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Olson, Joanne – Science and Children, 2008
Helping young children avoid developing deeply held misconceptions and promoting developmentally appropriate Nature of Science (NOS) ideas will establish a foundation for students from which they will later develop more accurate and sophisticated NOS understanding. This article delineates important NOS ideas and practical K-4 classroom teaching…
Descriptors: Scientific Principles, Misconceptions, Teaching Methods, Science Instruction
Courtois, Matthieu; Guirao, Boris; Fort, Emmanuel – European Journal of Physics, 2008
It is well known that the pitch of the sound produced by an excited glass shell can be tuned by adding some liquid in it. In this paper, it will be proved that the distribution of the liquid inside the shell plays a crucial role in this frequency shift. Thus it provides another way to tune the pitch of the sound by modifying the liquid…
Descriptors: Energy, Mechanics (Physics), Acoustics, Science Instruction
Stepath, Carl M.; Bacon, Joseph Scott – Online Submission, 2010
This seven to eight week hands-on Marine Debris Clean-up Project used a service project to provide an introduction of marine science ecology, watershed interrelationships, the scientific method, and environmental stewardship to 8th grade middle school students. It utilized inquiry based learning to introduce marine debris sources and impacts to…
Descriptors: Scientific Methodology, Scientific Principles, Inquiry, Hands on Science
Long, David E. – Cultural Studies of Science Education, 2010
Discussing themes from my paper "Scientists at play in a field of the Lord," three forum participants identify and discuss continuing social and epistemological issues which continue to challenge effective evolution education. I extend these themes and further amplify the vexing nature of an effective dialectic regarding evolution, especially for…
Descriptors: Evolution, Scientific Principles, Religion, Creationism
Almquist, Heather; Stanley, George; Blank, Lisa; Hendrix, Marc; Rosenblatt, Megan; Hanfling, Seymour; Crews, Jeffrey – Journal of Geoscience Education, 2011
The Paleo Exploration Project was a professional development program for K-12 teachers from rural eastern Montana. The curriculum was designed to incorporate geospatial technologies, including Global Positioning Systems (GPS), Geographic Information Systems (GIS), and total station laser surveying, with authentic field experiences in geology and…
Descriptors: Earth Science, Science Instruction, Faculty Development, Elementary Secondary Education
Akerson, Valarie L.; Cullen, Theresa A.; Hanson, Deborah L. – Journal of Research in Science Teaching, 2009
This study explored the development of a community of learners through a professional development program to improve teachers' views of nature of science (NOS) and teaching practice. The "Views of Nature of Science" questionnaire and interviews were used to assess teachers' conceptions of NOS three times over the course of the study. Notes and…
Descriptors: Scientific Principles, Workshops, Faculty Development, Teaching Methods
Lundqvist, Eva; Almqvist, Jonas; Ostman, Leif – Science Education, 2009
In this paper, we describe two central epistemological norms related to the importance of making investigations and to scientific language and its logic. These norms have been identified in empirical material consisting of 200 video-recorded lessons in three different science classes. With regard to the learning of science and socialization, we…
Descriptors: Classroom Communication, Scientific Principles, Epistemology, Science Education
Kapon, S.; Ganiel, U.; Eylon, B. – Physics Education, 2009
This article presents an approach to integrating public e-lectures on contemporary physics into a traditional high-school syllabus. This approach was used in a long-distance professional development course for in-service physics teachers. Each lecture was related to a specific obligatory syllabus chapter, and was accompanied by learner-centred…
Descriptors: Scientific Principles, Physics, Science Instruction, Teaching Methods
Rudge, David W.; Howe, Eric M. – Science & Education, 2009
Monk and Osborne ("Sci Educ" 81:405-424, 1997) provide a rigorous justification for why history and philosophy of science should be incorporated as an integral component of instruction and a model for how history of science should be used to promote learning of and about science. In the following essay we critique how history of science is used on…
Descriptors: Teaching Methods, Scientific Principles, Problem Solving, Scientists
Portides, Demetris P. – Science & Education, 2007
The notions of "idealisation" and "approximation" are strongly linked to the question of "how our theories represent the phenomena in their scope". Although there is no consensus amongst Philosophers on the nature of the process of idealisation and how it affects theoretical representation, at the level of science education much can be gained from…
Descriptors: Science Education, Teaching Methods, Science Instruction, Scientific Principles
Hobson, Art – Physics Teacher, 2007
Although the resolution to the wave-particle paradox has been known for 80 years, it is seldom presented. Briefly, the resolution is that material particles and photons are the quanta of extended spatially continuous but energetically quantized fields. But because the resolution resides in quantum field theory and is not usually spelled out in…
Descriptors: Quantum Mechanics, Physics, Science Instruction, Scientific Principles
Piccioni, R. G. – Physics Teacher, 2007
Too often, students in introductory courses are left with the impression that Einstein's special theory of relativity comes into play only when the relative speed of two objects is an appreciable fraction of the speed of light ("c"). In fact, relativistic length contraction, along with Coulomb's law, accounts quantitatively for the force on a…
Descriptors: Physics, Magnets, Scientific Principles, Science Instruction
Lietz, Martha – Physics Teacher, 2007
Teachers have been building mystery circuits or so-called "black box circuits" to use as a demonstration with their students for years. This paper presents an easy way to make simple mystery circuits using inexpensive light fixtures (see Fig. 1) available at almost any home improvement store. In a black box circuit, only the lightbulbs are visible…
Descriptors: Science Instruction, Light, Physics, Energy
Van Hook, Stephen J. – Physics Teacher, 2007
The pages of "The Physics Teacher" have featured several clever designs for homemade diffraction gratings using a variety of materials--cloth, lithographic film, wire, compact discs, parts of aerosol spray cans, and pseudoliquids and pseudosolids. A different and inexpensive method I use to make low-resolution diffraction gratings takes advantage…
Descriptors: Science Instruction, Physics, Inquiry, Teaching Methods
Hecking, Patrick C. – Physics Teacher, 2007
In electric or mixed electric-mechanic systems, the distinction between potential and kinetic energy is not as clear as in purely mechanical systems. A solution for the motion of an inductively loaded rail generator is presented. In this case, the magnetic field energy (1/2)Li[superscript 2] can be written "formally" in terms of a potential…
Descriptors: Science Instruction, Motion, Magnets, Scientific Principles

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