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Bates, Alan – Physics Teacher, 2021
The law of conservation of momentum can be applied to a wide range of processes whether it is the collision of subatomic particles, rocket propulsion, or the recoil of a cannon. In this experiment two technologies, the Arduino microcontroller and a PASCO smart cart, are used to create a movable rubber band launcher. The Arduino microcontroller is…
Descriptors: Science Instruction, Motion, Physics, Scientific Concepts
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Lee, Sukmock; Guthery, Charlotte; Kim, Daewook; Calkins, Addison – Physics Teacher, 2022
An essential goal for physics and optical science instructors is to encourage students to find excitement and beauty in physical and optical phenomena while helping them learn the theoretical concepts and conducting experiments that can test the validity of the concepts. Such motivation largely relies on realistic hands-on lab opportunities where…
Descriptors: Physics, Optics, Science Instruction, Hands on Science
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Leblond, Louis; Hicks, Melissa – Physics Teacher, 2021
Scientific laboratories are among the most challenging course components to integrate into online instruction. Available technology restricts the design and nature of experiments, and it can be hard to replicate the collaborative lab environment where frequent and immediate instructor feedback is the norm. Here we report on technological and…
Descriptors: Science Laboratories, Online Courses, Educational Technology, Technology Uses in Education
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Azhikannickal, Elizabeth – Physics Teacher, 2019
Much data, both published and anecdotal, have shown that students grasp scientific concepts more easily when they are directly involved in the learning via lab experiments or other hands-on activities. Hands-on or experiential learning also appears to aid in students' ability to retain scientific theory. One way to engage students in a first-year…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
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Berrada, Meryem; Littleton, Joshua A. H.; Secco, Richard A. – Physics Teacher, 2020
The exercises described here conveniently exploit the built-in acceleration sensors in smartphones, devices that are becoming ubiquitous if not essential items for most students. This allows each student to have the opportunity for a hands-on experience and to collect their own data, reduces preparation time, and greatly reduces cost by removing…
Descriptors: Physics, Science Instruction, Telecommunications, Handheld Devices