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Aji, Mahardika Prasetya; Karunawan, Jotti; Chasanah, Widyastuti Rochimatun; Nursuhud, Puji Iman; Wiguna, Pradita Ajeng; Sulhadi – Physics Education, 2017
A simple diffraction experiment was designed using banana stem as natural grating. Coherent beams of lasers with wavelengths of 632.8 nm and 532 nm that pass through banana stem produce periodic diffraction patterns on a screen. The diffraction experiments were able to measure the distances between the slit of the banana stem, i.e. d = (28.76 ±…
Descriptors: Lasers, Science Experiments, Teaching Methods, Spectroscopy
Kvittingen, Eivind V.; Kvittingen, Lise; Melø, Thor Bernt; Sjursnes, Birte Johanne; Verley, Richard – Journal of Chemical Education, 2017
This article describes a combined UV-photometer and fluorimeter constructed from 3 LEDs and a few wires, all held in place with Lego bricks. The instrument has a flexible design. In its simplest version, two UV-LEDs (355 nm) are used as light source and to detect absorption, and a third LED, in the visible spectrum (e.g., 525 nm), is used to…
Descriptors: Spectroscopy, Scientific Principles, Scientific Methodology, Light
Clark, William; Lei, Melinda; Kirichenko, Erika; Dickerson, Kellie; Prytko, Robert – Chemical Engineering Education, 2017
Exothermic reactions can present safety hazards and there is a recognized need for reaction safety education at the undergraduate level. We present an experiment that illustrates the pitfall of direct scale-up of an exothermic reaction that can lead to thermal runaway. The iodide-catalyzed hydrogen peroxide decomposition reaction yields…
Descriptors: Undergraduate Study, Hazardous Materials, Laboratory Safety, Safety Education
Malgieri, Massimiliano; Tenni, Antonio; Onorato, Pasquale; De Ambrosis, Anna – Physics Education, 2016
In this paper we present a reasoning line for introducing the Pauli exclusion principle in the context of an introductory course on quantum theory based on the sum over paths approach. We start from the argument originally introduced by Feynman in "QED: The Strange Theory of Light and Matter" and improve it by discussing with students…
Descriptors: Scientific Principles, Introductory Courses, Quantum Mechanics, Science Experiments
Hughes, Stephen W.; Hosokawa, Kazuyuki; Carroll, Joshua; Sawell, David; Wilson, Colin – Physics Education, 2015
A technique is described for calculating the brightness of the atmosphere of the Earth that shines into the Earth's umbra during a total lunar eclipse making the Moon red. This "Rim of Fire" is due to refracted unscattered light from all the sunrises and sunsets rimming the Earth. In this article, a photograph of the totally eclipsed…
Descriptors: Astronomy, Space Sciences, Light, Measurement Techniques
Kraftmakher, Yaakov – Physics Education, 2009
Simple measurements of the decay time of cathodoluminescence are described. Cathodoluminescence is used in many devices, including computer monitors, oscilloscopes, radar displays and television tubes. The experimental setup is simple and easy to build. Two oscilloscopes, a function generator, and a fast photodiode are needed for the experiments.…
Descriptors: Equipment Evaluation, Physics, Light, Measurement
Drew, John – Teaching Science, 2008
In this article I explain why I wrote the set of teaching notes on Atomic Absorption Spectroscopy (AAS) and why they look the way they do. The notes were intended as a student reference to question, highlight and write over as much as they wish during an initial practical demonstration of the threshold concept being introduced, in this case…
Descriptors: Secondary School Science, Scientific Methodology, Spectroscopy, Chemistry

Gee, Brian – Physics Education, 1983
Thirteen questions about light and spectra are provided. Although they do not have clearcut answers, the questions highlight matters about scientific methodology, which is educationally important. Suggests that students perform experiments similar to those performed by Newton, Wollaston, and Fraunhofer. (JN)
Descriptors: College Science, Higher Education, Light, Physics

Gee, Brian – Physics Education, 1983
Examination of selected material from the history of science can provoke a number of questions about the nature of that activity as indicated in part 1 (SE 533 400). Presented here are some guidelines to help teachers discuss the observation statements and kinds of questions raised in part 1. (JN)
Descriptors: College Science, Higher Education, Light, Physics