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Noly Shofiyah; Nadi Suprapto; Binar Kurnia Prahani; Budi Jatmiko; Desak Made Anggraeni; Khoirun Nisa' – Cogent Education, 2024
This research investigates the abilities of undergraduate students to apply scientific reasoning in Indonesia, with a particular focus on the concept of force and motion. Forty-three first-year undergraduate students from an Indonesian private institution, comprising 20 males and 23 females, performed the Scientific Reasoning Test of Motion (SRTM)…
Descriptors: Motion, Physics, Scientific Concepts, Thinking Skills
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Bouzid, Tariq; Kaddari, Fatiha; Darhmaoui, Hassane – Journal of Educational Research, 2022
This work investigates science major students' misconceptions about "force and motion." Stratified-convenience sampling method has been conducted on 232 Moroccan high school students. Using Force Concept Inventory (FCI), we examined all known misconceptions listed in the original article by Hestenes et al. (1992, "Phys. Teach."…
Descriptors: Foreign Countries, Scientific Concepts, Misconceptions, High School Students
Ryan Tapping – ProQuest LLC, 2021
In this dissertation I will present my work in both the fields of spintronics and physics education research. In the first section, I present a method to account for spin pumping in spin torque ferromagnetic resonance (ST-FMR) measurements. A spin current can be generated via the spin Hall effect (SHE), which is typically transverse to the charge…
Descriptors: Magnets, Electronics, Physics, Scientific Concepts
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Wells, James; Henderson, Rachel; Traxler, Adrienne; Miller, Paul; Stewart, John – Physical Review Physics Education Research, 2020
Investigating student learning and understanding of conceptual physics is a primary research area within physics education research. Multiple quantitative methods have been employed to analyze commonly used mechanics conceptual inventories: the Force Concept Inventory (FCI) and the Force and Motion Conceptual Evaluation (FMCE). Recently,…
Descriptors: Physics, Science Education, Educational Research, Scientific Concepts
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Al-Rsa'i, Mohammad S.; Khoshman, Jebreel M.; Abu Tayeh, Khalid – Journal of Turkish Science Education, 2020
The objective of this study was to investigate the physics student-teachers misconceptions in force and motion concepts in Jordanian universities by using the Force Concept Inventory (FCI) test and to identify the cause of misconceptions related to these concepts. Also, the FCI has been used to detect whether misconceptions vary according to…
Descriptors: Preservice Teachers, Undergraduate Students, Late Adolescents, Science Education
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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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Leman, Patrick J.; Skipper, Yvonne; Watling, Dawn; Rutland, Adam – Child Development, 2016
Three hundred and forty-one children (M[subscript age] = 9,0 years) engaged in a series of science tasks in collaborative, same-sex pairs or did not interact. All children who collaborated on the science tasks advanced in basic-level understanding of the relevant task (motion down an incline). However, only boys advanced in their conceptual…
Descriptors: Child Development, Gender Differences, Science Activities, Task Analysis
Friedman, Lawrence B.; Margolin, Jonathan; Swanlund, Andrew; Dhillon, Sonica; Liu, Feng – American Institutes for Research, 2017
Playground Physics is a technology-based application and accompanying curriculum designed by New York Hall of Science (NYSCI) to support middle school students' science engagement and learning of force, energy, and motion. The program includes professional development, the Playground Physics app, and a curriculum aligned with New York State…
Descriptors: Middle School Students, Science Instruction, Secondary School Science, Physics
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Bayraktar, Sule – International Journal of Science and Mathematics Education, 2009
The purpose of this study was to diagnose the misconceptions held by pre-service physics teachers about force and motion. The secondary aim of the study was to detect whether misconceptions vary according to gender, educational level, and culture. The study was conducted with 79 student-teachers attending to one of the largest faculties of…
Descriptors: Physics, Motion, Foreign Countries, Gender Differences
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Chen, Ying-Chih; Hand, Brian; McDowell, Leah – Science Education, 2013
This quasi-experimental and pre/posttest study was designed to examine whether fourth-grade students who engaged in collaboratively writing letters to 11th-grade students performed better on tests of conceptual understanding of a unit on force and motion than students who did not. The participants included 835 fourth-grade students and 416…
Descriptors: Quasiexperimental Design, Pretests Posttests, Grade 4, Grade 11
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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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Slykhuis, David; Park, John C. – Journal of Interactive Online Learning, 2006
The focus of this study was twofold: one, to determine if students could increase their physics content knowledge through the completion of an online hands-on Microcomputer-Based Laboratory (MBL) unit on motion; and two to determine if the demonstrated learning gains were equivalent to those of students who completed the same MBL activities in a…
Descriptors: Motion, Physics, High School Students, Comparative Analysis