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Keeley, Page – Science and Children, 2015
After completing a science unit on transfer of energy, including how chemical energy from a battery is converted to electrical energy; electrical circuits; and transformation of energy into sound, light, or heat; the students in Mrs. Finlay's fourth-grade science class were challenged to use what they learned to solve a problem. The students…
Descriptors: Scientific Concepts, Engineering Education, Formative Evaluation, Energy
Fukuhara, Akiko; Kaneko, Fumitoshi; Ogawa, Naohisa – European Journal of Physics, 2012
We introduce the photoacoustic educational system (PAES), by which we can identify which gas causes the greenhouse effect in a classroom (Kaneko "et al" 2010 "J. Chem. Educ." 87 202-4). PAES is an experimental system in which a pulse of infrared (IR) is absorbed into gas as internal energy, an oscillation of pressure (sound) appears, and then we…
Descriptors: Energy, Heat, Climate, Acoustics
Hillier, Dan; Johnston, Tania; Davies, John – School Science Review, 2012
This article describes the design, delivery, evaluation and impact of a CPD course for physics and chemistry teachers. A key aim of the course was to use the context of the James Webb Space Telescope project to inspire teachers and lead to enriched teaching of STEM subjects. (Contains 1 box and 3 figures.)
Descriptors: Physics, Chemistry, Science Education, Science Instruction
Lekholm, Ville; Ramme, Goran; Thornell, Greger – Physics Education, 2011
Schlieren imaging is a method for visualizing differences in refractive index as caused by pressure or temperature non-uniformities within a medium, or as caused by the mixing of two fluids. It is an inexpensive yet powerful and straightforward tool for sensitive and high-resolution visualization of otherwise invisible phenomena. In this article,…
Descriptors: Physics, Visual Aids, Science Equipment, Science Experiments
Smith, Michael Chadwick – ProQuest LLC, 2015
This dissertation investigated citizen science, a tool that connects the public to the scientific community through research-based projects and education campaigns. Benefits include volunteers adding data to long-term data sets and improved scientific literacy among the public. Oftentimes, there is trepidation among scientists, managers, and…
Descriptors: Science Education, Citizen Participation, Volunteer Training, Water Quality
Mukherjee, Maheswari S. – ProQuest LLC, 2012
Traditionally, cytotechnology (CT) students have been trained by using light microscopy (LM) and glass slides. However, this method of training has some drawbacks. Several other educational programs with similar issues have incorporated virtual microscopy (VM) in their curricula. In VM, the specimens on glass slides are converted into virtual…
Descriptors: Cytology, Laboratory Equipment, Computer Simulation, Science Instruction
Humphrey, T. E.; Calisa, Vaishnavi – Physics Teacher, 2014
In 1879, in the midst of the debate between English and continental scientists about the nature of cathode rays, William Crookes conducted an experiment in which a small mill or "paddle wheel" was pushed along tracks inside a cathode ray tube (CRT) (similar to that shown in Fig. 1) when connected to a high-voltage induction coil. Crookes…
Descriptors: Demonstrations (Educational), Motion, Scientific Concepts, Mechanics (Physics)
Greenslade, Thomas B., Jr. – Physics Teacher, 2011
Many years ago I was running the standard laboratory experiment on thin lens optics. The source was the usual self illuminated object mounted on an optical bench, and a converging lens formed a real image on a screen. One of the students sitting near one wall of the darkened lab was having some trouble with the idea of image formation. Her face…
Descriptors: Optics, Projection Equipment, Laboratory Experiments, Science Instruction
Reddy, Christopher – American Journal of Distance Education, 2014
Laboratory science classes offered to students learning at a distance require a methodology that allows for the completion of tactile activities. Literature describes three different methods of solving the distance laboratory dilemma: kit-based laboratory experience, computer-based laboratory experience, and campus-based laboratory experience,…
Descriptors: Distance Education, Science Laboratories, Science Instruction, College Science
Zimmerman, Heather Toomey; McClain, Lucy Richardson; Crowl, Michele – Research in Science Education, 2013
This analysis uses a sociocultural learning theory and parent-child interaction framework to understand families' interactions with one type of scientific tool, the magnifier, during nature walks offered by a nature center. Families were video recorded to observe how they organized their activities where they used magnifiers to explore in the…
Descriptors: Informal Education, Outdoor Education, Recreational Facilities, Science Education
Erten, Sinan; Kiray, S. Ahmet; Sen-Gumus, Betul – Online Submission, 2013
This study was conducted to determine whether a lesson, in which context-based learning approach and scientific stories were used, changed stereotypical images of students (aged 11-12) about science and scientists. Data was collected from two separate sources: Interviews conducted with six students and Draw a Scientist Test (DAST) document that…
Descriptors: Foreign Countries, Scientists, Work Environment, Elementary School Students
Silva-Ortigoza, R.; Silva-Ortigoza, G.; Hernandez-Guzman, V. M.; Saldana-Gonzalez, G.; Marcelino-Aranda, M.; Marciano-Melchor, M. – European Journal of Physics, 2012
We introduce a dc/dc boost power converter as a didactic prototype intended to support courses on electric circuit analysis experimentally. The corresponding mathematical model is obtained, the converter is designed and an experimental setup is described, constructed and tested. Simplicity of construction as well as low cost of components renders…
Descriptors: Energy, Physics, Electronics, Mathematical Models
Trueman, Rebecca J. – Journal of Educational Technology Systems, 2014
Science education is criticized because it often fails to support problem-solving skills in students. Instead, the instructional methods primarily emphasize didactic models that fail to engage students and reveal how the material can be applied to solve real problems. To overcome these limitations, this study asked participants in a general…
Descriptors: STEM Education, Problem Solving, Ecology, Science Equipment
Ward, R. Bruce; Sienkiewicz, Frank; Sadler, Philip; Antonucci, Paul; Miller, Jaimie – Astronomy Education Review, 2013
We describe activities created to help student participants in Project ITEAMS (Innovative Technology-Enabled Astronomy for Middle Schools) develop a deeper understanding of picture elements (pixels), image creation, and analysis of the recorded data. ITEAMS is an out-of-school time (OST) program funded by the National Science Foundation (NSF) with…
Descriptors: Astronomy, Middle School Students, Science Instruction, Computer Uses in Education
Zeze, Syoji; Itoh, Akio; Oyama, Ayu; Takahashi, Haruka – Physics Education, 2012
We present a sensitive diffusion cloud chamber which does not require any radioactive sources. A major difference from commonly used chambers is the use of a heat sink as its bottom plate. The result of a performance test of the chamber is given. (Contains 8 figures.)
Descriptors: Performance Tests, Nuclear Physics, Science Equipment, Science Experiments

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