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May, Jason M.; Barth-Cohen, Lauren A.; Gerton, Jordan M.; De Grandi, Claudia; Adams, Adrian L. – Physical Review Physics Education Research, 2022
There is growing interest in implementing reform-based lab courses in undergraduate physics that are student driven rather than instructor driven. In these courses, students develop and carry out experiments while simultaneously reasoning about their hypotheses, data collection procedures, collected evidence, and the relevant physics content.…
Descriptors: Introductory Courses, Physics, Science Instruction, Teaching Methods
Fang, Ning; Guo, Yongqing – Journal of Educational Computing Research, 2023
Computer simulation and animation (CSA) is educational technology in which computer programs are employed to simulate and animate real-world physical phenomena and processes. CSA has attracted growing attention and received an increasing number of applications in the international science, technology, engineering, and mathematics education…
Descriptors: Educational Improvement, Learning Processes, Educational Technology, Computer Software
Hughes, Andrew J.; Merrill, Chris – Technology and Engineering Teacher, 2020
The basic concepts inherent to statics, including unbalanced and balanced forces and instability and stability of physical systems, have traditionally been covered in middle and high school physical science courses (Physical Science as indicated in "Next Generation Science Standards"). Yet, these concepts are covered using a physical…
Descriptors: Technology Education, Engineering Education, Transfer of Training, Theory Practice Relationship
Çalis, Sevgül – Journal of Technology and Science Education, 2020
The popularization of the STEM educational model has also brought along the need for well-trained teachers. In this model, it is aimed to understand examples in real world and solve related problems. Of course, this depends on the development of critical thinking, creative thinking, researching and experimental skills. For these reasons, the…
Descriptors: Chemistry, Physics, Science Education, Preservice Teachers
Chen, Qingwei; Zhu, Guangtian; Liu, Qiaoyi; Han, Jing; Fu, Zhao; Bao, Lei – Physical Review Physics Education Research, 2020
Problem-solving categorization tasks have been well studied and used as an effective tool for assessment of student knowledge structure. In this study, a traditional free-response categorization test has been modified into a multiple-choice format, and the effectiveness of this new assessment is evaluated. Through randomized testing with Chinese…
Descriptors: Foreign Countries, Test Construction, Multiple Choice Tests, Problem Solving
Zainuddin; Suyidno; Dewantara, Dewi; Mahtari, Saiyidah; Nur, Mohamad; Yuanita, Leny; Sunarti, Titin – International Journal of Instruction, 2020
The purpose of this study was to find out the correlation between scientific knowledge and science process skills with scientific creativity in Creative Responsibility Based Learning (CRBL). This study involved 83 students of science, physics, chemistry and biology education at Lambung Mangkurat University, Indonesia. The process of data…
Descriptors: Science Process Skills, Knowledge Level, Correlation, Science Instruction
Balta, Nuri; Japashov, Nursultan; Abdulbakioglu, Mustafa; Oliveira, Alandeom W. – Physics Education, 2020
Student cognition in response to intuitive and counterintuitive stimuli in the school science curriculum is not well understood. To address this issue, this study examines high school students' cognitive responses to three counterintuitive physics problems. Our analysis reveals that student success in arriving at counter-intuitive physical…
Descriptors: High School Students, Science Instruction, Secondary School Science, Physics
Ríos, Laura; Pollard, Benjamin; Dounas-Frazer, Dimitri R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2019
Models of physical systems are used to explain and predict experimental results and observations. The Modeling Framework for Experimental Physics describes the process by which physicists revise their models to account for the newly acquired observations, or change their apparatus to better represent their models when they encounter discrepancies…
Descriptors: Protocol Analysis, Interviews, Logical Thinking, Electronics
Geske, Matthew – Physics Teacher, 2019
Many introductory physics courses begin with the teaching of motion and kinematics. This naturally leads to the use of constant acceleration equations to solve various problems involving common motions (free fall being a notable example). Students can sometimes get the impression that these equations are the only thing they need to remember in…
Descriptors: Physics, Science Instruction, Scientific Concepts, Introductory Courses
Lucas, Lyrica L.; Lewis, Elizabeth B. – School Science and Mathematics, 2019
Findings from physics education research strongly point to the critical need for teachers' use of multiple representations in their instructional practices such as pictures, diagrams, written explanations, and mathematical expressions to enhance students' problem-solving ability. In this study, we explored use of problem-solving tasks for…
Descriptors: High School Students, Physics, Problem Solving, Scaffolding (Teaching Technique)
Frensley, John – Physics Teacher, 2019
Traditional high school physics instruction often comes across as a mere extension of the mathematics classroom to many of our students. Solving numerical physics problems using structures such as the GUESS method (given, unknown, equation, substitute, solve) doesn't help students with conceptual understanding. With the advent of physics education…
Descriptors: High School Students, Secondary School Science, Physics, Science Process Skills
Cheong, Yong Wook; Ha, Sangwoo; Byun, Taejin – Physics Education, 2019
Although students experience friction in their everyday life, they have difficulty understanding the scientific concept of friction. To solve this problem, various instructional suggestions have been made by researchers concerning the teaching of friction. In this study, we conducted a survey to investigate science high school students' reasoning…
Descriptors: Physics, Science Instruction, Logical Thinking, Problem Solving
Putri, Noviana; Rusdiana, Dadi; Suwarma, Irma Rahma – Journal of Science Learning, 2019
The main goal of this study is to present the effectiveness improvement of student's creative thinking skills using CBL implemented in STEM education and CBL combined with worksheet PSL. The STEM education perspective used in this study is a separate science discipline (Physics) that incorporates other disciplines. The research method used in this…
Descriptors: Foreign Countries, Creative Thinking, Thinking Skills, Problem Solving
Saudelli, Mary Gene; Kleiv, Robin; Davies, Jessica; Jungmark, Martin; Mueller, Rebecca – Brock Education: A Journal of Educational Research and Practice, 2021
Simulation educational technologies provide a convenient way to augment classroom learning in higher education. The University of Colorado Boulder has created many Physics Education Technology (PhET) computer simulations relevant to concepts in Sciences and Mathematics. There is a notable gap in the literature of simulation-based technologies,…
Descriptors: College Science, Undergraduate Study, Science Instruction, Physics
Gifford, Julian D.; Finkelstein, Noah D. – Physical Review Physics Education Research, 2021
This paper extends prior work establishing an operationalized framework of mathematical sense making (MSM) in physics. The framework differentiates between the object being understood (either physical or mathematical) and various tools (physical or mathematical) used to mediate the sense-making process. This results in four modes of MSM that can…
Descriptors: Curriculum Design, Multiple Choice Tests, Correlation, Problem Solving

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