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Brossard, Dominique; Lewenstein, Bruce; Bonney, Rick – International Journal of Science Education, 2005
This paper discusses the evaluation of an informal science education project, The Birdhouse Network (TBN) of the Cornell Laboratory of Ornithology. The Elaboration Likelihood Model and the theory of Experiential Education were used as frameworks to analyse the impact of TBN on participants' attitudes toward science and the environment, on their…
Descriptors: Program Effectiveness, Ornithology, Attitude Change, Biology
Kawasaki, Keiko; Herrenkohl, Leslie Rupert; Yeary, Sherry A. – International Journal of Science Education, 2004
The purpose of this paper is to carefully examine the evolution of students' theory building and modeling, critical components of scientific epistemologies, over a unit of study on sinking and floating in one third/fourth grade classroom. The study described in this paper follows in the tradition of Design Experiments (Brown 1992, Collins 1990)…
Descriptors: Elementary Education, Science Instruction, Elementary School Science, Scientific Principles
Egan, Todd P.; Meekins, J. Forrest; Maluso, Diane – Bioscene: Journal of College Biology Teaching, 2004
This laboratory exercise affords students a hands-on experience learning about traditional dyes, fiber strength, and paper making. It is economical, simple to prepare, provides satisfactory results, and is student friendly. Dyes were extracted from plant leaves, stems, roots, and fruits. Hard-boiled eggs were place in the dyes for 15 minutes to…
Descriptors: Nonmajors, College Science, Botany, Science Instruction
Forrest, Barbara; Branch, Glenn – Academe, 2005
In 1999, William Dembski became director of the newly established Michael Polanyi Center at Baylor University, thanks to the support of Baylor's president Robert Sloan. The center was, as Dembski observed, "the first intelligent design think tank at a research university." As such, it fulfilled a crucial objective of the "intelligent design"…
Descriptors: Research Universities, Creationism, Evolution, Science Education
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
Grossman, Gayanne; Krasnow, Donna; Welsh, Thomas M. – Journal of Dance Education, 2005
This article offers a specific example of the benefits that might result from integrating scientific principles into the daily practice of dance training. Using the mastery of turnout as our focus, we 1. describe the anatomy of turnout in terms familiar to the dance artist, 2. explore conditioning and imagery work designed to improve the use of…
Descriptors: Dance, Dance Education, Scientific Principles, Anatomy
Shmaefsky, Brian – Journal of College Science Teaching, 2004
Demonstrations are sometimes perceived as merely entertaining and expendable ancillaries for lectures and laboratory sessions. Nothing can be further from the truth. If done properly, demonstrations have much more value than lectures and labs when used to teach critical thinking in the sciences. There are effective ways to model scientific…
Descriptors: Scientific Principles, Demonstrations (Educational), Teaching Methods, Science Instruction
Colorado Department of Education, 2007
The Colorado Model Content Standards for Science specify what all students should know and be able to do in science as a result of their school studies. Specific expectations are given for students completing grades K-2, 3-5, 6-8, and 9-12. Five standards outline the essential level of science knowledge and skills needed by Colorado citizens to…
Descriptors: Academic Standards, State Standards, Space Sciences, Scientific Principles
Akarsu, Bayram – Online Submission, 2007
This study investigates relationships between understanding of nature of science and four key factors elementary science teachers possess, which are: (1) Their specializations in different science areas (Physics, chemistry, and biology), (2) Gender issues, (3) How long they have been teaching in elementary school environments, (4) Their…
Descriptors: Elementary School Science, Scientific Principles, Science Teachers, Teaching Experience
Khishfe, Rola; Lederman, Norman – International Journal of Science Education, 2007
The study investigated the relationship between instructional context (integrated and non-integrated) that explicitly teaches about nature of science (NOS) and students' view of NOS across different disciplines. Participants were three teachers and their students, which comprised six classes of 89 ninth-graders and 40 10th/11th-graders. Each…
Descriptors: Scientific Principles, Secondary School Science, Secondary School Students, Matched Groups
Akerson, Valarie L.; Hanuscin, Deborah L. – Journal of Research in Science Teaching, 2007
This study assessed the influence of a 3-year professional development program on elementary teachers' views of nature of science (NOS), instructional practice to promote students' appropriate NOS views, and the influence of participants' instruction on elementary student NOS views. Using the VNOS-B and associated interviews the researchers…
Descriptors: Teaching Methods, Scientific Principles, Faculty Development, Professional Development
Tytler, Russell – Journal of Science and Mathematics Education in Southeast Asia, 2007
There is ample evidence that in many countries school science is in difficulty, with declining student attitudes and uptake of science. This presentation argues that a key to addressing the problem lies in transforming teachers' classroom practice, and that pedagogical innovation is best supported within a school context. Evidence for effective…
Descriptors: Strategic Planning, Educational Change, Foreign Countries, Professional Continuing Education
Reis, Pedro; Galvao, Cecilia – International Journal of Science Education, 2007
In this article the authors resort to a qualitative analysis of the plot of science fiction stories about a group of scientists, written by two 11th-grade Earth and Life Science students (aged 17), and to semi-structured interviews, with the double purpose of diagnosing their conceptions of the nature of science (namely, as regards scientists'…
Descriptors: Scientists, Secondary School Students, Epistemology, Science Fiction
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
Young, Betty – Principal, 2007
Science testing, as mandated by the No Child Left Behind (NCLB) Act, has refocused attention on the quality of the K-8 science curriculum and instruction in many districts around the country. It has become clear that to improve quality, and meet NCLB requirements, elementary and middle schools must develop different teaching approaches and…
Descriptors: Middle Schools, Elementary Schools, Federal Legislation, Scientific Principles

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