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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
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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
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Secrest, Jeffery A.; Jarra, Ibrahim – Physics Education, 2022
The problem of an electrically charged pendulum above a grounded conducting surface is examined using traditional analyses, such as forces, energy, and torque. The system was numerically modelled using a finite difference method and analysed. A number of classroom activities have been suggested.
Descriptors: Science Instruction, Physics, Energy, Mechanics (Physics)
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Fongsamut, Kanokkarn; Tanasittikosol, Monsit; Phaksunchai, Mingkhuan – Physics Education, 2023
This research studied the effectiveness of the simulation-based learning assisted with scaffolding approach to address students' misconceptions (MCs) about projectile motion. The five MCs were related to the direction of the force acting on an object (MC1), the acceleration of an object at the top of the trajectory (MC2), the directions of…
Descriptors: Instructional Effectiveness, Simulation, Scaffolding (Teaching Technique), Misconceptions
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Binbin Qi; Muhua Zhang; Xuefang Zhu; Yanshuang Jiang; Xin Xiang – Education and Information Technologies, 2024
Museum learning is beneficial for social inclusion, deepening partnerships between schools and museums, and increasing levels of pupil attainment. While there have been numerous empirical studies on the use of haptics in formal educational settings, few have explored the effect of haptic interaction on learning outcomes in museum learning. This…
Descriptors: Museums, Tactual Perception, Interaction, Outcomes of Education
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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)
Yi Zhang; Yudong Tao; Mei-Ling Shyu; Lynn K. Perry; Prem R. Warde; Daniel S. Messinger; Chaoming Song – Grantee Submission, 2022
Current models of COVID-19 transmission predict infection from reported or assumed interactions. Here we leverage high-resolution observations of interaction to simulate infectious processes. Ultra- Wide Radio Frequency Identification (RFID) systems were employed to track the real-time physical movements and directional orientation of children and…
Descriptors: COVID-19, Pandemics, Simulation, Observation
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Gonzalez, Fernando – Education and Information Technologies, 2023
The study of robotics has become a popular course among many educational programs, especially as a technical elective. A significant part of this course involves having the students learn how to program the movement of a robotic arm by controlling the velocity of its individual joint motors, a topic referred to as joint programming. They must…
Descriptors: Robotics, Educational Technology, Technology Uses in Education, Simulation
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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
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Thiago Costa Caetano; Camila Cardoso Moreira; Mikael Frank Rezende Junior – IEEE Transactions on Education, 2024
Contribution: This work seeks to ascertain the validity of a remote-controlled experiment of the Physics Remote Lab in the educational context, specifically among students from engineering courses. Background: In 2012, it has been started the development of the Physics Remote Lab at the Federal University of Itajubá, Brazil, a laboratory with a…
Descriptors: Engineering Education, Laboratory Experiments, Foreign Countries, Computer Uses in Education
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Reina Karen M. Celestino-Salcedo; Jr. Sotero O. Malayao Jr.; Monera A. Salic-Hairulla; Ellen J. Castro; Ivy Claire V. Mordeno – Journal of Education and Learning (EduLearn), 2024
The challenge of creating reliable technology-based resources for science learning is a perennial challenge in Philippine education, with limited learning materials accessible to all learners. This study is about the development of a videocast embedded with physics education technology (PhET) simulation that served as supplementary learning…
Descriptors: Physics, Science Education, Motion, Scientific Concepts
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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