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Shakur, Asif; Schwartz, Joseph – Physics Teacher, 2021
The new normal imposed on us by the COVID-19 pandemic restricted the traditional ways we would teach high school students who are eager to participate in introductory astronomy projects on our university campus. This turned out to be a blessing in disguise as we were forced to come up with creative ways to get around this obstacle. The outcome is…
Descriptors: Teaching Methods, High School Students, Astronomy, Science Instruction
Hughes, Ciaran; Isaacson, Joshua; Turner, Jessica; Perry, Anastasia; Sun, Ranbel – Physics Teacher, 2022
Quantum computing is a growing field at the intersection of physics and computer science. The goal of this article is to highlight a successfully trialled quantum computing course for high school students between the ages of 15 and 18 years old. This course was designed to bridge the gap between popular science articles and advanced undergraduate…
Descriptors: Teaching Methods, Physics, Science Instruction, Quantum Mechanics
Ball, Doug; Tofel-Grehl, Colby – Physics Teacher, 2020
Electric potential is one of the most challenging concepts taught in high school physics classes due to the abstract nature of the concept. When taught, electric potential is often taught using a poorly triangulated set of instructional analogies, each possessing different strengths and limitations. Within this paper we share our learning from a…
Descriptors: High School Students, Physics, Science Instruction, Energy
Bozzo, G. – Physics Teacher, 2020
As soon as children can see, they observe that objects fall freely. From a young age, we spontaneously construct interpretative models to understand this everyday phenomenon. Over the last three decades, numerous experiments have been developed to help students understand physics concepts regarding free fall. Although there are many…
Descriptors: Secondary School Science, Science Instruction, Physics, Teaching Methods
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
Laws, Priscilla W.; Willis, Maxine C.; Sokoloff, David R. – Physics Teacher, 2015
This article describes the 25-year history of development of the activity-based Workshop Physics (WP) at Dickinson College, its adaptation for use at Gettysburg Area High School, and its synergistic influence on curricular materials developed at the University of Oregon and Tufts University and vice versa. WP and these related curricula: 1) are…
Descriptors: Workshops, Physics, Educational History, High School Students
Beeken, Paul – Physics Teacher, 2014
Graphing is an essential skill that forms the foundation of any physical science. Understanding the relationships between measurements ultimately determines which modeling equations are successful in predicting observations. Over the years, science and math teachers have approached teaching this skill with a variety of techniques. For secondary…
Descriptors: Graphs, Science Instruction, Measurement, Equations (Mathematics)
Widmark, Stephen – Physics Teacher, 2012
Many physical systems are described by time-dependent differential equations or systems of such equations. This makes it difficult for students in an introductory physics class to solve many real-world problems since these students typically have little or no experience with this kind of mathematics. In my high school physics classes, I address…
Descriptors: Physics, Equations (Mathematics), Computer Software, Secondary School Science
Teaching Basic Quantum Mechanics in Secondary School Using Concepts of Feynman Path Integrals Method
Fanaro, Maria de los Angeles; Otero, Maria Rita; Arlego, Marcelo – Physics Teacher, 2012
This paper discusses the teaching of basic quantum mechanics in high school. Rather than following the usual formalism, our approach is based on Feynman's path integral method. Our presentation makes use of simulation software and avoids sophisticated mathematical formalism. (Contains 3 figures.)
Descriptors: Quantum Mechanics, Secondary School Science, Science Instruction, Teaching Methods
Brazzle, Bob – Physics Teacher, 2011
My unit on sound and waves is embedded within a long-term project in which my high school students construct a musical instrument out of common materials. The unit culminates with a performance assessment: students play the first four measures of "Somewhere Over the Rainbow"--chosen because of the octave interval of the first two notes--in the key…
Descriptors: Acoustics, Physics, Science Instruction, Secondary School Science
Hack, William Nathan; Baird, William H. – Physics Teacher, 2012
The speed of sound is a physical property that can be measured easily in the lab. However, finding an inexpensive and intuitive way for students to determine this speed has been more involved. The introduction of affordable consumer-grade high-speed cameras (such as the Exilim EX-FC100) makes conceptually simple experiments feasible. Since the…
Descriptors: Video Technology, Photography, Motion, Physics
Carvalho, Carlos C.; dos Santos, J. M. B. Lopes; Marques, M. B. – Physics Teacher, 2008
Most homes in developed countries have a sophisticated data acquisition board, namely the PC sound board. Designed to be able to reproduce CD-quality stereo sound, it must have a sampling rate of at least 44 kHz and have very accurate timing between the two stereo channels. With a very simple adaptation of a pair of regular PC microphones, a…
Descriptors: Computer Software, Science Instruction, Computer Uses in Education, Acoustics