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Parks, Beth; Benze, Hans – Physics Teacher, 2022
Student misconceptions of the double-slit experiment (Fig. 1) are abundant. The most common ones that we observe include: (1) belief that constructive interference requires both pathlengths to be integer multiples of the wavelength ("L[subscript 1] = n[subscript 1][lambda]" and "L[subscript 2] = n[subscript 2][lambda]") rather…
Descriptors: Science Instruction, Scientific Concepts, Physics, Science Experiments
Dittrich, William A. – Physics Teacher, 2022
Drop Tower Physics (DTP) is composed of a set of experiments using standard physics lecture demonstration equipment, such as a pendulum, mass spring oscillator, and so forth, while videotaping them as they fall freely in the Dryden Drop Tower in Portland, OR. An article published in "The Physics Teacher" illustrated the behavior of a…
Descriptors: Physics, Science Instruction, Science Experiments, Science Equipment
Ferstl, Andrew; Duden, Emily R. – Physics Teacher, 2022
The conical pendulum is a classic introductory physics problem for teaching circular motion--a topic about which students frequently carry alternative conceptions. As teachers provide lessons to untangle these conceptions, it is good to allow students to practice their new knowledge in varied settings. This is one possible experiment that builds…
Descriptors: Science Instruction, Motion, Mechanics (Physics), Scientific Concepts
Kortemeyer, Gerd – Physics Teacher, 2022
In recent years, do-it-yourself microcontrollers and sensors have gained increased attention as measurement devices for physics teaching (see, for example, Refs. 1-5). This is not surprising, since Arduinos are relatively cheap and ubiquitous, the code base and design are open source, and there is a wide variety of sensors available. Arduinos can…
Descriptors: Physics, Measurement Equipment, Computers, Computer Uses in Education
Pathak, Praveen; Patel, Yogita – Physics Teacher, 2022
A smartphone magnetometer is used to record the magnetic field of a freely falling point dipole magnet. The recorded magnetic field vs. time data are analyzed in accordance with the spatial dependence of the magnetic field to calculate the acceleration due to gravity g. The experiment gives local g to be 9.79 ± 1.9% m/s[superscript 2].
Descriptors: Science Instruction, Magnets, Physics, Science Experiments
Sperling, Alissa; Kruger, Ellen; Martin, James – Physics Teacher, 2022
Students experience current electricity every day in our wired world, yet the circuit problems that students work through in physics class can seem far removed from the common experience of switching on a light bulb. However, current electricity provides many opportunities to engage students in hands-on learning. Through circuit construction,…
Descriptors: Science Instruction, Introductory Courses, Energy, Electronic Equipment
Amato, Joseph C. – Physics Teacher, 2022
The Double Asteroid Redirection Test (DART) is a National Aeronautics and Space Administration--European Space Agency collaborative mission to test the feasibility of defending Earth from a catastrophic asteroid impact by using a spacecraft to deflect the asteroid away from the planet. Launched on Nov. 23, 2021, the DART spacecraft will intercept…
Descriptors: Physics, Science Instruction, Introductory Courses, Space Sciences
Murray, Jaclyn Kuspiel – Physics Teacher, 2022
Discovering concepts through observation, exploration, and constructing scientific explanations of phenomena is best practice in science education. Instead of following lab procedures to verify a known answer or solution, involve students in the work of science. Begin by presenting a phenomenon to engage students in scientific inquiry and uncover…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Inquiry
Christensen, Julie; Shah, Niral; Ortiz, Nickolaus Alexander; Stroupe, David; Reinholz, Daniel L. – Physics Teacher, 2022
Recent studies reveal people from marginalized groups (e.g., people of color and women) continue to earn physics degrees at alarmingly low rates. This phenomenon is not surprising given reports of the continued perception of physics as a masculine space and the discrimination faced by people of color and women within the field. To realize the…
Descriptors: Equal Education, Physics, Educational Change, Minority Group Students
Morishige, Hina; Kato, Tetsuya – Physics Teacher, 2022
Prompt determination of the positive or negative signs of charged objects promotes students' understanding of electrostatics and motivates them to learn more about this field of physics. We developed a low-cost (about US$5) and easy-to-use device for checking the signs of the static charges in objects. It consists of two easy-to-build circuits,…
Descriptors: Energy, Physics, Scientific Concepts, Measurement Equipment
Mansyur, Jusman; Werdhiana, I Komang; Darsikin, Darsikin; Kaharu, Sarintan N.; Tadeko, Nurgan – Journal of Turkish Science Education, 2022
This study aims to explore the mental models of students about suspending objects in liquid fluid. The study used a descriptive qualitative method and implemented cross-sectional approach. It involved 57 students from grade 5 of elementary school to fourth-year prospective physics teachers. The data collection used a test consisting of twenty-six…
Descriptors: Schemata (Cognition), Scientific Concepts, Physics, Elementary School Students
Benz, Gregor; Buhlinger, Carsten; Ludwig, Tobias – Physics Education, 2022
With the availability of educational digital data acquisition systems, it has also become possible in physics education to generate 'big' data sets by (a) measuring multiple variables simultaneously, (b) increasing the sample rate, (c) extending the measurement duration, or (d) choosing a combination among these three options. In the context of…
Descriptors: Physics, Science Instruction, Learning Analytics, Data Analysis
Cross, Rod – Physics Education, 2022
The trajectory of a ball rolling across an inclined plane was recorded on video film to determine if it followed a parabolic path as others have suggested. The challenges in this case were (a) to determine the magnitude and direction of the friction force on the ball, (b) to determine the effect of the friction force on the trajectory and (c) to…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Cross, Rod – Physics Education, 2022
A 2.7 m long stringless pendulum was set up to measure the coefficient of rolling friction of various balls, at higher rolling speeds than usually observed with a short stringless pendulum. The arrangement is easy to set up and makes an impressive classroom demonstration as well as an interesting laboratory experiment.
Descriptors: Physics, Science Instruction, Motion, Scientific Concepts
Cross, Rod – Physics Education, 2022
A collision of one object with two or more objects is relatively complicated in general, but a simple example is provided by Newton's cradle since all the objects are identical and in line. In the present paper, an experiment is described where a heavy mallet collides head-on with two billiard balls. The two conservation equations indicate that…
Descriptors: Science Instruction, Physics, Science Experiments, Motion

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