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Burt, Malcolm; Pendrill, Ann-Marie – Physics Education, 2020
Large drop towers let you experience a couple of seconds of nearly free fall before stopping gracefully in magnetic brakes or bouncing a number of times on compressed air, as in the Turbo Drop tower considered in this work, where many complementary representations are used. An accelerometer taken along on the ride captured the forces experienced…
Descriptors: Computer Simulation, Video Technology, Parks, Physics
Gates, Joshua – Physics Education, 2014
Despite their physics instructors' arguments to the contrary, introductory students can observe situations in which there seems to be compelling evidence for magnetic force doing work. The counterarguments are often highly technical and require physics knowledge beyond the experience of novice students, however. A simple example is presented…
Descriptors: Magnets, Scientific Principles, Science Instruction, Physics
Benacka, Jan – Physics Education, 2015
This paper gives the solution and analysis of projectile motion in a vacuum if the launch and impact heights are not equal. Formulas for the maximum horizontal range and the corresponding angle are derived. An Excel application that simulates the motion is also presented, and the result of an experiment in which 38 secondary school students…
Descriptors: Motion, Science Instruction, Physics, Scientific Principles
Scott, Alan – Physics Teacher, 2014
On Aug. 13, 2011, at 8:45 p.m. country music fans were eagerly awaiting the band Sugarland to make its entry onto the main stage at the Indiana State Fairgrounds. Also competing for the fans' attention was an approaching storm. Sugarland never made their entrance. At 8:49 p.m. the stage rigging was hit by 59 mile/h (94 km/h) winds causing it to…
Descriptors: Introductory Courses, Fundamental Concepts, Physics, Investigations
Campbell, Todd; Neilson, Drew; Oh, Phil Seok – Science Teacher, 2013
Of the eight practices of science identified in "A Framework for K-12 Science Education" (NRC 2012), helping students develop and use models has been identified by many as an anchor (Schwarz and Passmore 2012; Windschitl 2012). In instruction, disciplinary core ideas, crosscutting concepts, and scientific practices can be meaningfully…
Descriptors: Physics, Models, Science Education, Science Instruction
Kozhevnikov, Michael; Gurlitt, Johannes; Kozhevnikov, Maria – Journal of Science Education and Technology, 2013
The focus of the current study is to understand which unique features of an immersive virtual reality environment have the potential to improve learning relative motion concepts. Thirty-seven undergraduate students learned relative motion concepts using computer simulation either in immersive virtual environment (IVE) or non-immersive desktop…
Descriptors: Motion, Scientific Concepts, Concept Teaching, Virtual Classrooms
Silva, P. E. S.; de Abreu, F. Vistulo; Simoes, R.; Dias, R. G. – European Journal of Physics, 2010
Modelling elastic filament dynamics is a topic of high interest due to the wide range of applications. However, it has reached a high level of complexity in the literature, making it unaccessible to a beginner. In this paper we explain the main steps involved in the computational modelling of the dynamics of an elastic filament. We first derive…
Descriptors: Computer Simulation, Equations (Mathematics), Calculus, Scientific Principles
Zabunov, Svetoslav – European Journal of Physics, 2010
This paper addresses the difficulties experienced by first-grade students studying rigid body motion at Sofia University. Most quantities describing the rigid body are in relations that the students find hard to visualize and understand. They also lose the notion of cause-result relations between vector quantities, such as the relation between…
Descriptors: Graphs, Mechanics (Physics), Motion, Computer Simulation
Black, Kelly – International Journal of Virtual and Personal Learning Environments, 2010
This paper examines the use of the 3-D virtual world Second Life to explore basic mechanics in physics. In Second Life, students can create scripts that take advantage of a virtual physics engine in order to conduct experiments that focus on specific phenomena. The paper explores two particular examples of this process: (1) the movement of an…
Descriptors: Virtual Classrooms, Computer Simulation, Mechanics (Physics), Motion
Koschmann, Timothy; Zemel, Alan – Journal of the Learning Sciences, 2009
The current article represents a methodological proposal. It seeks to address the question of how one might recognize a discovery as a discovery without knowing in advance what is available to be discovered. We propose a solution and demonstrate it using data from a study previously reported by J. Roschelle (1992). Roschelle investigated 2…
Descriptors: Computer Uses in Education, Mechanics (Physics), Scientific Principles, Computer Simulation
Peer reviewedWalter, R. Kenneth – Physics Teacher, 1989
Introduces a computer solution of the oscillation of a mass suspended by a spring in a viscous liquid. Describes the equations of motion, spreadsheet solution, copying the formulas, plotting the results, and extending the applications. Presents spreadsheet and physics formulas for the step-by-step solution and spreadsheet solution. (YP)
Descriptors: College Science, Computer Assisted Instruction, Computer Simulation, Laboratory Procedures

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