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Leccia, Silvio; Colantonio, Arturo; Puddu, Emanuella; Galano, Silvia; Testa, Italo – Physics Education, 2015
Literature in "Physics Education" has shown that students encounter many difficulties in understanding wave propagation. Such difficulties lead to misconceptions also in understanding sound, often used as context to teach wave propagation. To address these issues, we present in this paper a module in which the students are engaged in…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
Kraftmakher, Yaakov – Physics Education, 2013
Electron-atom collisions in gases are an aspect of atomic physics. Three experiments in this field employing a thyratron are described: (i) the Ramsauer-Townsend effect, (ii) the excitation and ionization potentials of xenon and (iii) the ion-electron recombination after interrupting the electric discharge.
Descriptors: Science Instruction, Physics, Molecular Structure, Science Experiments
Wee, Loo Kang; Tan, Kim Kia; Leong, Tze Kwang; Tan, Ching – Physics Education, 2015
This paper reports the use of Tracker as a computer-based learning tool to support effective learning and teaching of "toss up" and free fall motion for beginning secondary three (15?year-old) students. The case study involved (N = 123) students from express pure physics classes at a mainstream school in Singapore. We used eight…
Descriptors: Computer Assisted Instruction, Motion, Physics, Scientific Concepts
Khairurrijal; Eko Widiatmoko; Srigutomo, Wahyu; Kurniasih, Neny – Physics Education, 2012
A method has been developed to measure the swing period of a simple pendulum automatically. The pendulum position is converted into a signal frequency by employing a simple electronic circuit that detects the intensity of infrared light reflected by the pendulum. The signal produced by the electronic circuit is sent to the microphone port and…
Descriptors: Electronic Equipment, Laboratory Equipment, Science Instruction, Physics
Lombardi, S.; Monroy, G.; Testa, I.; Sassi, E. – Physics Education, 2010
A new procedure for performing quantitative measurements in teaching optics is presented. Application of the procedure to accurately measure the rate of change of the variable refractive index of a water-denatured alcohol mixture is described. The procedure can also be usefully exploited for measuring the constant refractive index of distilled…
Descriptors: Optics, Chemistry, Educational Technology, Science Instruction
Bryan, J. A. – Physics Education, 2010
Inexpensive video analysis technology now enables students to make precise measurements of an object's position at incremental times during its motion. Such capability now allows users to "examine", rather than simply "assume", energy conservation in a variety of situations commonly discussed in introductory physics courses. This article describes…
Descriptors: Energy Conservation, Physics, Educational Technology, Science Instruction
Prayaga, Chandra – Physics Education, 2008
A simple interface between VPython and Microsoft (MS) Office products such as Word and Excel, controlled by Visual Basic for Applications, is described. The interface allows the preparation of content-rich, interactive learning environments by taking advantage of the three-dimensional (3D) visualization capabilities of VPython and the GUI…
Descriptors: Computer Assisted Instruction, Visualization, Scientific Concepts, Computer Software

Thornton, Ronald K. – Physics Education, 1987
Identifies problems students have learning physics and explains how microcomputer-based laboratory (MBL) tools can help the learner. Describes the possibilities for instruction with MBL instruments and stresses the pedagogical advantages it has in the sciences. (ML)
Descriptors: Computer Assisted Instruction, Computer Uses in Education, Educational Technology, Instructional Improvement

Giblin, Roger – Physics Education, 1979
Summarized are the key features of the revolution in electronics, namely (1) capacity, (2) cost, (3) speed, and (4) size. Outlined also are some possible implications for the future with particular reference to telecommunications, medical services and education. (CS)
Descriptors: Biomedical Equipment, Computer Assisted Instruction, Educational Technology, Electronics

Rogers, L. T. – Physics Education, 1987
Identifies specific science skill activities and discusses how they can be enhanced using the microcomputer in a laboratory setting. Highlights the benefits, advantages, and applications of microcomputers in physics laboratories. (ML)
Descriptors: Computer Assisted Instruction, Computer Uses in Education, Educational Technology, Laboratory Equipment

Deeson, Eric – Physics Education, 1987
Discusses the current roles of information technology (IT) in formal education and characterizes emerging trends in the field. Identifies specific uses of computers in physics education and lists representative programs. (ML)
Descriptors: Computer Assisted Instruction, Computer Science Education, Computer Uses in Education, Educational Technology

Osborne, Jonathan – Physics Education, 1987
Points out two areas of difficulty in teaching Newtonian dynamics. Describes several alternatives to physics learning using new technology. Details the use of the LOGO computer language in teaching simple Newtonian environments. Suggests the potential for creating new learning experiences in dynamics with new technology. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Uses in Education, Courseware

Taylor, Edwin F. – Physics Education, 1987
Describes and compares five different uses of computers in physics education: tutorial, demonstrations, modelling toolkit, laboratory aid, and student as programer. Provides examples of computer uses and offers perspectives on developing further programs. (ML)
Descriptors: College Science, Computer Assisted Instruction, Computer Graphics, Computer Uses in Education

Squires, David – Physics Education, 1987
Addresses concerns related to how educational software can be designed to accommodate a constructivist approach to learning. Describes features of software which are consistent with a constructivist view and cites examples of physics materials which are appropriate. (ML)
Descriptors: Cognitive Development, Cognitive Processes, Computer Assisted Instruction, Computer Uses in Education