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Ramos, L. M.; Reis, C. R. N.; Calheiro, L. B.; Goncalves, A. M. B. – Physics Education, 2021
Using a joystick module, we followed the movement of a chaotic magnetic pendulum. The pendulum bar was attached to a joystick that served as a pivot point and biaxial angular motion sensor. Using an Arduino board, we could follow the position as a function of time along both the "x" and "y"-axis and draw a graph showing the…
Descriptors: Physics, Science Instruction, Computer Software, Motion
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Singh, I.; Khun Khun, K.; Kaur, B. – Physics Education, 2019
This paper presents the usage of an Excel spreadsheet for studying charged particle dynamics in the presence of uniform electric and magnetic fields. The equation of motion of the charged particle is developed under different conditions and the data is obtained in an Excel spreadsheet under variation of parameters such as the velocity of charged…
Descriptors: Physics, Science Instruction, Computer Software, Spreadsheets
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Christian, Wolfgang; Belloni, Mario – Physics Teacher, 2013
We have recently developed a Graphs and Tracks model based on an earlier program by David Trowbridge, as shown in Fig. 1. Our model can show position, velocity, acceleration, and energy graphs and can be used for motion-to-graphs exercises. Users set the heights of the track segments, and the model displays the motion of the ball on the track…
Descriptors: Science Instruction, Physics, Computer Assisted Instruction, Graphs
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Simpson, Scott; Autschbach, Jochen; Zurek, Eva – Journal of Chemical Education, 2013
A computational experiment that investigates the optical activity of the amino acid valine has been developed for an upper-level undergraduate physical chemistry laboratory course. Hybrid density functional theory calculations were carried out for valine to confirm the rule that adding a strong acid to a solution of an amino acid in the l…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
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Anderson, Bruce D. – Journal of Chemical Education, 2012
Many quantum mechanical models are discussed as part of the undergraduate physical chemistry course to help students understand the connection between eigenvalue expressions and spectroscopy. Typical examples covered include the particle in a box, the harmonic oscillator, the rigid rotor, and the hydrogen atom. This article demonstrates that…
Descriptors: Chemistry, Science Instruction, Quantum Mechanics, Mechanics (Physics)
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Wee, Loo Kang; Tan, Kim Kia; Leong, Tze Kwang; Tan, Ching – Physics Education, 2015
This paper reports the use of Tracker as a computer-based learning tool to support effective learning and teaching of "toss up" and free fall motion for beginning secondary three (15?year-old) students. The case study involved (N = 123) students from express pure physics classes at a mainstream school in Singapore. We used eight…
Descriptors: Computer Assisted Instruction, Motion, Physics, Scientific Concepts
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Khairurrijal; Eko Widiatmoko; Srigutomo, Wahyu; Kurniasih, Neny – Physics Education, 2012
A method has been developed to measure the swing period of a simple pendulum automatically. The pendulum position is converted into a signal frequency by employing a simple electronic circuit that detects the intensity of infrared light reflected by the pendulum. The signal produced by the electronic circuit is sent to the microphone port and…
Descriptors: Electronic Equipment, Laboratory Equipment, Science Instruction, Physics
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Kocakaya, F.; Gönen, S. – Science Education International, 2014
Main aim of this study is to examine the influence of computer-assisted roundhouse diagrams on high school 9th grade students' academic achievements in the subjects of "Force and Motion". The study was carried out in a public high school in Diyarbakir the province in the Southeast of Turkey. In the study, the "pre-test-post-test…
Descriptors: Foreign Countries, Physics, Science Instruction, Motion
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Jones, M. Gail; Childers, Gina; Emig, Brandon; Chevrier, Joël; Tan, Hong; Stevens, Vanessa; List, Jonathan – Journal of Visual Impairment & Blindness, 2014
Traditional science instruction is typically reliant on visual modes of learning, such as textbooks and graphs. Furthermore, since science instruction is often heavily dependent upon visual cues, students with visual impairment often do not have access to the same educational opportunities in most science classes (Jones, Minogue, Oppewal, Cook,…
Descriptors: Visual Impairments, Blindness, Science Instruction, Teaching Methods
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Anastopoulou, Stamatina; Sharples, Mike; Baber, Chris – British Journal of Educational Technology, 2011
This paper explores the value of employing multiple modalities to facilitate science learning with technology. In particular, it is argued that when multiple modalities are employed, learners construct strong relations between physical movement and visual representations of motion. Body interactions with visual representations, enabled by…
Descriptors: Graphs, Scientific Concepts, Science Instruction, Visualization
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Karamustafaoglu, O. – Educational Research and Reviews, 2012
Simple harmonic motion (SHM) is an important topic for physics or science students and has wide applications all over the world. Computer simulations are applications of special interest in physics teaching because they support powerful modeling environments involving physics concepts. This article is aimed to compare the effect of…
Descriptors: Foreign Countries, Computer Assisted Instruction, Computer Simulation, Comparative Analysis
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Fogarty, Ian; Geelan, David – Journal of Computers in Mathematics and Science Teaching, 2013
Students in 4 Canadian high school physics classes completed instructional sequences in two key physics topics related to motion--Straight Line Motion and Newton's First Law. Different sequences of laboratory investigation, teacher explanation (lecture) and the use of computer-based scientific visualizations (animations and simulations) were…
Descriptors: Foreign Countries, Computer Simulation, Animation, Computer Assisted Instruction
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Bryan, J. A. – Physics Education, 2010
Inexpensive video analysis technology now enables students to make precise measurements of an object's position at incremental times during its motion. Such capability now allows users to "examine", rather than simply "assume", energy conservation in a variety of situations commonly discussed in introductory physics courses. This article describes…
Descriptors: Energy Conservation, Physics, Educational Technology, Science Instruction
Northwest Regional Educational Lab., Portland, OR. – 1982
THE FOLLOWING IS THE FULL TEXT OF THIS DOCUMENT (Except for the Evaluation Summary Table): VERSION: Member's Apple Demonstration Kit. PRODUCER: Conduit, P.O. Box 388, Iowa City, Iowa 52244. EVALUATION COMPLETED: June 1982 by the staff and constituents of the Portland Public Schools, Multnomah ESD, Portland, Oregon. COST: $35.00. ABILITY LEVEL:…
Descriptors: Computer Assisted Instruction, Computer Programs, Gravity (Physics), Microcomputers
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Winters, Loren M. – Physics Teacher, 1991
Describes the use of a microcomputer as an intervalometer for the control and timing of several flash units to photograph high-speed events. Applies this technology to study the oscillations of a stretched rubber band, the deceleration of high-speed projectiles in water, the splashes of milk drops, and the bursts of popcorn kernels. (MDH)
Descriptors: Computer Assisted Instruction, Computers, High Schools, Light
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