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Showing 1 to 15 of 47 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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Wye, Steven – Physics Education, 2023
During the COVID-19 pandemic and subsequent lockdown, both schools and universities faced significant challenges in moving teaching from an in-situ setting to a remote one, this included laboratory experiments. This paper presents an experiment developed to use a phone's in built pressure sensor, common to most smart phones. By using this sensor…
Descriptors: COVID-19, Pandemics, School Closing, Science Instruction
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Alberto A. Ferna´ndez; Margarita Lo´pez-Torres; Jesu´s J. Ferna´ndez; Digna Va´zquez-Garci´a – Journal of Chemical Education, 2023
Students were tasked with the creation of videos of ordinary reactions to promote significant learning of complex concepts underlying chemical transformations. Interactive infographics were used to deliver instructions. Afterward, students planned the experimental setup for the reaction execution and video recording using their mobile phones. The…
Descriptors: Chemistry, Video Technology, Technology Uses in Education, Scientific Concepts
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Bouquet, F.; Creutzer, G.; Dorsel, D.; Vince, J.; Bobroff, J. – Physics Education, 2022
Using smartphones in experimental physics teaching offers many advantages in terms of engagement, pedagogy and flexibility. But it presents drawbacks such as possibly endangering the device and also facing the heterogeneity of available sensors on different smartphones. We present a low-cost alternative that preserves the advantages of…
Descriptors: Telecommunications, Handheld Devices, Science Experiments, Physics
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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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Priya Yadav; Harshita Laddha; Madhu Agarwal; Ragini Gupta – Journal of Chemical Education, 2022
A smartphone-based digital imaging method has been successfully introduced in an undergraduate laboratory class to quantify fluoride ions in water. Students first synthesized the chemosensor (E)-2-(1-(6-nitro-2-oxo-2H-chromen-3-yl)ethylidene)-N-phenylhydrazine-1-carbothioamide (CT) via an eco-friendly and green microwave-assisted protocol and…
Descriptors: Handheld Devices, Telecommunications, Educational Technology, College Science
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Supacha Wirojsaengthong; Wanlapa Aeungmaitrepirom; Fuangfa Unob; Saowarux Fuangswasdi; Puttaruksa Varanusupakul; Kanphitcha Mueangdech; Thirachat Treetos; Pumidech Puthongkham – Journal of Chemical Education, 2023
Hands-on experiences in analytical chemistry laboratories are essential to improve students' technical skills on handling analytical glassware and instruments, but the coronavirus pandemic in 2020-2021 disrupted such learning activities. Thus, alternative remote activities are required to supplement practical skills. In this work, a new portable…
Descriptors: Science Laboratories, Chemistry, Science Instruction, COVID-19
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Borrull, Anna; Valls, Cristina – Journal of Turkish Science Education, 2021
Practical work as observation and experimentation are vital parts of science education. One way to accomplish this is by applying inquiry-based learning in laboratory activities. Inquiry enhances the development of scientific skills as well as the learning of the scientific concepts. In the present article, a laboratory activity was developed to…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Inquiry
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Domi´nguez Alfaro, Jessica Lizeth; Gantois, Stefanie; Blattgerste, Jonas; De Croon, Robin; Verbert, Katrien; Pfeiffer, Thies; Van Puyvelde, Peter – Journal of Chemical Education, 2022
Traditionally, laboratory practice aims to establish schemas learned by students in theoretical courses through concrete experiences. However, access to laboratories might not always be available to students. Therefore, it is advantageous to diversify the tools that students could use to train practical skills. This technology report describes the…
Descriptors: Science Instruction, Science Laboratories, Telecommunications, Computer Simulation
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Ahmed, A. Ait Ben; Touache, A.; ElHakimi, A.; Chamat, A. – Physics Education, 2022
The dynamic study of pendulum systems is considered an indispensable subject for physics and mechanics students in colleges and high schools. In this paper, a detailed methodology is given concerning the use of smartphones in pedagogical practical work for studying the dynamics of pendulum systems. Whereas, three aspects have been discussed…
Descriptors: Science Instruction, Mechanics (Physics), College Science, Secondary School Science
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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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Ambruso, Kelly; Riley, Kathryn R. – Journal of Chemical Education, 2022
In this communication, we describe five at-home laboratory experiments and demonstrations that complement a semester-long analytical chemistry curriculum. The experiments were successfully carried out by remote undergraduate students enrolled in a hybrid analytical chemistry course during the COVID-19 pandemic. Students used their personal…
Descriptors: COVID-19, Pandemics, Science Laboratories, Laboratory Experiments
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Zhdanov, Arsenii; Pyay, Anna – Physics Teacher, 2022
Mobile phones are a widely used platform for educational apps, mobile health, and a variety of chemical tests. Here, we are working on a mobile phone-based physics lab (mPhysics) that uses a mobile phone's capabilities to run simple physics experiments and demonstrations. While a mobile phone can be used to analyze magnetic and optical properties…
Descriptors: Telecommunications, Handheld Devices, Physics, Science Instruction
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Gallitto, Aurelio Agliolo; Battaglia, Onofrio Rosario; Fazio, Claudio – Physics Education, 2021
We describe an educational activity that can be done by using smartphones to collect data in physics experiments aimed to measure the oscillating period of a spring-mass system and the elastic constant of the helicoidal spring by the dynamic method. Results for the oscillating period and for the elastic constant of the spring agree very well with…
Descriptors: Science Instruction, Physics, Measurement Techniques, Telecommunications
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Gössling, Alexander; Becker, Sebastian; Kuhn, Jochen – Physics Teacher, 2021
Supersonic free-fall jumps are excellent examples of kinematics in the context of drag. They have attracted a lot of media, public, and scientific interest. In 2012, Felix Baumgartner jumped from a height of approximately 38.969 km. During his flight he reached a top speed of 373 m/s, becoming the first human to travel faster than the speed of…
Descriptors: Science Instruction, Science Experiments, Physics, Kinetics
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