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Robertson, William C. – Science and Children, 2009
Ah, springtime, and young people's thoughts turn to... baseball, of course. But this column is not about "how" to throw a curveball, so you'll have to look that up on your own. Here, the focus is on the "why" of the curveball. There are two different things that cause a spinning ball to curve. One is known as the "Bernoulli effect" and the other…
Descriptors: Science Instruction, Scientific Principles, Mathematical Concepts, Physics
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
Brown, D. S. – Physics Education, 2009
The Sun's atmosphere is a highly structured but dynamic place, dominated by the solar magnetic field. Hot charged gas (plasma) is trapped on lines of magnetic force that can snap like an elastic band, propelling giant clouds of material out into space. A range of ground-based and space-based solar telescopes observe these eruptions, particularly…
Descriptors: Physics, Science Instruction, Astronomy, Scientific Principles
Jewett, John W., Jr. – Physics Teacher, 2008
Energy is a critical concept in physics problem-solving, but is often a major source of confusion for students if the presentation is not carefully crafted by the instructor or the textbook. A common approach to problems involving deformable or rotating systems that has been discussed in the literature is to employ the work-kinetic energy theorem…
Descriptors: Kinetics, Energy, Problem Solving, Motion
Solbes, Jordi; Tarin, Francisco – Physics Teacher, 2008
A well-known classroom demonstration involves the rolling of hollow and solid objects down an incline. The fact that the objects roll at different rates can be used as a starting point in introducing students to rotational dynamics and rotational kinetic energy. In this paper we describe a simple quantitative version of the demonstration that is…
Descriptors: Kinetics, Energy, Laboratory Experiments, Science Instruction
Bryce, T. G. K.; MacMillan, K. – Journal of Research in Science Teaching, 2009
Researchers and practitioners alike express concerns about the conceptual difficulties associated with the concepts of momentum and kinetic energy currently taught in school physics. This article presents an in-depth analysis of the treatment given to them in 44 published textbooks written for UK secondary school certificate courses. This is set…
Descriptors: Constructivism (Learning), Textbooks, Kinetics, Physics
Goldader, Jeffrey D. – Physics Teacher, 2008
The Celsius and Kelvin temperature scales, we tell our students, are related. We explain that a change in temperature of 1 degree C corresponds to a change of 1 Kelvin and that atoms and molecules have zero kinetic energy at zero Kelvin, -273 degrees C. In this paper, we will show how students can derive the relationship between the Celsius and…
Descriptors: Kinetics, Physics, Climate, Science Instruction
Hecht, Eugene – Physics Teacher, 2008
The standard formulation of energy conservation involves the subsidiary ideas of kinetic energy ("KE"), work ("W"), thermal energy, internal energy, and a half-dozen different kinds of potential energy ("PE"): elastic, chemical, nuclear, gravitational, and so forth. These quantities came to be recognized during the centuries over which the…
Descriptors: Energy Conservation, Kinetics, Heat, Physics
Schultz, Emeric – Journal of Chemical Education, 2008
A device that can demonstrate equilibrium, kinetic, and thermodynamic concepts is described. The device consists of a leaf blower attached to a plastic container divided into two chambers by a barrier of variable size and form. Styrofoam balls can be exchanged across the barrier when the leaf blower is turned on and various air pressures are…
Descriptors: Thermodynamics, Kinetics, Ventilation, Scientific Concepts
Guemez, J.; Fiolhais, C.; Fiolhais, M. – Physics Education, 2009
The use of toys in physics teaching is common. This brief review of the physics of toys intends to show that they are not only very useful in lectures and demonstrations in order to motivate students but also very interesting from a scientific point of view. However, since their physics is sometimes too cumbersome, the effect can be the opposite.…
Descriptors: Physics, Toys, Lecture Method, Science Instruction
Tefft, Brandon J.; Tefft, James A. – Physics Teacher, 2007
As the topic of relativity is developed in a first-year physics class, there seems to be a tendency to move as quickly as possible to the fascinating ideas set forth in Einstein's special theory of relativity. In this paper we linger a little with the Galilean side of relativity and discuss an intriguing problem and its solution to illustrate a…
Descriptors: Kinetics, Scientific Concepts, Scientific Principles, Theories
Mungan, Carl E. – Physics Teacher, 2007
The following idealized problem is intended to illustrate some basic thermodynamic concepts involved in kinetic friction. A block of mass m is sliding on top of a frictional, flat-topped table of mass M. The table is magnetically levitated, so that it can move without thermal contact and friction across a horizontal floor. The table is initially…
Descriptors: Thermodynamics, Physics, Science Instruction, Scientific Principles
van den Berg, Willem H. – Physics Teacher, 2007
Ordinarily, opening a door by pulling on the knob or handle causes a net torque on the door, and hence an angular acceleration, about a "vertical" axis. However, it may be that the top or bottom of the door sticks to the door frame; this horizontal force perpendicular to the plane of the door causes a torque on the door about a "horizontal" axis.…
Descriptors: Structural Elements (Construction), Mechanics (Physics), Scientific Principles, Science Instruction
Hecking, Patrick C. – Physics Teacher, 2007
In electric or mixed electric-mechanic systems, the distinction between potential and kinetic energy is not as clear as in purely mechanical systems. A solution for the motion of an inductively loaded rail generator is presented. In this case, the magnetic field energy (1/2)Li[superscript 2] can be written "formally" in terms of a potential…
Descriptors: Science Instruction, Motion, Magnets, Scientific Principles
Lawlor, T. M. – Physics Teacher, 2008
The widely used PASCO laboratory equipment is an excellent way to introduce students to many topics in physics. In one case, PASCO's equipment may be too good! Various experiments exist for calculating the kinetic coefficient of friction by measuring the acceleration of a sliding object under some constant force. With ever more accurate equipment,…
Descriptors: Intervals, Kinetics, Physics, Laboratory Equipment

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