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Showing 1 to 15 of 25 results Save | Export
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Ermis, Ferhat; Karaman, Ibrahim – Physics Education, 2020
This study provides information about the formation of colours with an experimental activity based on the reflection of coloured lights from pigments. The activity shows the formation of colour in a simple and entertaining way. The lights are reflected by being changed by different coloured pigments. This activity provides an opportunity to…
Descriptors: Color, Light, Science Instruction, Scientific Concepts
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Paixão, P. A.; Remonatto, V. M. C.; Calheiro, L. B.; Dos Reis, D. D.; Goncalves, A. M. B. – Physics Education, 2022
Here, we present a 3D printed experimental apparatus that students can use to acquire interference and diffraction quantitative data from light passing through a single or double-slit experiment. We built a linear screw stage with a multiturn potentiometer connected to its leadscrew as a position sensor. Using an Arduino, we collected light…
Descriptors: Science Experiments, Spatial Ability, Geometric Concepts, Printing
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Theilmann, Florian – Physics Education, 2022
Ever since Newton's groundbreaking work on the composed nature of light, additive colour mixing (and its laws) are subject to the interest of physicists as well as other sciences. In this paper, we present a setup for simple lab or home experiments on additive colour mixing and the laws of colour mixing. Students use the screen of a laptop or…
Descriptors: Science Instruction, Science Experiments, Hands on Science, Physics
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Coramik, Mustafa – Physics Education, 2021
In this study, it is aimed to calibrate an LDR-Lux meter with a calibration setup which includes a light bulb whose brightness can be changed by using a dimmer circuit, a data acquisition card, a smartphone and a lux meter application. In order to make the measurements more accurate and to prevent errors in the measurements, a smartphone and a…
Descriptors: Science Instruction, Telecommunications, Handheld Devices, Measurement Techniques
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Puttharugsa, Chokchai; Srikhirin, Toemsak; Pipatpanukul, Chinnawut; Houngkamhang, Nongluck – Physics Education, 2021
This paper demonstrates the use of a smartphone as a low-cost multi-channel optical fibre spectrophotometer suitable for physics laboratory classes. A custom-designed cradle and structure support were fabricated using 3D printing. The plastic optical fibres were arranged and inserted into the hole of the cradle to guide the light to the rear…
Descriptors: Telecommunications, Handheld Devices, Educational Technology, Technology Uses in Education
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Bitzenbauer, Philipp – Physical Review Physics Education Research, 2021
We conducted a quasiexperimental study in order to investigate the effect of a teaching concept on quantum physics based on coincidence and correlation experiments with heralded photons on preuniversity students' conceptions of quantum physics (experimental group, N = 150). We compare the results with the traditional curriculum's effect (control…
Descriptors: Quantum Mechanics, Mechanics (Physics), Science Instruction, Scientific Concepts
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Bitzenbauer, Philipp; Meyn, Jan-Peter – Physics Education, 2020
In this article, an approach to integrate contemporary quantum physics into secondary school teaching is presented. The Erlanger concept on quantum optics provides an experimental-based guideway to aspects of modern quantum physics. We avoid the traditional historical approach in order to overcome the lack of modern concepts of quantum physics. In…
Descriptors: Science Instruction, Secondary School Science, Quantum Mechanics, Mechanics (Physics)
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Boot, Roeland – Physics Teacher, 2017
There is a relatively simple way of using radioactive material in classroom experiments: uranium glass, which provides teachers with a suitable substance. By using the right computer software and a radiation sensor, it can be demonstrated that uranium glass emits radiation at a greater rate than the background radiation and with the aid of UV…
Descriptors: Science Education, Science Experiments, Computer Software, Radiation
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Mercer, Conan; Leech, Donal – Journal of Chemical Education, 2018
This paper presents a system for remote monitoring of turbidity data that can detect light intensity and temperature using a microcontroller and the Internet of Things. The system comprises a light dependent resistor and infrared temperature sensor interfaced with an ESP-12E microcontroller, a programmable data acquisition platform; together these…
Descriptors: Science Instruction, Chemistry, Light, Heat
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Wood, Benjamin K.; Blevins, Benjamin K. – Physics Education, 2019
Practical skills in science education, defined as those developed through the observation, demonstration, manipulation, and application of scientific principles, valued in both academia and industry, feature conspicuously in curriculums the world over. Efficiently imparting such skills to students necessitates access to scientific equipment of…
Descriptors: Science Process Skills, Science Experiments, Light, Physics
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Adhitama, Egy; Fauzi, Ahmad – Physics Education, 2018
In this study, a pendulum experimental tool with a light-based timer has been developed to measure the period of a simple pendulum. The obtained data was automatically recorded in an Excel spreadsheet. The intensity of monochromatic light, sensed by a 3DU5C phototransistor, dynamically changes as the pendulum swings. The changed intensity varies…
Descriptors: Spreadsheets, Educational Technology, Technology Uses in Education, Science Instruction
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Atkin, Keith – Physics Education, 2017
This paper shows how very simple circuitry attached to an Arduino microcontroller with MakerPlot software can be used for the display of electrical characteristic curves of three commonly available devices: an ohmic resistor, an LED, and a tungsten-filament bulb.
Descriptors: Equipment, Educational Technology, Technology Uses in Education, Computer Software
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Dangkulwanich, Manchuta; Kongnithigarn, Kaness; Aurnoppakhun, Nattapat – Journal of Chemical Education, 2018
Routinely used in quantitative determination of various analytes, UV-vis spectroscopy is commonly taught in undergraduate chemistry laboratory courses. Because the technique measures the absorbance of light through the samples, losses from reflection and scattering by large molecules interfere with the measurement. To emphasize the importance of…
Descriptors: Telecommunications, Handheld Devices, Educational Technology, Technology Uses in Education
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Malgieri, Massimiliano; Rosi, Tommaso; Onorato, Pasquale; Oss, Stefano – Physics Education, 2018
We present an educational approach to the phenomenon of phosphorescent emission. The approach is based on a stochastic toy model, in which electron states are represented by rows of squares on a cardboard table, and coins on the squares switch from one row to the other based on the roll of two dice. The discussion of different mechanisms, giving…
Descriptors: Science Instruction, Scientific Concepts, Physics, Telecommunications
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Koenig, Michael H.; Yi, Eun P.; Sandridge, Matthew J.; Mathew, Alexander S.; Demas, James N. – Journal of Chemical Education, 2015
Fluorescence quenching is an analytical technique and a common undergraduate laboratory exercise. Unfortunately, a typical quenching experiment requires the use of an expensive fluorometer that measures the relative fluorescence intensity of a single sample in a closed compartment unseen by the experimenter. To overcome these shortcomings, we…
Descriptors: Light, Science Instruction, College Science, Undergraduate Study
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