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Wesley Beccaro; Elisabete Galeazzo; Denise Consonni; Henrique E. Maldonado Peres; Leopoldo R. Yoshioka – IEEE Transactions on Education, 2024
Contribution: The evaluation of analog-to-digital conversion methods constitutes a key component of an Instrumentation course. This study introduces an affordable educational platform based on Arduino UNO board designed for teaching analog-to-digital conversion concepts, supported by virtual instruments (VIs). Background: ADCs are electronic…
Descriptors: Engineering Education, Learning Management Systems, Teaching Methods, Computer Simulation
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Iraya Yánez-Pérez; Radu Bogdan Toma; Jesús Ángel Meneses-Villagrá – Journal of New Approaches in Educational Research, 2024
Virtual laboratories and simulations have emerged as innovative solutions for science teaching. However, existing resources have various limitations and constraints including cognitive load/mental burden and limited coverage of all necessary steps in scientific inquiry, focusing mainly on the experimental simulation. To bridge this gap and address…
Descriptors: Preservice Teachers, Student Attitudes, Computer Software, Handheld Devices
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Aziz Amaaz; Abderrahman Mouradi; Moahamed Erradi – Journal of Baltic Science Education, 2024
Despite the importance of physics practical work in higher education, its implementation is often hampered by various constraints and problems. Technology, such as learning management systems (LMS) and mobile learning, can offer solutions to some of these problems and enrich students' learning experiences. Therefore, this research proposes a model…
Descriptors: Physics, Science Education, Learning Management Systems, Chemistry
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Frydenberg, Mark – Information Systems Education Journal, 2023
The Internet of Things (IoT) is a network of objects that can exchange data with other devices also connected to the Internet. One of the most common consumer examples of IoT is home automation, as a variety of smart devices, including doorbells, lightbulbs, thermostats, and refrigerators are now available which users can control remotely using…
Descriptors: Internet, Computer Software, Automation, Information Technology
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Mayer, V. V.; Varaksina, E. I. – Physics Education, 2020
For conducting laboratory experiments on Fresnel diffraction, the use of a simple point light source from an LED and the application of a modern smartphone for photographing the diffraction patterns are proposed. The developed devices allow the experiments to be carried out under normal laboratory lighting.
Descriptors: Photography, Physics, Science Education, Teaching Methods
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Kim, J.; Bouman, L.; Cayruth, F.; Elliott, C.; Francis, B.; Gogo, E.; Hyman, C.; Marshall, A.; Masters, J.; Olano, W.; Paone, A.; Patel, K.; Richards, L.; Sbardella, C.; Snider, A.; Trinh, B.; Umari, F.; Wilks, H. – Physics Teacher, 2020
These days, smartphones are popular commodities among students in high school and college. Students carry their devices all the time, so why not use such a popular electronic device to measure physical quantities such as "g" in physics labs? In this work, we report a "multiple tasking" method, a measurement technique that we…
Descriptors: Physics, Science Instruction, Teaching Methods, Telecommunications
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Carroll, Ryan; Lincoln, James – Physics Teacher, 2020
The phyphox app has demonstrated itself to be useful and impressive for physics teaching. The app is free to download and has so many features that it seems it may be particularly helpful in this time of distance learning. Phyphox (pronounced to sound like "physics") works for Android and Apple phones, and there are many experiments…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Software
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Pili, Unofre; Violanda, Renante – Physics Teacher, 2019
In introductory physics laboratories, spring constants are traditionally measured using the static method. The dynamic method, via vertical spring-mass oscillator, that uses a stopwatch in order to measure the period of oscillations is also commonly employed. However, this time-measuring technique is prone to human errors and in this paper we…
Descriptors: Telecommunications, Handheld Devices, Physics, Scientific Concepts
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Destino, Joel F.; Cunningham, Katie – Journal of Chemical Education, 2020
In light of COVID-19 in spring 2020, we developed a simple and versatile inquiry-based, laboratory-style active learning colorimetry experiment amenable to at-home quantitative analysis. In this experiment, students acquire an external calibration method using aqueous solutions of a self-selected chromophoric analyte from household products using…
Descriptors: Science Instruction, Chemistry, Science Laboratories, COVID-19
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Mikhailova, Elena A.; Post, Christopher J.; Zurqani, Hamdi A.; Younts, Grayson L. – Education Sciences, 2022
Crowdsourcing is an important tool for collecting spatio-temporal data, which has various applications in education. The objectives of this study were to develop and test a laboratory exercise on soil erosion by water and field data crowdsourcing in an online introductory soil science course (FNR 2040: Soil Information Systems) at Clemson…
Descriptors: Social Sciences, Telecommunications, Handheld Devices, Geographic Information Systems
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Alexandros, Kateris; Panagiotis, Lazos; Serafeim, Tsoukos; Pavlos, Tzamalis; Athanasios, Velentzas – European Journal of Physics Education, 2020
Several suggestions for the use of Mobile Phone (MP) sensors in science teaching are found in the literature, and most of them focus on proposing physics experiments that can be conducted with the aid of the sensors that commonly exist in smartphones. The proposed experiments rely on the Bring Your Own Devices (BYOD) approach, that is, students…
Descriptors: Physics, Science Instruction, Teaching Methods, Science Laboratories
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Tanino, Yukie; Syed, Amer – Education Sciences, 2019
We designed a hands-on laboratory exercise to demonstrate why injecting an aqueous polymer solution into an oil reservoir (commonly known as "polymer flooding") enhances oil production. Students are split into three groups of two to three. Each group is assigned to a packed Hele-Shaw cell pre-saturated with oil, our laboratory model of…
Descriptors: Physics, Science Instruction, Plastics, Fuels
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Pathare, Shirish Rajan; Raghavendra, M. K.; Huli, Saurabhee – Physics Teacher, 2017
Recently devices such as the optical mouse of a computer, webcams, Wii remote, and digital cameras have been used to record and analyze different physical phenomena quantitatively. Devices like tablets and smartphones are also becoming popular. Different scientific applications available at Google Play (Android devices) or the App Store (iOS…
Descriptors: Physics, Laboratory Experiments, Telecommunications, Handheld Devices
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Abidin, Nurul Aina Syakirah Zainal; Tho, Siew Wei – International Journal of Education and Development using Information and Communication Technology, 2018
The purpose of this research was to design and develop hands-on practical physics activity for the determination of relationship between the fundamental frequency and wavelength of standing waves using open or closed resonance tubes. In this study, an innovative use of smartphone device for the hands-on practical activity was developed with the…
Descriptors: Physics, Science Instruction, College Science, Telecommunications
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Gomez-Sacristan, Angel; Sempere-Paya, Victor M.; Rodriguez-Hernandez, Miguel A. – IEEE Transactions on Education, 2016
Teaching in university engineering departments is currently facing a number of challenges, especially for those involved in the most innovative and dynamic areas of information and communication technology. Learning model developments that place greater weight on laboratory activities require investment in specific equipment that is often very…
Descriptors: Engineering Education, Computer Simulation, Laboratories, Computer Uses in Education
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