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Larnder, Chris I. – Physics Teacher, 2021
Today's students are increasingly immersed in a landscape of screens and handheld digital devices through which a good deal of their interactions with the world around them are mediated. Physics educators, meanwhile, continue to rely on traditional human interactions with the physical world, such as sliding down a ramp or throwing a baseball, in…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Peripherals
An, Jiwoo; Poly, Laila-Parvin; Holme, Thomas A. – Journal of Chemical Education, 2020
In general chemistry laboratories, students learn practical laboratory skills through hands-on activities and are exposed to new scientific instruments. However, these instruments are often viewed as black boxes for various reasons, where students do not know how to use them or what the instruments are capable of. This tendency is likely to induce…
Descriptors: Usability, Chemistry, Science Laboratories, Science Equipment
Underwood, Bret; Zhai, Yunxiao – Physics Teacher, 2016
Smartphones and tablets are packed with sensors that allow us to take experimental data, essentially making them mobile physics labs. Apps exist that make it easy to capture and analyze data from these sensors, allowing users to study diverse phenomena such as free fall acceleration, the speed of sound,radioactivity, and many others. Commonly, the…
Descriptors: Handheld Devices, Computer Oriented Programs, Physics, Time
Bucci, Karen – Science and Children, 2018
In this article, Karen Bucci describes how she incorporated her iPad with the wireless SmartScope iGO microscope and Wi-Viewer app to teach her fourth-grade class the science module "Ecosystems" by National Science Resources Center's Science and Technology for Children (STC) (1996, 2005). A main idea in the unit is the importance of…
Descriptors: Water, Recreational Facilities, Ecology, Educational Technology