpful print resources; and community…
Descriptors: Child Caregivers, Child Development, Day Care Centers, Early Childhood Education
Peer reviewedHumphryes, Janet – Young Children, 2000
Notes that children from birth to age 6 learn best through their senses and gain understanding when involved in activities that bring them into direct contact with the natural world. Suggests that the challenge for early childhood educators is to encourage students to use all of their senses and provide them with excursions outdoors to build…
Descriptors: Child Development, Early Childhood Education, Natural Sciences, Outdoor Activities
Peer reviewedSadler, Philip M.; Coyle, Harold P.; Schwartz, Marc – Journal of the Learning Sciences, 2000
Experiments with exercises that are distinguished from those employed with elite students by reducing competition and increasing cooperation through the use of tests against nature, large dynamic ranges in performance, initial prototype designs, and alternative methods of recording and presenting results. Finds that formulating easily understood…
Descriptors: Concept Formation, Design, Elementary Secondary Education, Engineering Education
Peer reviewedStone, David M. – Science Teacher, 1998
Discusses the merits of the National Science Teachers Association (NSTA)/Toshiba ExploraVision competition, one of the world's largest international science competitions. Gives teams of three to four students the opportunity to use imagination and other skills to create a vision of technology in the future. (DDR)
Descriptors: Competition, Elementary Secondary Education, Futures (of Society), Hands on Science
Peer reviewedBrinks, Virgil L.; Brinks, Robyn L. – Science Scope, 1994
Describes how a teacher can give their students the challenge of designing and building model balloons or blimps. The project helps students learn the basics of balloon flight and what it really means to be "lighter than air." (PR)
Descriptors: Density (Matter), Junior High Schools, Learning Activities, Middle Schools
Peer reviewedDavis, Elizabeth A.; Linn, Marcia C. – International Journal of Science Education, 2000
Encouraging students to be autonomous is an important goal of the Scaffolded Knowledge Integration (SKI) framework. Investigates learning and design questions. Indicates that prompting students to reflect significantly increases knowledge integration in science projects. Shows that self-monitoring prompts, which encourage planning for and…
Descriptors: Cues, Educational Environment, Elementary Secondary Education, Lifelong Learning
Peer reviewedWarner, Laverne; Morse, Pam – Childhood Education, 2001
Describes the development, implementation, and results of a pond life elementary student research project. Utilizing the pond life example, provides guidelines for children's research projects including the implementation of the K-W-L (know-want to know- learned) strategy with the children's reports/projects. Provides resources utilized in the…
Descriptors: Elementary School Students, Primary Education, Science Activities, Science Curriculum
Hug, Barbara; Krajcik, Joseph S.; Marx, Ronald W. – Urban Education, 2005
Recent reform movements within the United States have called for science for all and educational reforms to support this goal. In light of these reform movements and concerns regarding learning within urban schools, science educators and policy makers have pushed for the incorporation of learning technologies within schools as a way of creating…
Descriptors: Urban Schools, Science Curriculum, Educational Innovation, Science Instruction
Hawkins, Harry – Tech Directions, 2004
This article describes how to construct a laser level. This laser level can be made using a typical 4' (or shorter) bubble level and a small laser point. The laser unit is detachable, so the bubble level can also be used in the conventional way. However, the laser level works better than a simple bubble level. Making this inexpensive device is an…
Descriptors: Lasers, Physics, Material Development, Design Requirements
Mary Koppal; Ann Caldwell – Cell Biology Education, 2004
A modern understanding of the cell and its functions has been translated into learning goals for K-12 students by Project 2061's "Benchmarks for Science Literacy" and by the National Research Council's "National Science Education Standards" ("NSES"). Nearly every state has used these national documents to develop…
Descriptors: Elementary Secondary Education, Cytology, Biology, Scientific Literacy
Peer reviewedBlum, Abraham – Science Education, 1979
Discusses the problems of adapting science curriculum materials from one country to another and from one language to another. The history of science curriculum adaptation and a systematic approach to curriculum adaptation are also included. (HM)
Descriptors: Curriculum Development, Elementary School Science, Elementary Secondary Education, Instructional Materials
Peer reviewedDobson, Ken – Physics Education, 1988
Discusses a teaching method using investigational skills for Nuffield A-level Physics including assessment technique, change of the assessment criteria, advice for choosing the topic, and future development. (YP)
Descriptors: Experiments, Foreign Countries, Investigations, Physics
Moore, Tamara; Richards, Larry G. – Advances in Engineering Education, 2012
This special issue of "Advances in Engineering Education" explores recent developments in P-12 Engineering Education. It includes papers devoted to research and practice, and reports some of the most exciting work in the field today. In our Call of Papers, we solicited two types of papers: Research papers and Practice papers. The former…
Descriptors: Engineering Education, Educational Research, Educational Practices, Educational Development
Wynn, Toni; Harris, Juliette – Art Education, 2012
The acronym STEM--the teaching of science, technology, engineering, and math--now a familiar term in education, is evolving into STEAM--STEM plus "A" for art. Educational researcher Martin Storksdieck's studies have shown that infusing art into STEM allows for "a different way of perceiving and knowing and dealing with the world, as a means to…
Descriptors: Innovation, Art Education, Science Instruction, STEM Education
Hill, Kimberly A. – Educational Leadership, 2012
The author, principal at North Point High School of Science, Technology and Industry in Charles County, Maryland, describes how the school merges traditional academic classes with cutting-edge career and technical education courses to prepare students for the real world. Realizing that its traditional "vo-tech" model was undersubscribed…
Descriptors: Education Work Relationship, Science Course Improvement Projects, Educational Improvement, Improvement Programs

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