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Broomfield, H.; Hirst, J.; Raven, M.; Joos, M.; Vafeiadis, T.; Chung, T. K.; Harrow, J.; Khoo, D.; Kwok, T.; Li, J.; Mandelstam, H.; Martin-Halls, J.; Perkins, R.; Singh, A.; Southwell, J.; Tsui, A.; Tsui, K.; Townsend, D.; Watson, H. – Physics Education, 2018
The CERN Beamline for Schools Competition gives high school students the opportunity to perform an experiment of their design using the T9 facility. Our team, 'Relatively Special', was fortunate enough to be joint winners of this global event and travel to CERN for a unique adventure. This paper gives an account of our story including the…
Descriptors: Science Instruction, High School Students, Secondary School Science, Science Experiments
Hill, Trevor – Physics Education, 2019
Comfort whilst camping overnight during outdoor pursuits is based on pain free and warm sleeping arrangements and is highly dependent on the performance of the sleeping bag and sleeping mat. In adventurous and challenging situations, performance can contribute to safety and expedition success. From the manufacturer's point of view, thermal…
Descriptors: Physics, Science Instruction, Teaching Methods, Recreational Activities
Whyntie, T.; Parker, B. – Physics Education, 2013
The Timepix hybrid silicon pixel detector has been used to investigate the inverse square law of radiation from a point source as a demonstration of the CERN [at] school detector kit capabilities. The experiment described uses a Timepix detector to detect the gamma rays emitted by an [superscript 241]Am radioactive source at a number of different…
Descriptors: Science Instruction, Physics, Scientific Principles, Science Experiments
Hare, Jonathan – Physics Education, 2010
Described is a simple low cost home-made device that converts the radio wave energy from a mobile phone signal into electricity for lighting an LED. No battery or complex circuitry is required. The device can form the basis of a range of interesting experiments on the physics and technology of mobile phones. (Contains 5 figures.)
Descriptors: Telecommunications, Lighting, Scientific Principles, Energy
Starrett, Malin J. – Physics Education, 2008
The science and technology of radio receives little attention in contemporary education. This article discusses ways to explore the basic operating principles of radio. (Contains 4 figures, 3 footnotes, and 2 notes.)
Descriptors: Science Instruction, Information Technology, Science Experiments, Physics

Robinson, Valerie Wood; Watson, Rod; Goldsworthy, Anne – Education in Science, 1999
Discusses ways for teachers to help students understand how to ask questions appropriate for scientific inquiry. (WRM)
Descriptors: Elementary Secondary Education, Foreign Countries, Inquiry, Science Activities

Fullick, Patrick – Education in Science, 1999
Describes a website designed to allow students to publish their own accounts of school science investigations they have carried out. Makes suggestions for initiating computer-mediated student discussions of the nature of science based on information contained in the website. (WRM)
Descriptors: Computer Mediated Communication, Computer Uses in Education, Foreign Countries, Inquiry

Murphy, Patricia – Physics Education, 1988
Describes the Assessment of Performance Unit (APU) Science project. Discusses the findings including perceptions of problems, procedural understanding, control of variables, and measurement strategies. Suggests a change from traditional learning strategies to more student-centered ones. (YP)
Descriptors: Elementary School Science, Elementary Secondary Education, Foreign Countries, Laboratory Experiments