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Showing 16 to 30 of 184 results Save | Export
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Aslan, Ferhat; Buyuk, Ugur – European Journal of Educational Sciences, 2021
The purpose of this work is to examine the issue of pre-service science teachers' (PSST) Geogebra applications on misconceptions about projectile motion (PM) and the permanence of learning concepts. In this study, quantitative research method was used as scientific research method, and semi-experimental design with pre-test, post-test control…
Descriptors: Misconceptions, Concept Formation, Physics, Motion
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Rizcallah, Joseph A. – Physics Education, 2018
Projectile motion is a constant theme in introductory-physics courses. It is often used to illustrate the application of differential and integral calculus. While most of the problems used for this purpose, such as maximizing the range, are kept at a fairly elementary level, some, such as determining the safe domain, involve not so elementary…
Descriptors: Motion, Physics, Algebra, Science Instruction
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Chow, John W.; Carlton, Les G.; Ekkekakis, Panteleimon; Hay, James G. – Physics Teacher, 2000
Discusses advantages of a video-based, digitized image system for the study and analysis of projectile motion in the physics laboratory. Describes the implementation of a web-based digitized video system. (WRM)
Descriptors: Acceleration (Physics), Computer Uses in Education, Force, High Schools
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Sanders, James C. – Physics Teacher, 2020
The ballistic pendulum apparatus is a fairly ubiquitous element of the introductory physics laboratory, as the pendulum and launcher gun can be used together or independently to demonstrate a variety of concepts from conservation laws to projectile motion to the motion of a physical pendulum. In this work, we control the launch speed of the gun to…
Descriptors: Physics, Science Instruction, Motion, Science Equipment
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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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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
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Wijaya, P. A.; Fauzi, U.; Latief F. D. E. – Physics Education, 2019
The air drag constant for different nose shapes of projectiles is determined with the help of a simple method combining a projectile launcher, video tracking technique and spreadsheet computer code for simulating the motion. A projectile launcher with low-cost components is developed to study air drag in projectile motion. The launcher is based on…
Descriptors: Physics, Measurement Equipment, Video Technology, Measurement Techniques
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Pili, Unofre; Violanda, Renante – Physics Education, 2019
This article considers a further experimental demonstration of the equations of projectile motion employing the popular video-based motion modeling tool called Tracker. Using a downloaded video--of a free throw attempt by the NBA star Lebron James--from YouTube.com, the primary equations of projectile motion, together with a number of projectile…
Descriptors: Physics, Science Instruction, Teaching Methods, Video Technology
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Daniel, Ann – Physics Teacher, 2019
Researchers have shown students develop misconceptions in projectile motion for various reasons. A common misunderstanding among first-year high school physics students is the notion that the horizontal and vertical components are interchangeable in projectile motion. The students' incorrect reasoning is connected to their personal experiences…
Descriptors: Experiential Learning, Motion, Misconceptions, Physics
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Schvartzer, Maayan; Elazar, Michael; Kapon, Shulamit – Science & Education, 2021
Many physics learners take the specific mathematical representations they are using as part of their learning and doing physics for granted. The paper addresses this problem by highlighting two goals. The first is to show how a historical investigation from history of science can be transformed into a concrete lesson plan in physics, in a physics…
Descriptors: Physics, Science Teachers, Science Instruction, Teaching Methods
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Priyanto, Aan; Rahmawati, Ita; Aji, Mahardika Prasetya – Physics Education, 2020
An experiment using the volumetric flux of a water stream was used to find the initial velocity of the water as it performs parabolic motion. The trajectories were measured with different initial velocities, comparing the maximum height and range values with the theoretical calculations. The closeness of the measured values to the calculations…
Descriptors: Science Instruction, Science Experiments, Motion, Physics
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Padyala, Radhakrishnamurty – Physics Teacher, 2019
Fernández-Chapou and colleagues analyzed projectile trajectories and showed an elliptic property hidden in them. For that analysis, they considered projectiles shot from a point with a common value of speed and different angles of projection. Such projectile paths exhibit some interesting characteristics. For example, pairs of projectiles with…
Descriptors: Physics, Science Instruction, Scientific Concepts, Motion
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Padyala, Radhakrishnamurty – Physics Teacher, 2020
The family of paths of ideal projectiles shot from a point with a common value of speed and at different angles to the horizontal has several interesting properties associated with it. For example, Chapou et al. have shown that an ellipse passes through the apexes of these parabolic paths. This observation encouraged us to further explore this…
Descriptors: Physics, Motion, Mechanics (Physics), Science Instruction
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Azhikannickal, Elizabeth – Physics Teacher, 2019
Much data, both published and anecdotal, have shown that students grasp scientific concepts more easily when they are directly involved in the learning via lab experiments or other hands-on activities. Hands-on or experiential learning also appears to aid in students' ability to retain scientific theory. One way to engage students in a first-year…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
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Sinkovits, Daniel Wilhelm – Physics Teacher, 2022
The cross diagram is a way to illustrate and plan the solutions for all kinds of constant-acceleration kinematics problems--including projectile motion, multistage, and multiple-object problems. The cross diagram arranges the kinematic variables in a logical way, making the kinematic relationships between them easy to identify. Combined with a…
Descriptors: Science Instruction, Mechanics (Physics), Visual Aids, Motion
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