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Pallone, A.; Barnes, P. – Physics Education, 2016
Basic understanding of nuclear science enhances our daily-life experience in many areas, such as the environment, medicine, electric power generation, and even politics. Yet typical school curricula do not provide for experiments that explore the topic. We present a means by which educators can use the ubiquitous webcam and inexpensive sources of…
Descriptors: Nuclear Physics, Radiation, Science Experiments, Science Curriculum
Fung, Fun Man – Journal of Chemical Education, 2015
The current model of flipped classroom ensures that learning is not being restricted to the brick and mortar setting. Lessons can be conducted anywhere, anytime, as long as there is a good internet connection. Most of the flipped classroom and e-lectures are videos recording PowerPoint slides with a human voice as the audio instruction. In…
Descriptors: Chemistry, Science Laboratories, Blended Learning, Science Instruction
Flowers, Paul A. – Journal of Chemical Education, 2011
A simple and versatile approach to incorporating basic optical microscopy in the undergraduate instrumental analysis laboratory is described. Attaching a miniature CCD spectrometer to the video port of a standard compound microscope yields a visible microspectrophotometer suitable for student investigations of fundamental spectrometry concepts,…
Descriptors: Video Technology, Chemistry, Science Laboratories, Science Experiments
Brown, Douglas; Cox, Anne J. – Physics Teacher, 2009
The value of video analysis in physics education is well established, and both commercial and free educational video analysis programs are readily available. The video format is familiar to students, contains a wealth of spatial and temporal data, and provides a bridge between direct observations and abstract representations of physical phenomena.…
Descriptors: Computer Uses in Education, Physics, Motion, Video Technology

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