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Tseitlin, Michael; Galili, Igal – Science & Education, 2005
The crisis in physics education necessitates searching for new relevant meanings of physics knowledge. This paper advocates regarding physics as the dialogue among discipline-cultures, rather than as a cluster of disciplines to be an appropriate subject of science education. In a discipline-culture one can distinguish elements of knowledge as…
Descriptors: Intellectual Disciplines, Physics, Science Instruction, Scientific Principles
Guisasola, Jenaro; Almudi, Jose M.; Furio, Carlos – Science & Education, 2005
This study aims to analyse, based on common characteristics of the Nature of Science, how first year university Physics textbooks present the introduction of the concept and theories of magnetic field. It shows that despite the increasing number of studies into the Nature of Science in Science Education, Physics textbooks fail to adopt the results…
Descriptors: Textbooks, Scientific Principles, Physics, Science Instruction
Abiko, Seiya – Science & Education, 2005
Einstein, who had already developed the light-quantum theory, knew the inadequacy of Maxwell's theory in the microscopic sphere. Therefore, in writing his paper on special relativity, he had to set up the light-velocity postulate independently of the relativity postulate in order to make the electromagnetic foundation of physics compatible with…
Descriptors: Thermodynamics, Quantum Mechanics, Motion, Science Instruction
Kipnis, Nahum – Science & Education, 2005
Ignoring the role of chance in science distorts the nature of the scientific process. Teachers can address this issue by means of several in-depth historical case studies, such as the discovery of electromagnetism by Oersted. Oersted was led to his lecture experiment by logic (two new hypotheses), but its success from the first trial was largely…
Descriptors: Science History, Logical Thinking, Science Instruction, Magnets
Peters, Randall D. – Science & Education, 2004
When identifying instruments that have had great influence on the history of physics, none comes to mind more quickly than the pendulum. Though first treated scientifically by Galileo in the 16th century, and in some respects nearly "dead" by the middle of the 20th century; the pendulum experienced "rebirth" by becoming an archetype of chaos. With…
Descriptors: Mechanics (Physics), Science Instruction, History, Motion
Newburgh, Ronald – Science & Education, 2004
The simple pendulum is a model for the linear oscillator. The usual mathematical treatment of the problem begins with a differential equation that one solves with the techniques of the differential calculus, a formal process that tends to obscure the physics. In this paper we begin with a kinematic description of the motion obtained by experiment…
Descriptors: Mechanics (Physics), Laboratory Equipment, Motion, Computation
Ceci, Stephen J. – American Psychologist, 2003
The author describes his program of research over the past 25 years. This research falls into 6 areas that are interdependent and that inform each other. The overall program is guided by 3 bioecological principles that posit the need for proximal processes and motivation to actualize biological potential. The author presents examples of…
Descriptors: Ability, Self Motivation, Aptitude, Scientific Principles
Da-Silva, Consuelo; Mellado, Vicente; Ruiz, Constantino; Porlan, Rafael – Science Education, 2007
We describe a longitudinal study of a secondary education biology teacher at two moments in her career (1993-2002), determining the changes in her conceptions of the nature of science and its teaching and learning, and the factors that favored or hindered such changes. The changes were analyzed using cognitive maps, constructed on the basis of the…
Descriptors: Scientific Principles, Longitudinal Studies, Biology, Secondary Education
Charney, Jeff; Hmelo-Silver, Cindy E.; Sofer, William; Neigeborn, Lenore; Coletta, Susan; Nemeroff, Martin – International Journal of Science Education, 2007
This study investigates how high school students respond to an environment of authentic science inquiry while participating in an intensive summer institute, the Waksman Student Scholars Programme at Rutgers University. We examined how students apprenticed with expert scientists in a study of contemporary questions in molecular genetics. Students…
Descriptors: Seminars, Genetics, Scientific Principles, Science Experiments
Stylianides, Andreas J. – Educational Studies in Mathematics, 2007
Despite increased appreciation of the role of "proof" in students' mathematical experiences across "all" grades, little research has focused on the issue of understanding and characterizing the notion of proof at the elementary school level. This paper takes a step toward addressing this limitation, by examining the characteristics of four major…
Descriptors: Elementary School Mathematics, Mathematics Education, Mathematical Logic, Validity
Liu, Shiang-Yao; Lederman, Norman G. – International Journal of Science Education, 2007
This study explores the relationship, if any, between an individual's culturally based worldviews and conceptions of nature of science. In addition, the implications of this relationship (or lack of relationship) for science teaching and learning are discussed. Participants were 54 Taiwanese prospective science teachers. Their conceptions of…
Descriptors: World Views, Scientific Enterprise, Science Curriculum, Science Teachers
Kober, Martin; Koch, Ben; Bleicher, Marcus – European Journal of Physics, 2007
This paper reports on a student summer project performed in 2006 at the University of Frankfurt. It is addressed to undergraduate students familiar with the basic principles of relativistic quantum mechanics and general relativity. The aim of the project was to study the Dirac equation in curved spacetime. To obtain the general relativistic Dirac…
Descriptors: Undergraduate Students, Quantum Mechanics, Nuclear Physics, College Science
Chiappetta, Eugene L.; Fillman, David A. – International Journal of Science Education, 2007
Five high school biology textbooks were examined to determine the inclusion of four aspects of the nature of science: (a) science as a body of knowledge, (b) science as a way of investigating, (c) science as a way of thinking, and (d) science and its interactions with technology and society. The textbooks analyzed were "BSCS Biology--A Human…
Descriptors: Natural Sciences, Textbooks, Scientific Principles, Scientific Enterprise
Lehr, Jane L.; McCallie, Ellen; Davies, Sarah R.; Caron, Brandiff R.; Gammon, Benjamin; Duensing, Sally – International Journal of Science Education, 2007
In the past five years, informal science institutions (ISIs), science communication, advocacy and citizen action groups, funding organizations, and policy-makers in the UK and the USA have become increasingly involved in efforts to promote increased public engagement with science and technology (PEST). Such engagement is described as taking place…
Descriptors: Scientific Principles, Social Scientists, Science and Society, Discourse Communities
LaRiviere, Frederick J.; Miller, Lisa M.; Millard, Julie T. – Journal of Chemical Education, 2007
We describe a service-learning course in which college students developed hands-on chemistry laboratory activities for elementary school children. These activities were then conducted with children both in area classrooms and in our own laboratories. This course allowed our students to apply their knowledge of chemical principles while introducing…
Descriptors: Elementary School Students, Chemistry, Science Laboratories, Service Learning

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