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Showing 1 to 15 of 42 results Save | Export
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Kersting, Magdalena; Toellner, Richard; Blair, David; Burman, Ron – Physics Education, 2020
In recent years, general relativity (GR) and gravitational-wave astronomy have emerged both as active fields of research and as popular topics in physics classrooms. Teachers can choose from an increasing number of modern instructional models to introduce students to relativistic ideas. However, the true potential of an instructional model can…
Descriptors: Science Instruction, Physics, Astronomy, Scientific Concepts
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Makous, John L.; Bandura, Kevin – Physics Teacher, 2021
Models are at the heart of any physics discipline, and in recent decades physics education has shifted heavily toward teaching students how to think using models. Involving students in an investigation of a real phenomenon through measurements and the applications of models is an ideal learning experience for a physics student and is the aim of…
Descriptors: Physics, Science Instruction, Teaching Methods, Models
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Su, Jun; Wang, Weiguo; Wang, Sihui – Physics Education, 2019
In a spiral galaxy, the stars move in a circular motion around the galactic center, and the relation between velocity and the orbital radius is referred to as the rotation curve. Previous astronomical observation data indicate that the rotation curve is flat at the periphery of the galaxy, which completely dissatisfies Keplerian decline. Assuming…
Descriptors: Visualization, Scientific Concepts, Astronomy, Motion
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Jensen, Marc – Montessori Life: A Publication of the American Montessori Society, 2020
As children develop an understanding of their place in the universe, their mental model of the solar system should really go beyond a list of planet names and attributes to become a dynamic concept of bodies in motion and interaction. Montessori educators can help build a Sensorial impression of the cosmos by physically modeling the nature of…
Descriptors: Montessori Schools, Montessori Method, Astronomy, Science Education
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Pinochet, Jorge; Van Sint Jan, Michael – Physics Education, 2018
In 1936, Albert Einstein wrote a brief article where he suggested the possibility that a massive object acted as a lens, amplifying the brightness of a star. As time went by, this phenomenon--known as gravitational lensing--has become a powerful research tool in astrophysics. The simplest and symmetrical expression of a gravitational lens is known…
Descriptors: Physics, Science Instruction, Teaching Methods, Algebra
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Xu, Beichen; Su, Jun; Wang, Weiguo – Physics Education, 2018
Cosmic expansion is an important concept in astronomy. For ease of understanding, astronomers generally draw an analogy between cosmic expansion and the expansion of a spherical surface in 3D space. This study theoretically and experimentally investigates the laws governing the motion of particles on the surface of a balloon during expansion.…
Descriptors: Physics, Science Instruction, Astronomy, Motion
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Euler, Elias; Rådahl, Elmer; Gregorcic, Bor – Physical Review Physics Education Research, 2019
In this paper, we present a case study of a pair of students as they use nondisciplinary communicative practices to mechanistically reason about binary star dynamics. To do so, we first review and bring together the theoretical perspectives of social semiotics and embodied cognition, therein developing a new methodological approach for analyzing…
Descriptors: Physics, Science Instruction, Logical Thinking, Semiotics
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Gangui, Alejandro; Casazza, Roberto; Paex, Carlos – Physics Teacher, 2014
It is customary to employ a semi-spherical scale model to describe the apparent path of the Sun across the sky, whether it be its diurnal motion or its variation throughout the year. A flat surface and three bent semi-rigid wires (representing the three solar arcs during solstices and equinoxes) will do the job. On the other hand, since very early…
Descriptors: Science Instruction, Physics, Astronomy, Teaching Methods
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Veto, B. – European Journal of Physics, 2011
The Machian effect of distant masses of the universe in the frame of reference of the rotating Earth is demonstrated using the gravitomagnetic approach of general relativity. This effect appears in the form of a gravitomagnetic Lorentz force acting on moving bodies on the Earth. The gravitomagnetic field of the universe--deduced from a simple…
Descriptors: Physics, Astronomy, Scientific Concepts, Equations (Mathematics)
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Muñoz, Karla; Noguez, Julieta; Neri, Luis; Mc Kevitt, Paul; Lunney, Tom – Educational Technology & Society, 2016
Game-based Learning (GBL) environments make instruction flexible and interactive. Positive experiences depend on personalization. Student modelling has focused on affect. Three methods are used: (1) recognizing the physiological effects of emotion, (2) reasoning about emotion from its origin and (3) an approach combining 1 and 2. These have proven…
Descriptors: Educational Games, Psychological Patterns, Models, Academic Achievement
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Coban, Gul Unal; Sengoren, Serap Kaya – Science Activities: Classroom Projects and Curriculum Ideas, 2011
The purpose of this activity is to model the expansion of the universe by investigating the behavior of water waves. It is designed for students in the upper grades of physics and physical science who are learning about the wave nature of light and are ready to discover such important questions about science. The article explains first the Doppler…
Descriptors: Astronomy, Models, Science Activities, Physical Sciences
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Williamson, Kathryn E.; Willoughby, Shannon – Astronomy Education Review, 2012
Twenty-four free-response questions were developed to explore introductory college astronomy students' understanding of gravity in a variety of contexts, including in and around Earth, throughout the solar system, and in hypothetical situations. Questions were separated into three questionnaires, each of which was given to a section of…
Descriptors: Models, Physics, Astronomy, Misconceptions
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Tort, A. C.; Nogarol, F. – European Journal of Physics, 2011
We take another look at the Helmholtz model for the gravitational contraction of the Sun. We show that there are two other pedagogically useful ways of rederiving Helmholtz's main results that make use of Gauss's law, the concept of gravitational field energy and the work-kinetic energy theorem. An account of the energy balance involved in the…
Descriptors: Kinetics, Scientific Concepts, Astronomy, Science Instruction
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Onorato, P.; Mascheretti, P.; DeAmbrosis, A. – European Journal of Physics, 2011
In this paper a simplified two-parameter model of the greenhouse effect on the Earth is developed, starting from the well known two-layer model. It allows both the analysis of the temperatures of the inner planets, by focusing on the role of the greenhouse effect, and a comparison between the temperatures the planets should have in the absence of…
Descriptors: Physics, Climate, Horticulture, Models
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Newbury, Peter – Physics Teacher, 2010
One of the fundamental learning goals of introductory astronomy is for the students to gain some perspective on the scale and structure of the solar system. Many astronomy teachers have laid out the planets along a long strip of paper or across a school grounds or campus. Other activities that investigate the motion of the planets are often…
Descriptors: Space Sciences, Astronomy, Motion, Science Instruction
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