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Hawes, Chloe E.; Ruiz, Michael J. – Physics Education, 2018
Costume jewelry beads are employed to demonstrate how a beam of beads are able to transform into a simple pendulum (single bead) where the pendulum length remains constant throughout. These beads are common and inexpensive for instructors, as well as attractive and exciting for students. Beads are removed from the top, keeping the same pendulum…
Descriptors: Physics, Science Instruction, Teaching Methods, Motion
Rizcallah, Joseph A. – Physics Education, 2017
In many introductory-level physics textbooks, the derivation of the formula for the speed of transverse waves in a string is either omitted altogether or presented under physically overly idealized assumptions about the shape of the considered wave pulse and the related velocity and acceleration distributions. In this paper, we derive the named…
Descriptors: Physics, Mathematical Formulas, Scientific Concepts, Scientific Principles
Low, David; Malik, Umairia; Wilson, Kate – Teaching Science, 2018
Large gender gaps in performance on questions involving projectile motion have been observed at high school and university level, even amongst high-achieving students. This gap is particularly problematic because projectile motion is typically one of the first topics formally taught in physics, and this may give girls an inappropriately negative…
Descriptors: Gender Differences, Science Instruction, Motion, Scientific Concepts
Belendez, Augusto; Arribas, Enrique; Marquez, Andres; Ortuno, Manuel; Gallego, Sergi – European Journal of Physics, 2011
An approximate scheme for obtaining the period of a simple pendulum for large-amplitude oscillations is analysed and discussed. When students express the exact frequency or the period of a simple pendulum as a function of the oscillation amplitude, and they are told to expand this function in a Taylor series, they always do so using the…
Descriptors: Laboratory Equipment, Teaching Methods, Mathematical Formulas, Physics
Pipinos, Savas – Mathematics Teaching, 2010
This article describes one classroom activity in which the author simulates the Newtonian gravity, and employs the Euclidean Geometry with the use of new technologies (NT). The prerequisites for this activity were some knowledge of the formulae for a particle free fall in Physics and most certainly, a good understanding of the notion of similarity…
Descriptors: Physics, Geometry, Simulation, Mathematics Instruction
Grober, S.; Vetter, M.; Eckert, B.; Jodl, H.-J. – European Journal of Physics, 2007
We suggest that different string pendulums are positioned at different locations on Earth and measure at each place the gravitational acceleration (accuracy [delta]g is approximately equal to 0.01 m s[superscript -2]). Each pendulum can be remotely controlled via the internet by a computer located somewhere on Earth. The theoretical part describes…
Descriptors: Teaching Methods, Laboratory Equipment, Internet, Physics
Mooldijk, Ad; van der Valk, Ton; Wooning, Jacqueline – Science Education International, 2006
In the framework of a curriculum reform in the Netherlands, an interdisciplinary open inquiry assignment has been introduced as a part of the final secondary school examinations. We developed and evaluated a preparatory open inquiry assignment to be used in science and mathematics departments of schools, in collaboration with each other: the…
Descriptors: Foreign Countries, Inquiry, Secondary School Science, Science Instruction

Brown, Ronald A. – Physics Teacher, 1992
Discusses solutions to the problem of maximizing the range of a projectile. Presents three references that solve the problem with and without the use of calculus. Offers a fourth solution suitable for introductory physics courses that relies more on trigonometry and the geometry of the problem. (MDH)
Descriptors: High Schools, Higher Education, Kinetics, Mathematical Formulas

Spencer, C. D.; Seligmann, P. F. – Physics Teacher, 1992
Describes a first-year laboratory course designed to fulfill laboratory objectives of reinforcing lecture material, teaching experimental methodology, developing hands-on skills, and imparting a sense of error. The course's six segments examine: digital electronics with students building a photogate timer; error analysis; linear accelerated…
Descriptors: Acceleration (Physics), Computer Assisted Instruction, High Schools, Higher Education