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Kaps, Andreas; Splith, Tobias; Stallmach, Frank – Physics Teacher, 2021
Implementing smartphones with their internal sensors into physics experiments represents a modern, attractive, and authentic approach to improve students' conceptual understanding of physics. In such experiments, smartphones often serve as objects with physical properties and as digital measurement devices to record, display, and analyze…
Descriptors: Telecommunications, Handheld Devices, Technology Uses in Education, Science Experiments
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Salinas, Isabel; Monteiro, Martín; Martí, Arturo C.; Monsoriu, Juan A. – Physics Teacher, 2020
In this article, the dynamics of a traditional toy, the yo-yo, are investigated theoretically and experimentally using smartphone sensors. In particular, using the gyroscope the angular velocity is measured. The experimental results are complemented thanks to a digital video analysis. The concordance between theoretical and experimental results is…
Descriptors: Toys, Handheld Devices, Telecommunications, Physics
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Malisorn, Khemchira; Wicharn, Surawut; Plaipichit, Suwan; Pipatpanukul, Chinnawut; Houngkamhang, Nongluck; Puttharugsa, Chokchai – Physics Education, 2020
This paper demonstrates the use of smartphones in an experiment of light absorption and light scattering. The LED display and camera of the smartphone are used as the light source and as the detector, respectively. The color wheel is used to choose the color of the light source to be shone through the sample for analysis. The detector directly…
Descriptors: Light, Scientific Concepts, Telecommunications, Handheld Devices
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Newton, Jennifer Ryan; Williams, Mira Cole – Journal of Special Education Technology, 2022
Instagram is a free, online social media application that facilitates social networking. Since Instagram is image dependent, educators create visuals accompanied by captions of up to 2,200 characters. By adding specific hashtags to captions, educator posts are curated by the algorithm into a broad community of practice, colloquially known as…
Descriptors: Social Media, Social Networks, Telecommunications, Faculty Development
Judith A. Alamprese; I-Fang E. Cheng – Abt Associates, 2021
A longstanding challenge for adult education (AE) program staff is how to motivate learners to persist in their studies and connect them to resources that can help mediate their barriers to participation in AE. A promising approach to addressing U.S. high school learners' access to financial aid and enrollment in higher education is…
Descriptors: Adult Education, Coaching (Performance), Telecommunications, Individual Characteristics
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Kasper, Lutz; Vogt, Patrik – Physics Teacher, 2020
The aim of this paper is to provide physics teachers and physics students with interdisciplinary cultural and scientific related content. The "dombra" is on the one hand a cultural symbol of Kazakhstan with a long tradition. On the other hand, the dombra as a musical instrument is an object of interest in acoustics. The topic can lead to…
Descriptors: Handheld Devices, Telecommunications, Acoustics, Musical Instruments
Englander, Elizabeth Kandel – Harvard Education Press, 2023
In this deeply insightful work, nationally renowned bullying expert Elizabeth Kandel Englander offers sensible perspectives on student social behavior and equips educators and parents with effective strategies to identify and address bullying. This second edition of "Bullying and Cyberbullying" reveals how enormous social changes,…
Descriptors: Bullying, Computer Mediated Communication, Intervention, Prevention
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Seperuelo Duarte, E.; Mota, A. T.; de Carvalho, J. R.; Xavier, R. C.; Souza, P. V. S. – Physics Education, 2021
In this paper, we present a physical modeling activity whose objective is to allow students to determine the differences between a disk and a sphere using pure scientific criteria. Thereunto, we reproduce the Sun-Earth-Moon system with low-cost materials and compare the illumination effects on the Moon considering two possible shapes for it (a…
Descriptors: Science Instruction, Teaching Methods, Comparative Analysis, Scientific Research
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Niu, Zeyu Jason; Luo, Duanbin – Physics Teacher, 2022
In recent years, with the more powerful functions of smartphones, the use of sensors integrated by mobile phones as an auxiliary tool for physical experiment teaching has become more popular. Combined with the related mobile phone apps, people easily can develop and expand the physical experiment contents of mechanics, optics, acoustic phenomena,…
Descriptors: Measurement, Science Instruction, Physics, Acoustics
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Abendroth, Kathleen J.; Oxley, Judith D.; Hays, Katherine M. – Communication Disorders Quarterly, 2022
Telepractice offers speech-language pathologists (SLPs) increased flexibility to support language development, including emergent literacy in clients with complex communication needs. However, clinicians may feel uncertain how to pair books with augmentative and alternative communication (AAC) over telepractice. Following an overview of…
Descriptors: Telecommunications, Speech Language Pathology, Allied Health Personnel, Emergent Literacy
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Nunes, Rhewter; de Bem Oliveira, Ivone; de Araújo Dias, Priscila; Bidinotto, Alexandre Borges; de Campos Telles, Mariana Pires – Biochemistry and Molecular Biology Education, 2021
In this paper, we propose and describe a new approach, named BarcodingGO, to teach environmental DNA and bioinformatics concepts to undergraduate or graduate students in molecular biology-related fields. The learning pipeline proposed here aims to solve a simulated environmental monitoring problem, in which a biodiversity survey of a particular…
Descriptors: Science Instruction, College Science, College Students, Molecular Biology
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Wong, Nicholas H. L.; Tong, Amy S. K.; Posner, Matthew T. – Physics Education, 2019
Optical fibre communication enables the global internet, but few youths ever learn about how it works, even at a basic level, until tertiary education. While some middle school curricula might include simple geometrical optics concepts like reflection and refraction, they often lack contextual linkage to worldwide telecommunications. Through our…
Descriptors: Science Instruction, Optics, Physics, Telecommunications
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Pendrill, Ann-Marie – Physics Education, 2020
Your body is not a point particle. The nature and direction of the forces counteracting gravity influence your experience of uniform rectilinear motion--as does your own orientation in relation to the force of gravity. Sensors in smartphones or other devices can capture these forces, and help establish a connection between the personal experience…
Descriptors: Physics, Science Instruction, Telecommunications, Handheld Devices
Chary, Mamatha; McEldoon, Katherine; Churaman, Tanya – Pearson, 2023
Pearson's Learning Foundations describe the optimal conditions for learning and reflect the learner experience Pearson hopes their products will create. Pearson does this by incorporating the Learning Design Principles. Each of the Learning Design Principles goes into detail about a key principle, supporting product design and marketing by…
Descriptors: Educational Principles, Learning, Educational Technology, Technology Uses in Education
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Pinheiro, André O.; Alvarinhas, José Pedro; Silva, Manuela Ramos – International Journal of Mathematical Education in Science and Technology, 2021
It is generally agreed that making real-world connections in mathematics teaching increases students' motivation and interest and contributes to meaningful and permanent learning. In this paper we propose a simple and fast activity to find a rectangular hyperbola in real life and we show how to operate the data to retrieve a straight line. Since…
Descriptors: Mathematics Instruction, Teaching Methods, Student Motivation, Student Interests
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