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Cross, Rod – Physics Education, 2022
If a ball rolls in a circular path on a horizontal surface at constant speed then its horizontal rotation axis changes direction with time. A simple experiment is presented showing that the torque applied to the ball is equal to the rate of change of its angular momentum, even though the magnitudes of its angular velocity and angular momentum…
Descriptors: Physics, Science Instruction, Science Experiments, Teaching Methods
Cross, Rod – Physics Education, 2022
Oblique angle collisions of two penny coins on a smooth, horizontal surface were filmed with a video camera to investigate the physics of the collision process. If one of the coins is initially at rest, then the two coins emerge approximately at right angles, as commonly observed in billiard ball collisions and in puck collisions on an air table.…
Descriptors: Physics, Science Instruction, Video Technology, Science Experiments
Cross, Rod – Physics Education, 2022
Measurements and calculations are presented showing how the trajectory of an object sliding across an inclined plane varies with the launch and incline angles. The trajectory depends on the magnitude and direction of the sliding friction force. The experiment is easy to set up, can be analysed using a video camera, and would be suitable for a…
Descriptors: Physics, Science Instruction, Video Technology, Science Experiments
Hughes, Stephen; Wegener, Margaret; Gurung, Som – Physics Education, 2022
In this paper, a simple method is described for visually demonstrating that the wavelength of light reduces when entering a medium of higher refractive index. When a violet laser (405 nm) is reflected off the surface of a Blu-ray disc (track spacing 320 nm) diffraction cannot occur since the wavelength is greater than the track spacing. However,…
Descriptors: Science Instruction, Physics, Light, Lasers
Çoban, Atakan; Erol, Mustafa – Physics Education, 2022
The present study reports an Arduino-based STEM education material that resolves the kinematics of a moving object, specifically focusing on two dimensional motion of the object. Throughout the work, a sample application that can be prepared in a classroom where students are active and including the acquisitions of Technology, Engineering, Physics…
Descriptors: STEM Education, Motion, Science Instruction, Measurement Equipment
Spiecker, Henrike; Bitzenbauer, Philipp – Physics Education, 2022
Why does a raindrop on a window pane show an image of the environment that is turned upside-down? And why does vision go blurry underwater, but is perfectly clear with diving goggles? Our everyday life is rich in optical phenomena. Unfortunately, these phenomena often play a subordinate role in Optics teaching, compared to ray constructions or…
Descriptors: Science Instruction, Physics, Optics, Science Experiments
Cross, Rod – Physics Education, 2022
A simple experiment is described to compare the descent time between two vertically separated points when an object slides down tracks of varying shape. A surprising result is that the descent time is shortest when it follows a circular track rather than a cycloidal track. Cycloidal tracks are usually predicted to result in the shortest descent…
Descriptors: Science Experiments, Scientific Concepts, Motion, Mechanics (Physics)
Cross, Rod – Physics Education, 2021
If a smooth ball is dropped vertically without spin on a smooth horizontal surface then one might expect the ball to bounce vertically without spin. If it does not then the centre of mass of the ball does not coincide with its geometric centre. An experiment is described where a billiard ball and a superball are deliberately biassed by adding a…
Descriptors: Science Instruction, Scientific Principles, Physics, Motion
Cross, Rod – Physics Education, 2021
A standard problem for physics students is to calculate or measure the acceleration of an object down an inclined plane. Additional information can be obtained by measuring the angular acceleration as well as the linear acceleration. An experiment is described where a billiard ball was filmed as it rolled down an inclined plane at different…
Descriptors: Physics, Science Instruction, Science Experiments, Teaching Methods
Ratanavis, Amarin – Physics Education, 2022
A single-slit diffraction experiment in an introductory physics laboratory is generally comprised of a rectangular slit and a laser source. The laser beam is sent to the slit producing the well-known diffraction pattern on the screen. This paper proposes a simple modification of the single-slit diffraction experiment to increase student attention…
Descriptors: Science Instruction, Science Laboratories, Physics, Lasers
Williams, Hollis – Physics Education, 2022
The Crookes radiometer (also known as a light mill) is a fascinating sunlight-powered device, in which a set of vanes is placed inside a glass bulb within which a partial vacuum has been pulled. The vanes then rotate when sunlight shines on the bulb. The reason for the turning of the vanes was subject to intense debate and many students still have…
Descriptors: Physics, Science Instruction, Light, Measurement Equipment
Grebenev, I. V.; Kazarin, P. V. – Physics Education, 2022
The article describes a methodology for studying Fresnel diffraction with the active involvement of students in discussing the results of a demonstration experiment. To create a clearly visible model of Fresnel zones, a centimeter radio wave range was chosen, in which the first zone is about 10 cm in size. This makes visible the created…
Descriptors: Physics, Science Instruction, Teaching Methods, Models
Mayer, V. V.; Varaksina, E. I. – Physics Education, 2022
We propose a laboratory experiment on the quantitative study of the normal dispersion of light. A triangular isosceles prism made of flint glass TF3 is used as the object of study, and we describe a simple and affordable device for observing and photographing the dispersion spectrum on a smartphone. A possibility of the quantitative investigation…
Descriptors: Light, Physics, Science Experiments, Science Instruction
Cross, Rod – Physics Education, 2022
A loop-the-loop experiment is described to show how sliding friction affects motion of the ball. Conservation of energy can be used to explain the basic physics, but significant energy loss is observed in practice and expands the usefulness of this apparatus as a teaching tool.
Descriptors: Science Instruction, Science Experiments, Scientific Concepts, Concept Formation
Cross, Rod – Physics Education, 2022
A loop-the-loop experiment usually involves a ball rolling around a vertical loop. A different version of the experiment is described where a nut was allowed to slide around a vertical loop. In both experiments there is a large decrease in kinetic energy when the ball or the nut first enters the loop.
Descriptors: Science Instruction, Science Experiments, Physics, Scientific Concepts