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Omid Khatin-Zadeh; Danyal Farsani – Cogent Education, 2024
In this article, we introduce the notion of "motion simulation hinge" and discuss its role in mental simulation of previously-experienced motion events and also mental simulation of scientific concepts in terms of motion events. Motion simulation hinge is defined as a static imaginary object or area around which or relative to which a…
Descriptors: Motion, Simulation, Inhibition, Short Term Memory
Cumber, Peter – International Journal of Mathematical Education in Science and Technology, 2023
The dynamics of a simple pendulum are often presented to undergraduate engineering students in introductory courses in dynamics. It is usually the first dynamic system considered by students that is modelled by a differential equation. This paper presents the standard material given to students. It is fair to say that students are accepting this…
Descriptors: Motion, Scientific Concepts, Undergraduate Students, Engineering Education
Cross, Rod – Physics Teacher, 2021
The flow of air around a baseball and over the seam acts to slow the ball and to deflect it sideways. Turbulent flow can be visualized, and sideways deflection of the ball can be observed clearly if the ball is dropped in a glass fish tank and filmed with a high-speed camera. Results are presented for a baseball and also for a billiard ball with a…
Descriptors: Visualization, Motion, Simulation, Mechanics (Physics)
Gauld, Colin; Cross, Rod – Physics Education, 2021
Newton's cradle is often discussed in science classrooms as a clear example of the laws of conservation of momentum and energy although it has been shown that this use is somewhat misleading. Approaches to understanding the behaviour of this apparatus are often over-simplified and deficient or over-complex and with little impact among teachers. In…
Descriptors: Scientific Principles, Conservation (Concept), Mechanics (Physics), Simulation
Cross, Rod; Lindsey, Crawford – Physics Teacher, 2018
An ice hockey player can strike a puck at speeds up to about 45 m/s (100 mph) using a technique known as the slap shot. There is nothing unusual about the speed, since golf balls, tennis balls, and baseballs can also be projected at that speed or even higher. The unusual part is that the player strikes the ice before striking the puck, causing the…
Descriptors: Athletics, Athletes, Physics, Science Experiments
Fuchs, Hans U.; Corni, Federico; Pahl, Angelika – Education Sciences, 2021
We experience (perceive, act upon and react to, and conceptualize) dynamical processes in nature as agentive. Expressed differently, we experience events as resulting from activities and interactions of "Forces of Nature" (such as wind, light, heat, fluids, electricity, substances, and motion) that are conceived of as powerful agents…
Descriptors: Scientific Concepts, Concept Formation, Drama, Simulation
Körber, C.; Hammer, I.; Wynen, J.-L.; Heuer, J.; Müller, C.; Hanhart, C. – Physics Education, 2018
Numerical simulations are playing an increasingly important role in modern science. In this work it is suggested to use a numerical study of the famous perihelion motion of the planet Mercury (one of the prime observables supporting Einsteins general relativity) as a test case to teach numerical simulations to high school students. The paper…
Descriptors: Motion, Physics, Science Instruction, Simulation
Timková, V.; Ješková, Z. – Physics Teacher, 2017
Students are well aware of the effect of the deflection of sports balls when they have been given a spin. A volleyball, tennis, or table tennis ball served with topspin results in an additional downward force that makes the ball difficult to catch and return. In soccer, the effect of sidespin causes the ball to curve unexpectedly sideways,…
Descriptors: Science Instruction, Physics, Motion, Scientific Principles
Kaplan, Harvey; Hirsch, Andrew – Physics Teacher, 2014
Gyroscopes are frequently used in physics lecture demonstrations and in laboratory activities to teach students about rotational dynamics, namely, angular momentum and torque. Use of these powerful concepts makes it difficult for students to fully comprehend the mechanism that keeps the gyroscope from falling under the force of gravity. The…
Descriptors: Physics, Mechanics (Physics), Scientific Concepts, Motion
Theilmann, Florian; Reinhard, Christopher – Physics Education, 2016
Although the physics of cycling itself is a complex mixture of aerodynamics, physiology, mechanics, and heuristics, using cycling as a context for teaching physics has a tradition of certainly more than 30 years. Here, a possible feature is the discussion of the noticeable resistant forces such as aerodynamic drag and the associated power…
Descriptors: Physics, Scientific Concepts, Energy, Simulation
Ford, Jes; Stang, Jared; Anderson, Catherine – Physics Teacher, 2015
Dark matter makes up most of the matter in the universe but very little of a standard introductory physics curriculum. Here we present our construction and use of a spandex sheet-style gravity simulator to qualitatively demonstrate two aspects of modern physics related to dark matter. First, we describe an activity in which students explore the…
Descriptors: Science Instruction, Physics, Science Activities, Scientific Concepts
Spitznagel, Benjamin; Pritchett, Paige R.; Messina, Troy C.; Goadrich, Mark; Rodriguez, Juan – Biochemistry and Molecular Biology Education, 2016
Vision and Change [AAAS, 2011] outlines a blueprint for modernizing biology education by addressing conceptual understanding of key concepts, such as the relationship between structure and function. The document also highlights skills necessary for student success in 21st century Biology, such as the use of modeling and simulation. Here we…
Descriptors: Science Instruction, Biology, Undergraduate Study, Science Laboratories
Theilmann, Florian; Apolin, Martin – Physics Education, 2013
This paper investigates some of the physics behind the remarkable
supersonic freefall of Felix Baumgartner accomplished with the "Red Bull
Stratos" project on 14 October 2012. The underlying problem is complex: a
freefall with air resistance through a medium of changing density. We
developed a model for the motion within the framework of…
Descriptors: Science Instruction, Physics, Motion, Scientific Principles
Wee, Loo Kang; Goh, Giam Hwee – Physics Education, 2013
We develop an Easy Java Simulation (EJS) model for students to visualize geostationary orbits near Earth, modelled using a Java 3D implementation of the EJS 3D library. The simplified physics model is described and simulated using a simple constant angular velocity equation. We discuss four computer model design ideas: (1) a simple and realistic…
Descriptors: Physics, Computers, Earth Science, Satellites (Aerospace)
Choopan, W.; Ketpichainarong, W.; Laosinchai, P.; Panijpan, B. – Physics Education, 2011
We constructed a simple demonstration setup to simulate an extrasolar planet and its star revolving around the system's centre of mass. Periodic dimming of light from the star by the transiting planet and the star's orbital revolution simulate the two major ways of deducing the presence of an exoplanet near a distant star. Apart from being a…
Descriptors: Visual Aids, Astronomy, Simulation, Science Instruction