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Horibe, Shusaku; Underwood, Bret – Physics Education, 2009
Classroom activities that include the process of model building, in which students build simplified physical representations of a system, have the potential to help students make meaningful connections between physics and the real world. We describe a lesson designed with this intent for an introductory college classroom that engages students in…
Descriptors: Class Activities, Learning Activities, Teaching Methods, Relevance (Education)
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Ng, Pun-hon; Wong, Siu-ling; Mak, Se-yuen – Physics Education, 2009
In this article, we describe a simple method which can be used to measure the efficiency of a low power dc motor, a motor-converted dynamo and a coupled motor-dynamo module as a function of the speed of rotation. The result can also be used to verify Faraday's law of electromagnetic induction. (Contains 1 table and 8 figures.)
Descriptors: Energy, Science Instruction, Physics, Magnets
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Wiediger, Susan D. – Journal of Chemical Education, 2009
The periodic table and the periodic system are central to chemistry and thus to many introductory chemistry courses. A number of existing activities use various data sets to model the development process for the periodic table. This paper describes an image arrangement computer program developed to mimic a paper-based card sorting periodic table…
Descriptors: Discussion (Teaching Technique), Science Instruction, Chemistry, Computer Software
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Millard, Julie T. – Journal of Chemical Education, 2009
Several case studies from popular television medical dramas are described for use in an undergraduate biochemistry course. These cases, which illustrate fundamental principles of biochemistry, are used as the basis for problems that can be discussed further in small groups. Medical cases provide an interesting context for biochemistry with video…
Descriptors: Biochemistry, Case Studies, Television, Drama
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Hanegan, Nikki; Friden, Kelley; Nelson, C. Riley – School Science and Mathematics, 2009
Science is a dynamic discipline, representative of the nature of science. Yet, young science students continue to think everything is already discovered. In this study, we examine why students are not actively doing science. From professional development to student engagement, how are classrooms and students changing as we increase teachers'…
Descriptors: Scientific Principles, Professional Development, Teaching Methods, Pedagogical Content Knowledge
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Hanegan, Nikki L.; Bigler, Amber – Journal of Science Education and Technology, 2009
Societal benefit depends on the general public's understandings of biotechnology (Betsch in "World J Microbiol Biotechnol" 12:439-443, 1996; Dawson and Cowan in "Int J Sci Educ" 25(1):57-69, 2003; Schiller in "Business Review: Federal Reserve Bank of Philadelphia" (Fourth Quarter), 2002; Smith and Emmeluth in "Am Biol Teach" 64(2):93-99, 2002). A…
Descriptors: Scientific Principles, Science Laboratories, Biotechnology, Biology
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Howe, Christine – Human Development, 2009
Evidence exists that children's understanding can be facilitated through collaborative group work with peers, but little is known about the underlying processes. When processes are discussed, they are typically assumed to involve the assimilation of superior ideas that are constructed jointly. However, the assimilation of joint constructions…
Descriptors: Cooperative Learning, Group Dynamics, Group Activities, Cooperation
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Vollmer, M. – European Journal of Physics, 2009
The cooling of objects is often described by a law, attributed to Newton, which states that the temperature difference of a cooling body with respect to the surroundings decreases exponentially with time. Such behaviour has been observed for many laboratory experiments, which led to a wide acceptance of this approach. However, the heat transfer…
Descriptors: Heat, Climate, Laboratory Experiments, Scientific Principles
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Kraftmakher, Yaakov – European Journal of Physics, 2009
When data with and without an optically active sample are acquired simultaneously while one manually rotates the analyser, the graph of the first signal versus the second one is an ellipse whose shape shows the phase shift between the two signals; this shift is twice the optical rotation. There is no need to measure the rotation of the analyser or…
Descriptors: Optics, Science Instruction, Motion, Scientific Principles
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Reid, Thomas F.; King, Stephen C. – PRIMUS, 2009
A common example of real-world motion that can be modeled by a differential equation, and one easily understood by the student, is the simple pendulum. Simplifying assumptions are necessary for closed-form solutions to exist, and frequently there is little discussion of the impact if those assumptions are not met. This article presents a…
Descriptors: Mathematical Models, Motion, Calculus, Science Instruction
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Anzivino, Barbara; Tilley, Leon J.; Ingalls, Laura R.; Hall, Adam B.; Drugan, John E. – Journal of Chemical Education, 2009
An undergraduate organic chemistry experiment demonstrating real-life application of GC-MS to arson accelerant identification is described. Students are given the task of comparing a sample recovered from a "crime scene" to that from a "suspect's clothing". Accelerants subjected to different conditions are recovered using a quick and simple…
Descriptors: Organic Chemistry, Classification, Anxiety, College Science
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Wolyniak, Michael J.; Alvarez, Consuelo J.; Chandrasekaran, Vidya; Grana, Theresa M.; Holgado, Andrea; Jones, Christopher J.; Morris, Robert W.; Pereira, Anil L.; Stamm, Joyce; Washington, Talitha M.; Yang, Yixin – CBE - Life Sciences Education, 2010
Synthetic biology is the application of engineering and mathematical principles to develop novel biological devices and circuits. What separates synthetic biology from traditional molecular biology is the development of standardized interchangeable DNA "parts," just as advances in engineering in the nineteenth century brought about standardized…
Descriptors: Genetics, Biology, Workshops, Consortia
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Plomer, Michael; Jessen, Karsten; Rangelov, Georgi; Meyer, Michael – Physical Review Special Topics - Physics Education Research, 2010
The learning outcome of a physics laboratory course for medical students was examined in an interdisciplinary field study and discussed for the electrical physiology ("Propagation of Excitation and Nerve Cells"). At the Ludwig-Maximilians-University of Munich (LMU) at a time about 300 medicine students were assessed in two successive…
Descriptors: Science Experiments, Scientific Principles, Concept Mapping, Medical Students
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Taber, Keith S.; Garcia-Franco, Alejandra – Journal of the Learning Sciences, 2010
This article explores 11- to 16-year-old students' explanations for phenomena commonly studied in school chemistry from an inclusive cognitive resources or knowledge-in-pieces perspective that considers that student utterances may reflect the activation of knowledge elements at a range of levels of explicitness. We report 5 themes in student…
Descriptors: Physics, Chemistry, Learning Processes, Intuition
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Cavagnetto, Andy; Hand, Brian M.; Norton-Meier, Lori – International Journal of Science Education, 2010
This case study aimed to determine the nature of student interactions in small groups in an elementary classroom utilizing the Science Writing Heuristic approach. Fifth grade students were audio-recorded over four units of study while working in small groups to generate knowledge claims after conducting student-directed investigations. Analysis…
Descriptors: Science Instruction, Classroom Communication, Heuristics, Elementary School Science
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