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Bernholt, Sascha; Härtig, Hendrik; Retelsdorf, Jan – Research in Science Education, 2023
The use of texts is an indispensable resource for students' learning, especially in science domains. While developing understanding of a specific topic usually is the main goal of reading expository texts, an important consideration is how to best measure whether this understanding has been reached. In this study, we aimed to analyze gains in…
Descriptors: Science Education, Reading Comprehension, Chemistry, Physics
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Krusberg, Zosia; Coalson, Elam; Feldman, Andrew – Physics Teacher, 2023
One of the objectives of the undergraduate physics curriculum is for students to become aware of the connections between formal physical principles and personal experience. However, research has shown that awareness of connections between the abstract and the experiential tends to deteriorate, sometimes significantly, after instruction in…
Descriptors: Magnets, Undergraduate Students, Physics, Science Education
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Hitier, Mathilde; González-Martín, Alejandro S. – International Journal of Research in Undergraduate Mathematics Education, 2022
Of the many disciplines that rely on calculus, physics is among those with the strongest connections to this branch of mathematics. For instance, the derivative--one of the key notions of calculus--is used to describe velocity and acceleration, which play a central role in mechanics. In post-secondary education, in particular at the college level,…
Descriptors: Calculus, Physics, Motion, Scientific Concepts
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Bahtaji, Michael Allan A. – Journal of Baltic Science Education, 2023
Exploring students' physics conceptions, science engagement and misconceptions in physics together with their association to certain variables (gender, educational background, and program of study) are essential in improving physics teaching and learning. However, few studies have been conducted to explore these three measures and almost none…
Descriptors: Physics, Science Education, Scientific Concepts, Misconceptions
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Anil, Özgür; Batdi, Veli – Education and Information Technologies, 2023
The present research is an examination of Augmented Reality (AR) applications in Science Education using the Multi-complementary Approach (McA). This incorporates multiple analyses: i) Pre-complementary: meta-analysis and meta-thematic analysis, ii) Post-complementary: an experimental design with a pre- and post-test control group and iii)…
Descriptors: Computer Simulation, Science Education, Educational Technology, Physics
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Hahn, L.; Klein, P. – Physical Review Physics Education Research, 2022
Eye tracking is becoming increasingly popular in physics education research (PER). As technology has advanced considerably in recent years and has become more user friendly, it is anticipated that eye tracking will play an increasingly significant role in assessing student learning at the process level in future studies. The main objective of this…
Descriptors: Eye Movements, Physics, Science Education, Educational Research
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Lindsey, Beth A.; Stetzer, MacKenzie R.; Speirs, J. Caleb; Ferm, William N., Jr.; van Hulten, Alexander – Physical Review Physics Education Research, 2023
In this paper, we seek to evaluate the extent to which students can follow a deductive reasoning chain when it is presented to them. A great deal of instruction in introductory physics courses is centered on presenting students with a logical argument that starts from first principles and systematically leads to a particular conclusion. This…
Descriptors: Physics, Science Education, Scientific Concepts, Concept Formation
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Brock, Richard; Kampourakis, Kostas – Science & Education, 2023
Scientific teleological explanations cite end states as causes to account for physical phenomena. Researchers in science education have noted that students can use teleological explanations in ways that are illegitimate, for example, by implying that inanimate objects are acting intentionally. Despite such cases, several examples of legitimate…
Descriptors: Physics, Science Education, Epistemology, Philosophy
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Zhang, Jiarui; Zhang, Junhui; Chen, Qiushi; Deng, Xiaorong; Zhuang, Wei – Physics Teacher, 2023
With the development of digital technology, plentiful sensors are embedded in the smartphone, which makes it a valuable tool for teaching elementary experimental physics. For instance, the magnetic field sensor of the smartphone has been used to measure gravitational acceleration by measuring the magnetic pendulum's oscillation period. The…
Descriptors: Physics, Scientific Concepts, Science Education, Handheld Devices
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Levenson, Barton Paul – Physics Education, 2022
An internet poster recently floated the idea that friction with a recently denser interstellar medium causes global warming. Despite its superficially ridiculous nature, refuting this proposition is an interesting quantitative exercise.
Descriptors: Science Education, Scientific Concepts, Physics, Heat
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Ma, Xin; Zhang, Yin; Luo, Xingkai – Research in Science & Technological Education, 2023
Background: Although there is an increasing recognition of the importance of critical thinking in science education across the world, the relevant research literature is extremely thin. There is an urgent need to generate more empirical evidence. Purpose: We examined two essential issues concerning critical thinking (the relationship between…
Descriptors: Critical Thinking, Science Education, Academic Achievement, Physics
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Chen, Huai-Yi; Nieh, Hwa-Ming; Ko, Shih-Wei – Physics Teacher, 2022
In conventional physics teaching, acceleration measurement is demonstrated using motion sensors and carts on inclined tracks, and relevant data are collected using specific professional software. This approach entails the connection of computers and interface boxes, and requires high cost and large space. Air-track carts can be used to perform…
Descriptors: Physics, Measurement Techniques, Handheld Devices, Science Education
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Tofel-Grehl, Colby; Searle, Kristin A.; Ball, Douglas – Journal of Science Education and Technology, 2022
This paper shares findings from a teacher designed physics and computing unit that engaged students in learning physics and computing concurrently thru inquiry. Using scientific inquiry skills and practices, students were tasked with assessing the validity of local rollercoaster g-force ratings as posted to the public. Students used computational…
Descriptors: Computation, Thinking Skills, Science Education, Physics
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Shams El-Adawy; Alexandra C. Lau; Eleanor C. Sayre; Claudia Fracchiolla – Physical Review Physics Education Research, 2024
Physicists engage with the public to varying degrees at different stages of their careers. However, their public engagement covers many activities, events, and audiences, making their motivations and professional development needs not well understood. As part of ongoing efforts to build and support a community in the informal physics space, we…
Descriptors: Physics, Science Education, Scientists, Informal Education
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Salimpour, Saeed; Fitzgerald, Michael T. – Science & Education, 2022
This study explored over 200 journals and a content-focussed research repository to investigate the occurrence of research on the Big Questions in the field of astronomy education research (AER), focussing on Cosmology and Religion. Using both qualitative and quantitative techniques, 151 articles were selected and analysed. Our results reveal that…
Descriptors: Astronomy, Science Education, Educational Research, Religion
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