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Showing all 15 results Save | Export
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Katharine Hubbard; Marlena Birycka; Maisie-Elizabeth Britton; Joseph Coates; Isla Delphine Coxon; Chloe Hannah Jackson; Casper Leigh Nicholas; Tyler M. Priestley; J. J. Robins; Paula R. Ryczko; Talia Salisbury; Megan Shand; George Snodin; Beth Worsley – Journal of Biological Education, 2024
Providing hands-on practical education without access to laboratories during the COVID-19 pandemic has required creativity and innovation. In this paper, co-authored by academic staff and students, we describe an at-home mobile phone-based 'spectrophotometer' experiment used in an introductory undergraduate biology course. Using colour picker…
Descriptors: Hands on Science, Science Laboratories, Distance Education, Telecommunications
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Li, Dean; Liu, Lilan; Zhou, Shaona – Physics Teacher, 2020
Interest in smartphone-based learning, especially in the use of internal sensors in smartphones for physics experiments, is increasing rapidly. Internal sensors in smartphones such as acoustic sensor, optical sensor, and acceleration sensor can help researchers alleviate the problems including insufficient accuracy with low-cost equipment, high…
Descriptors: Physics, Science Instruction, Teaching Methods, Telecommunications
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Mananghaya, Michael Rivera; Yu, Dennis – Physics Education, 2022
A low-cost simple one-dimensional spring-mass system was constructed to investigate damped oscillations. The suspended mass in the system can move freely inside a cylinder containing a fluid. It provides an in-depth experience for demonstrating various concepts under oscillations. It can be used to probe the magnitude of damping forces in liquids…
Descriptors: Science Instruction, Physics, Scientific Concepts, Motion
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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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Thy, Savrin; Iwayama, Tsutomu – Physics Education, 2021
This paper presents a thorough method for studying the interference of water waves. The study aimed: (a) to demonstrate the interaction of two coherent waves, which creates interference patterns, and (b) to analyse the interference patterns. Three main tools were employed: a simplified ripple tank to experiment, a smartphone camera to record the…
Descriptors: Science Instruction, Physics, Scientific Concepts, Science Experiments
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Al-Soufi, Wajih; Carrazana-Garcia, Jorge; Novo, Mercedes – Journal of Chemical Education, 2020
We present our experience with transferring a four-day photometry and dye-adsorption laboratory experiment to the kitchens of students of Applied Thermodynamics from our degree in "Industrial Chemical Process Engineering". The students designed and built a double-beam photometer using their smartphones and household materials, then…
Descriptors: Science Instruction, Science Laboratories, Laboratory Experiments, Science Experiments
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Soong, Ronald; Agmata, Kyle; Doyle, Tina; Jenne, Amy; Adamo, Antonio; Simpson, Andre J. – Journal of Chemical Education, 2019
Titration is a common introductory experiment performed across teaching laboratories from high school to university. Yet, its setup remains inaccessible for students with disabilities, denying them the opportunity for experiential learning. Therefore, rethinking such a setup is required to increase laboratory participation for these students. To…
Descriptors: Chemistry, College Science, Undergraduate Students, Students with Disabilities
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Puantha, Rattanaporn; Khammarew, Wilaiwan; Tong-on, Anusorn; Saphet, Parinya – Physics Education, 2019
The purpose of this study was to develop a modern experimental apparatus using an Arduino with LabVIEW instead of the classical experiment. The wavelength of the sound was determined using the resonance of an air column. The smartphone app was used to generate the desired frequencies. A sound intensity and ultrasonic sensor was used to read the…
Descriptors: Science Instruction, Science Experiments, Laboratory Equipment, Science Laboratories
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Davy, Emma C.; Quane, Steven L. – Journal of Chemical Education, 2021
Lab-based learning is an essential part of any undergraduate chemistry curriculum as it incorporates necessary and required hands-on experiential learning. However, in response to the COVID-19 pandemic, many students are learning from home, rendering laboratory instruction a particular challenge. Options for educators include third party virtual…
Descriptors: Science Laboratories, College Science, Chemistry, Science Instruction
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Pierratos, Theodoros; Polatoglou, Hariton M. – Physics Education, 2018
A common method that scientists use to validate a theory is to utilize known principles and laws to produce results on specific settings, which can be assessed using the appropriate experimental methods and apparatuses. Smartphones have various sensors built-in and could be used for measuring and logging data in physics experiments. In this work,…
Descriptors: Physics, Energy Conservation, Conservation (Concept), Scientific Concepts
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Hergemöller, Timo; Laumann, Daniel – Physics Teacher, 2017
Today smartphones and tablets do not merely pervade our daily life, but also play a major role in STEM education in general, and in experimental investigations in particular. Enabling teachers and students to make use of these new techniques in physics lessons requires supplying capable and affordable applications. Our article presents the…
Descriptors: Handheld Devices, Telecommunications, Visual Aids, Laboratory Equipment
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Parolin, Sara Orsola; Pezzi, Giovanni – Physics Education, 2015
This article deals with a modern version of Kundt's tube experiment. Using economic instruments and a couple of smartphones, it is possible to "see" nodes and antinodes of standing acoustic waves in a column of vibrating air and to measure the speed of sound.
Descriptors: Telecommunications, Handheld Devices, Science Experiments, Physics
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Monteiro, Martín; Cabeza, Cecilia; Marti, Arturo C. – Physics Teacher, 2014
Smartphone usage has expanded dramatically in recent years worldwide. This revolution also has impact in undergraduate laboratories where different experiences are facilitated by the use of the sensors usually included in these devices. Recently, in several articles published in the literature, the use of "smartphones" has been proposed…
Descriptors: Energy, Physics, Laboratory Equipment, Motion
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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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Kniseley, MacGregor; Capraro, Karen – Science and Children, 2013
This article introduces students to the world of digital microscopy. Looking at small objects through a digital microscope is like traveling through a foreign country for the first time. The experience is new, engaging, and exciting. A handheld digital microscope is an essential tool in a 21st century teacher's toolkit and the perfect tool to…
Descriptors: Elementary School Teachers, Grade 2, Handheld Devices, Laboratory Equipment