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Showing 1 to 15 of 259 results
Ribeiro, Jair Lúcio Prados – Physics Teacher, 2015
Our high school optics course finishes with an assignment that students usually appreciate. They must take pictures of everyday situations representing optical phenomena such as reflection, refraction, or dispersion, and post them on Instagram. When the photos were presented to the class, one student revealed an intriguing photo, similar to Fig.…
Descriptors: Optics, Light, Scientific Concepts, Scientific Principles
Küçüközer, Asuman – Physics Teacher, 2015
The aim of this paper is to provide a way of teaching the factors that affect resistance using mechanical pencil leads and the brightness of the light given out by a light bulb connected to an electrical circuit. The resistance of a conductor is directly proportional to its length (L) and inversely proportional to its cross-sectional area (A).…
Descriptors: Light, Science Equipment, Teaching Methods, Performance Factors
Neumann, Susanne – Physics Teacher, 2014
During the last few years teaching physics, I have noticed that my students are becoming more and more interested in the topic of radiation. Mobile phones, modern game consoles, and WiFi--all of these devices involving some kind of radiation are part of our students' everyday lives. Students are also frequently confronted in the media with…
Descriptors: Misconceptions, Radiation, Scientific Concepts, Science Instruction
Trikosko, Walter – Physics Teacher, 2014
This is not a treatise on optics or the index of refraction. It is merely a demonstration that will surprise and engage many of your students. We have all put a pencil in a beaker of water and observed how it appears to bend. Not so much fun or engaging, is it? Why not illustrate this optical effect by taking your students spearfishing?…
Descriptors: Science Instruction, Scientific Concepts, Optics, Light
Ribeiro, C. I. – Physics Teacher, 2014
In this article we propose an activity aimed at introductory students to help them understand the Stefan-Boltzmann and Wien's displacement laws. It only requires simple materials that are available at any school: an incandescent lamp, a variable dc energy supply, and a computer to run an interactive simulation of the blackbody spectrum.…
Descriptors: Science Instruction, Physics, Scientific Principles, Lighting
Planinšic, Gorazd; Etkina, Eugenia – Physics Teacher, 2014
LEDs, or light-emitting diodes, are cheap, easy to purchase, and thus commonly used in physics instruction as indicators of electric current or as sources of light (Fig. 1). In our opinion LEDs represent a unique piece of equipment that can be used to collect experimental evidence, and construct and test new ideas in almost every unit of a general…
Descriptors: Science Instruction, Physics, Light, Energy
Ochoa, Romulo; Fiorillo, Richard; Ochoa, Cris – Physics Teacher, 2014
We present a simple method to determine the refractive indices of transparent media using a laser distance meter. Indices of refraction have been obtained by measuring the speed of light in materials. Some speed of light techniques use time-of-flight measurements in which pulses are emitted by lasers and the time interval is measured for the pulse…
Descriptors: Science Instruction, Physics, Lasers, Light
Metz, James – Physics Teacher, 2014
Light refracts as it travels from one medium to another. The angle of incidence "i" and the angle of refraction "r" are related by Snell's law, sin"i" ÷ sin"r"="k," where "k" is a constant. The diagram in Fig. 1 shows a geometric representation of the formula for light passing from…
Descriptors: Geometry, Scientific Principles, Light, Geometric Concepts
Etkina, Eugenia; Planinšic, Gorazd – Physics Teacher, 2014
This paper is the second in the series of LED-dedicated papers that have a goal to systematically investigate the use of LEDs in a general physics course. The first paper, published in the February 2014 issue, provided an overview of the course units where LEDs can be used and suggested three different ways of utilizing LEDs in an introductory…
Descriptors: Science Instruction, Physics, Light, Scientific Concepts
Papacosta, Pangratios; Linscheid, Nathan – Physics Teacher, 2014
Understanding the inverse square law, how for example the intensity of light or sound varies with distance, presents conceptual and mathematical challenges. Students know intuitively that intensity decreases with distance. A light source appears dimmer and sound gets fainter as the distance from the source increases. The difficulty is in…
Descriptors: Science Instruction, Physics, Scientific Concepts, Lasers
Birriel, Jennifer; Birriel, Ignacio – Physics Teacher, 2014
Glow sticks are a popular Halloween staple familiar to most of our students. The production of light via a chemical reaction is called "chemiluminescence," and glow sticks are often used as demonstrations and experiments in the chemistry classroom to study reaction rates as a function of temperature. A black light can be used to…
Descriptors: Science Instruction, Light, Chemistry, Science Experiments
Behroozi, Fred – Physics Teacher, 2014
Undergraduate physics majors typically begin their study of modern physics with special relativity. It is here that physics students first encounter the counterintuitive concepts of time dilation and length contraction. Unfortunately, the derivations of these results are often cloaked in several layers of analysis that render them rather…
Descriptors: Science Instruction, College Science, Undergraduate Study, Majors (Students)
Kraftmakher, Yaakov – Physics Teacher, 2014
With a new data-acquisition system developed by PASCO scientific, an experiment on telemetry with an optical fiber can be made easier and more accurate. For this aim, an alternative strategy of the remote temperature measurements is proposed: the frequency of light pulses transmitted via the light guide numerically equals the temperature using…
Descriptors: Science Instruction, Optics, Measurement Techniques, Teaching Methods
Grossman, Joshua M. – Physics Teacher, 2014
This article presents a puzzle for the optics section of an introductory course on reflections. A teacher could ask students to explain the phenomenon of the "vampire selfie" or the absent reflection. How could that be? What physics caused this curious phenomenon? The article explains light refraction and its effect on what we see and…
Descriptors: Science Instruction, Scientific Concepts, Physics, Light
Greenslade, Thomas B., Jr. – Physics Teacher, 2014
Almost everyone "knows" that steam is visible. After all, one can see the cloud of white issuing from the spout of a boiling tea kettle. In reality, steam is the gaseous phase of water and is invisible. What you see is light scattered from the tiny droplets of water that are the result of the condensation of the steam as its temperature…
Descriptors: Science Instruction, Physics, High Schools, Secondary School Science

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