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Lunde, Torodd; Rundgren, Shu-Nu Chang; Drechsler, Michal – Electronic Journal of Science Education, 2016
This study aimed to explore lower secondary teachers' negotiation of the meaning of laboratory work in a professional development program. A total of 15 in-service teachers participated in the program. In the program, tensions between key ideas concerning traditional way of addressing laboratory work -- with emphasis on subject content and skills…
Descriptors: Foreign Countries, Science Laboratories, Faculty Development, Professional Continuing Education
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Kipnis, Nahum – Science & Education, 2011
This paper analyses the real origin and nature of scientific errors against claims of science critics, by examining a number of examples from the history of electricity and optics. This analysis leads to a conclusion that errors are a natural and unavoidable part of scientific process. If made available to students, through their science teachers,…
Descriptors: Optics, Science Teachers, Science Education, Energy
Burgin, Stephen Randall – ProQuest LLC, 2012
Understanding the ways in which scientific knowledge develops, or the epistemology of science, is believed to be a crucial component of scientific literacy. This construct is more formally known as Nature of Science (NOS) within the science education community. The merits of three different approaches to NOS teaching and learning in the context of…
Descriptors: Scientific Research, Scientific Principles, Epistemology, Scientific Literacy
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Cooper, Michael; Dhawale, Shree; Mustafa, Ahmed – Bioscene: Journal of College Biology Teaching, 2009
A straightforward and inexpensive laboratory experiment is presented that investigates the physiological stress response of zebrafish after a 5 degree C increase in water temperature. This experiment is designed for an undergraduate physiology lab and allows students to learn the scientific method and relevant laboratory techniques without causing…
Descriptors: Scientific Methodology, Physiology, Laboratory Experiments, College Science
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Wong, Siu Ling; Hodson, Derek – Science Education, 2009
This study sought to identify prominent features of the nature of science (NOS) embedded in authentic scientific inquiry. Thirteen well-established scientists from different parts of the world, working in experimental or theoretical research, in both traditional fields such as astrophysics and rapidly growing research fields such as molecular…
Descriptors: Scientific Principles, Scientists, Scientific Concepts, Scientific Attitudes
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Knipp, Peter A. – Physics Teacher, 2009
Students learn about physical laws and the scientific method when they analyze experimental data in a laboratory setting. Three common sources exist for the experimental data that they analyze: (1) "hands-on" measurements by the students themselves, (2) electronic transfer (by downloading a spreadsheet, video, or computer-aided data-acquisition…
Descriptors: Scientific Methodology, Physics, Scientific Principles, Science Experiments
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Windschitl, Mark; Thompson, Jessica; Braaten, Melissa – Science Education, 2008
One hundred years after its conception, the scientific method continues to reinforce a kind of cultural lore about what it means to participate in inquiry. As commonly implemented in venues ranging from middle school classrooms to undergraduate laboratories, it emphasizes the testing of predictions rather than ideas, focuses learners on material…
Descriptors: Teaching Methods, Scientific Methodology, Scientific Principles, Science Laboratories
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Olson, Joanne K.; Cox-Peterson, Anne M. – Science and Children, 2001
Recommends using authentic science conferences as a way of teaching about critical issues in science, how scientists work, and the role of conferences. Includes classroom activities of inquiry-based investigations in which students present their collected data at a conference. (YDS)
Descriptors: Computers, Conferences, Elementary Education, Inquiry
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Colburn, Alan – Science Teacher, 2004
Scientific knowledge is tentative and open to revision. This sense of tentativeness, or changeability, is missing in the way textbooks and teachers often portray the nature of science (NOS). Instead, students are left with the impression that the scientific method produces sure knowledge and that they can uncritically accept the knowledge because…
Descriptors: Textbooks, Scientific Principles, Laboratory Experiments, Scientific Methodology
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Rutledge, Michael L.; Mathis, Philip M.; Seipelt, Rebecca L. – Bioscene: Journal of College Biology Teaching, 2005
As students apply their knowledge of scientific concepts and of science as a method of inquiry, learning becomes relevant. This laboratory exercise is designed to foster students' understanding of the genetics of quantitative traits and of the nature of science as a method of inquiry by engaging them in a real-world business scenario. During the…
Descriptors: Legal Problems, Scientific Research, Intellectual Property, Scientific Principles