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Price, Edward; Simon, Beth – Physics Teacher, 2009
Digital lecturing systems (computer and projector, often with PowerPoint) offer physics instructors the ability to incorporate graphics and the power to share and reuse materials. But these systems do a poor job of supporting interaction in the classroom. For instance, with digital presentation systems, instructors have limited ability to…
Descriptors: Learning Activities, Physics, Computer Uses in Education, Educational Technology
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)
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
Mundell, Donald W. – Journal of Chemical Education, 2009
Intermolecular forces and surface tension gradients in solutions lead to remarkable flows, known as Marangoni flows, where liquid flows from a region of low surface tension towards higher surface tension. Details of these flows, not visible to the naked eye, are made visible on an overhead projector owing to variation in the index of refraction.…
Descriptors: Projection Equipment, Chemistry, Human Body, Gardening
Kumar, B. P. Ajith; Satyanarayana, V. V. V.; Singh, Kundan; Singh, Parmanand – Physics Education, 2009
A simple, flexible and very low cost hardware plus software framework for developing computer-interfaced science experiments is presented. It can be used for developing computer-interfaced science experiments without getting into the details of electronics or computer programming. For developing experiments this is a middle path between…
Descriptors: Computer Software, Computer Uses in Education, Science Instruction, Teaching Methods
Santos, Wilma M.S.; Luiz, Adir M.; de Carvalho, Carlos R. – Physics Education, 2009
This article presents an approach to integrate contemporary physics into high-school teaching. We present a simple way to understand mass spectroscopy using basic physics concepts, so that high-school students may have contact with recent topics of modern research. The main features of a time-of-flight (TOF) mass spectrometer using secondary…
Descriptors: Physics, High Schools, Science Instruction, Secondary School Science
McKinney, Julie; Hademenos, George – Physics Teacher, 2009
Cross-curricular secondary instructional strategies exist in many different forms and can be applied to any two or more curricular disciplines. Most importantly, these strategies have been proven to be effective in improving learning and comprehension of important concepts across all curricular fields involved in the activity. There is no…
Descriptors: Integrated Curriculum, Scientific Concepts, Writing Across the Curriculum, English (Second Language)
Ruiz, Michael J. – Physics Teacher, 2009
Video analysis of motion has been in use now for some time. However, some teachers may not have video equipment or may be looking for innovative ways to engage students with interesting applications at no cost. The recent advent of YouTube offers opportunities for students to measure kinematic properties of real-life events using their computers.…
Descriptors: Physics, Motion, Educational Opportunities, Science Activities
Suto, W. M. Irenka; Nadas, Rita – Research Papers in Education, 2009
It has long been established that marking accuracy in public examinations varies considerably among subjects and markers. This is unsurprising, given the diverse cognitive strategies that the marking process can entail, but what makes some questions harder to mark accurately than others? Are there distinct but subtle features of questions and…
Descriptors: National Curriculum, Physics, Interviews, Examiners
Even, C.; Bouquet, F.; Remond, J.; Deloche, B. – European Journal of Physics, 2009
As an experimental project proposed to students in fourth year of university, a viscometer was developed, consisting of a small magnet levitating in a viscous fluid. The viscous force acting on the magnet is directly measured: viscosities in the range 10-10[superscript 6] mPa s are obtained. This experiment is used as an introduction to complex…
Descriptors: Physics, Measurement Techniques, Magnets, Science Experiments
Emepue, Nicholas; Soyibo, Kola – International Journal of Science and Mathematics Education, 2009
This study was designed to assess whether the level of performance of selected Jamaican 11th-grade physics students on some numerical problems on the energy concept was satisfactory and if there were significant differences in their performance linked to their gender, socioeconomic background (SEB), school location, English language and…
Descriptors: Urban Schools, Rural Schools, Academic Achievement, Physics
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
Fullekrug, M. – Physics Education, 2009
The electromagnetic environment is composed of electric and magnetic fields which result from man-made and natural sources. An elementary experiment is described to explore the electromagnetic environment by measuring electric fields in the frequency range from approximately equal to 10 to 24 000 Hz. The equipment required to conduct the…
Descriptors: Physics, Science Instruction, Magnets, Energy
Heck, Andre; Vonk, Ron – Physics Education, 2009
Physics teachers often like to discuss physics concepts with their students on the basis of simple demonstration experiments. In this article, we discuss an experiment for which one only needs a few coins of the same denomination and a wooden stick: the coins are laid alongside the stick on a horizontal surface, the stick is rotated about one of…
Descriptors: Physics, Science Instruction, Demonstrations (Educational), Science Experiments
Urban, Michael J., Ed.; Falvo, David A., Ed. – IGI Global, 2016
The application of technology in classroom settings has equipped educators with innovative tools and techniques for effective teaching practice. Integrating digital technologies at the elementary and secondary levels helps to enrich the students' learning experience and maximize competency in the areas of science, technology, engineering, and…
Descriptors: Elementary Secondary Education, STEM Education, Outcomes of Education, Technology Integration

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