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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
Espinosa, J. A.; Ribas, F.; Lusquiños, F. – Physics Education, 2022
In order to fix some important concepts of Fundamental Physics, either because they are not usually discussed in depth in theoretical classes and much less at laboratories, or because they are not sufficiently developed in textbooks, it is more effective not to tackle them directly, but to propose a mental or practical experiment to attract the…
Descriptors: Science Instruction, Physics, Scientific Concepts, Science Experiments
Boublil, Shachar; Blair, David; Treagust, David F. – Teaching Science, 2023
The demand for improving student interest in science has increased efforts toward teaching Einstein's theory of general relativity in schools. Research has already shown that teaching Einsteinian gravity at the secondary level is feasible, however, appropriate resources must be readily available for science teachers to make Einsteinian gravity…
Descriptors: Science Experiments, Scientific Concepts, Physics, Middle School Students
de Obaldia, Elida; Miller, Norma; Wittel, Fred; Jaimison, George; Wallis, Kendra – Physics Teacher, 2016
Some misconceptions about physics are hard to change. For example, students continue to believe that heavier objects fall faster than light ones, even after a year of physics instruction. Physics misconceptions are persistent. Light objects do fall more slowly if their size-to-weight ratio is sufficient for drag to be appreciable. Motion through a…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Physics
Dou, Remy; Hogan, DaNel; Kossover, Mark; Spuck, Timothy; Young, Sarah – American Biology Teacher, 2013
Diffusion has often been taught in science courses as one of the primary ways by which molecules travel, particularly within organisms. For years, classroom teachers have used the same common demonstrations to illustrate this concept (e.g., placing drops of food coloring in a beaker of water). Most of the time, the main contributor to the motion…
Descriptors: Physics, Science Instruction, Science Experiments, Motion
Bonato, Jacopo; Gratton, Luigi M.; Onorato, Pasquale; Oss, Stefano – Physics Education, 2017
We propose the use of smartphone-based slow-motion video analysis techniques as a valuable tool for investigating physics concepts ruling mechanical wave propagation. The simple experimental activities presented here, suitable for both high school and undergraduate students, allows one to measure, in a simple yet rigorous way, the speed of pulses…
Descriptors: Physics, Science Instruction, Mechanics (Physics), College Science
Gates, Joshua – Physics Teacher, 2014
Newton's second law is one of the cornerstones of the introductory physics curriculum, but it can still trouble a large number of students well after its introduction, hobbling their ability to apply the concept to problem solving and to related concepts, such as momentum, circular motion, and orbits. While there are several possibilities for…
Descriptors: Science Experiments, Scientific Principles, Scientific Concepts, Science Education
Hitt, Austin Manning; Townsend, J. Scott – Science Activities: Classroom Projects and Curriculum Ideas, 2015
Elementary, middle-level, and high school science teachers commonly find their students have misconceptions about heat and temperature. Unfortunately, student misconceptions are difficult to modify or change and can prevent students from learning the accurate scientific explanation. In order to improve our students' understanding of heat and…
Descriptors: Science Instruction, Scientific Concepts, Misconceptions, Heat
Klein, P.; Gröber, S.; Kuhn, J.; Müller, A. – Physics Education, 2014
Tablet computers were used as experimental tools to record and analyse the motion of a ball thrown vertically from a moving skateboard. Special applications plotted the measurement data component by component, allowing a simple determination of initial conditions and "g" in order to explore the underlying laws of motion. This experiment…
Descriptors: Computer Uses in Education, Laptop Computers, Handheld Devices, Teaching Methods
Froehle, Peter; Miller, Charles H. – Physics Teacher, 2012
An interesting, quick, and inexpensive lab that we do with our students is to tape one end of a string just less than halfway around the back side of a uniform solid cylinder m[subscript 1] and attach the other end of the string to a mass m[subscript 2] that is below a pulley (Fig. 1). Data can be collected using either an Ultra Pulley (Fig. 2) or…
Descriptors: Energy, Misconceptions, Conservation (Concept), Laboratory Experiments
Humphrey, T. E.; Calisa, Vaishnavi – Physics Teacher, 2014
In 1879, in the midst of the debate between English and continental scientists about the nature of cathode rays, William Crookes conducted an experiment in which a small mill or "paddle wheel" was pushed along tracks inside a cathode ray tube (CRT) (similar to that shown in Fig. 1) when connected to a high-voltage induction coil. Crookes…
Descriptors: Demonstrations (Educational), Motion, Scientific Concepts, Mechanics (Physics)
Farkas, N.; Ramsier, R. D. – Physics Education, 2006
We present a simple laboratory activity for introductory-level physics students which involves rolling balls down pipes and analysing their subsequent flight trajectories. Using balls of equal size but different mass allows students to confront their misconceptions of a mass dependence of the exit speed of the balls from the pipes. The concepts of…
Descriptors: Physics, Motion, Misconceptions, Laboratories

Ehrlich, Robert; Hutchison, Mary Lynn – Physics Teacher, 1994
Shows that the conventional wisdom about the extreme inaccuracy of stopwatch measurements during the acceleration and free fall of objects is mistaken. (ZWH)
Descriptors: Acceleration (Physics), Misconceptions, Motion, Physics

Schnick, Jeffrey W. – Physics Teacher, 1994
Presents an exercise that attempts to correct for the common discrepancies between theoretical and experimental predictions concerning projectile motion using a spring-loaded projectile ball launcher. Includes common correction factors for student use. (MVL)
Descriptors: Higher Education, Mechanics (Physics), Misconceptions, Motion