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Showing 1 to 15 of 54 results Save | Export
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Sullivan, P. Teal; Carsten Conner, L. D.; Guthrie, Mareca; Pompea, Stephen; Tsurusaki, Blakely K.; Tzou, Carrie – Science and Children, 2017
This article describes a chemistry/art activity that originated in an National Science Foundation--funded two-week STEAM (Science, Technology, Engineering, Art, and Math) academy for grade 4-6 girls. The authors recommend using this investigation in conjunction with other activities focusing on chemical change as a step toward fulfilling the…
Descriptors: Chemistry, Science Instruction, Standards, Observation
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Ashmann, Scott; Marcou, Darcy; Lange, Melissa; Konitzer, Andrea – Science and Children, 2010
For two weeks during Summer 2009, three elementary school teachers--Darcy Marcou, Melissa Lange, and Andrea Konitzer--participated in a science institute directed by Scott Ashmann, a science education professor at the University of Wisconsin-Green Bay. The purpose of this institute for elementary school teachers was to learn (a) more about Earth…
Descriptors: Elementary School Teachers, Institutes (Training Programs), Summer Science Programs, Earth Science
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Akerson, Valarie; Donnelly, Lisa A. – International Journal of Science Education, 2010
This study explored the influence of a Saturday Science program that used explicit reflective instruction through contextualized and decontextualized guided and authentic inquiry on K-2 students' views of nature of science (NOS). The six-week program ran for 2.5 hours weekly and emphasized NOS in a variety of science content areas, culminating in…
Descriptors: Science Programs, Scientific Principles, Science Instruction, Teaching Methods
Kovalik, Susan J.; Olsen, Karen D. – Corwin, 2010
This book examines learning science from multiple perspectives--especially a child's. The whimsical character of Mary Froggins guides readers through the steps of igniting students' natural sense of wonder, incorporating brain research, integrating science concepts with other subjects, and applying science to daily life. The authors demonstrate…
Descriptors: Educational Strategies, Curriculum Development, Multiple Intelligences, Science Programs
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Hodder, A. Peter W. – Science Teacher, 1994
Describes how an integrated approach to scientific investigation was used to provide a better image of science to potential college students. (ZWH)
Descriptors: Perspective Taking, Science Activities, Science Education, Science Programs
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Taylor, David P. – Physics Teacher, 1996
Describes a physics demonstration show where students conduct demonstrations for the rest of the school. By demonstrating a concept, students are forced to learn that concept in depth. Appendix includes a physics demonstrations resource list. (JRH)
Descriptors: Demonstrations (Science), Outreach Programs, Physics, Science Programs
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Sleeper, Melissa; Sterling, Donna – Science Scope, 2004
One of the easiest ways to capture students sense of wonder is to provide them an opportunity to participate in scientific research and display their findings in a science exhibition. Giving students the freedom to follow their own interests and develop their own science exhibition projects ensures active involvement in the learning process as…
Descriptors: Teaching Methods, Scientific Research, Science Programs, Science Process Skills
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McDuffie, Thomas – Science and Children, 2007
Although weather, including its role in the water cycle, is included in most elementary science programs, any further examination of raindrops and snowflakes is rare. Together rain and snow make up most of the precipitation that replenishes Earth's life-sustaining fresh water supply. When viewed individually, raindrops and snowflakes are quite…
Descriptors: Science Programs, Water, Elementary School Science, Science Education
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Smith, Patricia J., Ed. – Journal of Chemical Education, 1986
Andy S. W. Sae shows how to stimulate interest in science by using a chemical magic show for teaching at the pre-high school level. Richard D. Barnes describes Kinderchem, a visiting science program for the elementary classroom. (JN)
Descriptors: Chemistry, Elementary Education, Elementary School Science, Science Education
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Cannon, George E. – Science and Children, 1994
Describes how to organize "SMATH TECH--For Kids Only!" a two-day convention for elementary students focusing on science, mathematics, and technology. The convention costs about $4,000 for 300 students to attend. (PR)
Descriptors: Elementary Education, Elementary School Science, Science Activities, Science Education
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Moore, John A. – Journal of College Science Teaching, 1984
Presents the background and rationale for the Science as a Way of Knowing Project. Also offers suggestions for incorporating the teaching of science as a way of knowing into science classes in general and in the teaching of evolution in college courses in particular. (JN)
Descriptors: Biology, College Science, Evolution, Higher Education
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Science Teacher, 1985
Described are techniques and activities that seven different teachers are using in their chemistry programs. These programs were selected as winners of the 1983-84 Search for Excellence in Science Education. (DH)
Descriptors: Chemistry, Demonstration Programs, High Schools, Science Activities
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Wang, Denis – Science Teacher, 1994
Describes an innovative, but not revolutionary, secondary education science program that is modeled after American graduate education. Discussions include a comparison of pedagogical approaches, implementation, the teacher, facilities, and teaching strategies. (ZWH)
Descriptors: Demonstration Programs, High Schools, Learning Activities, Science Activities
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Brown, Carol Bentley – Journal of Chemical Education, 1985
Describes the science program at Incarnate Word, a private Catholic girls' college preparatory school in San Antonio (Texas). Focuses on the chemistry curriculum and the instructional strategies/materials (such as learning activity packets) used in the curriculum. (JN)
Descriptors: Catholic Schools, Chemistry, Females, High Schools
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Arons, Arnold B. – Physics Teacher, 1993
Defines a few major reasons for the frequent failure of laboratory instructional methods and outlines some modes of thinking that seem to promise greater effectiveness and firmer justification for maintaining the laboratory as an essential component of physics teaching. (MVL)
Descriptors: Futures (of Society), Higher Education, Inquiry, Physics
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