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Jiang, Shiyan; Huang, Xudong; Sung, Shannon H.; Xie, Charles – Research in Science Education, 2023
Learning analytics, referring to the measurement, collection, analysis, and reporting of data about learners and their contexts in order to optimize learning and the environments in which it occurs, is proving to be a powerful approach for understanding and improving science learning. However, few studies focused on leveraging learning analytics…
Descriptors: Learning Analytics, Hands on Science, Science Education, Laboratory Safety
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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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Jian-Xin, Yao; Yu-Xuan, Xiang; Tian, Luo; Chu-Fan, Deng; Yu-Ying, Guo; Fortus, David – Research in Science Education, 2023
Triggered by the pilot of the "Gao-Kao" reform, the avoidance of physics courses in senior high school has aroused the concern of society in China. The factors that influence the motivation to learn physics are an important research topic, especially for countries that have a disciplinary-based education tradition in secondary school.…
Descriptors: Student Motivation, Physics, High School Students, Foreign Countries
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Choudhary, Rahul; Foppoli, Alexander; Kaur, Tejinder; Blair, David; Burman, Ron; Zadnik, Marjan – Research in Science Education, 2022
The need to modernise school physics to encompass the fundamentals of Einsteinian physics is widely recognised. While the ability of students to comprehend qualitative Einsteinian concepts has been demonstrated, little information exists to determine the best student age and the duration of instruction required for introducing Einsteinian physics…
Descriptors: Comparative Analysis, Program Length, Physics, Intervention
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Gao, Yizhu; Zhai, Xiaoming; Cui, Ying; Xin, Tao; Bulut, Okan – Research in Science Education, 2022
This paper re-validates middle school students' learning progression of the concept of buoyancy (Gao et al., 2020) by using two-time point data. The previous study developed a four-level learning progression based on data collected at a single time point using cross-sectional design. This single-time-point model of learning progression calls for a…
Descriptors: Middle School Students, Grade 8, Physics, Science Curriculum
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Ðoric, Biljana; Lambic, Dragan; Jovanovic, Željko – Research in Science Education, 2021
The aim of this study was to determine the impact of three different software simulations for studying Ohm's law and connecting resistors on students' academic performance. A total of 168 eighth-grade pupils were divided into three groups. The first group used the software containing the simulation with an already created electrical circuit, an…
Descriptors: Grade 8, Feedback (Response), Computer Software, Computer Simulation
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Soysal, Yilmaz; Yilmaz-Tuzun, Ozgul – Research in Science Education, 2021
This study investigated science classroom discourse in terms of the types of teacher discursive moves (TDMs) and the relationships between the types of TDMs and student-led cognitive contributions in different science concepts by considering the classroom context. An experienced seventh-grade science teacher and her 19 students were engaged in…
Descriptors: Middle School Teachers, Video Technology, Science Instruction, Classroom Environment
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Ludwig, Tobias; Priemer, Burkhard; Lewalter, Doris – Research in Science Education, 2021
Justifications play a central role in argumentation, which is a core topic in school science education. This paper contributes to this field of research by presenting two studies in which we assess students' justifications for supporting or rejecting hypotheses in the physics lab based on self-collected, anomalous experimental data, which are…
Descriptors: Secondary School Students, Science Process Skills, Hypothesis Testing, Physics
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Kaur, Tejinder; Blair, David; Stannard, Warren; Treagust, David; Venville, Grady; Zadnik, Marjan; Mathews, Warwick; Perks, Dana – Research in Science Education, 2020
The modern Einsteinian conception of space, time, matter and radiation represents a radical paradigm shift compared with the traditional Newtonian physics that underpins most primary and secondary school science. It is increasingly recognised that school education should encompass this modern paradigm to allow a seamless progression of learning…
Descriptors: Middle School Students, Scientific Literacy, Scientific Concepts, Physics
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Zhang, Danhui; Bobis, Janette; Wu, Xiaolu; Cui, Yiran – Research in Science Education, 2020
Increasing student exposure to autonomy-supportive teaching approaches has been linked to enhanced student intrinsic motivation to learn. However, such approaches are rare in mainland Chinese science classrooms. An intervention-based study with quasi-experimental design and mixed methods was conducted to explore the impact of a 9-month-long…
Descriptors: Personal Autonomy, Teaching Methods, Student Motivation, Science Instruction
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Li, Xiying; Tan, Zuyu; Shen, Jiliang; Hu, Weiping; Chen, Yinghe; Wang, Jingying – Research in Science Education, 2020
Based on the "analytical framework of nature of science" (NOS) in junior school science textbooks, a content analysis method was adopted to analyze the NOS in junior middle school physical textbooks (grade 8) of five editions authorized by the Ministry of Education of China, and the features of NOS were analyzed and compared. It was…
Descriptors: Content Analysis, Grade 8, Textbooks, Scientific Principles
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Moodley, Kimera; Gaigher, Estelle – Research in Science Education, 2019
An exploratory case study involving six grade 9 science teachers was undertaken to probe how teachers' understanding of learners' misconceptions relate to their perceptions about teaching simple circuits. The participants' understanding of documented misconceptions in electricity were explored by means of a questionnaire, while their perceptions…
Descriptors: Electronics, Equipment, Science Instruction, Science Teachers
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Opitz, S. T.; Neumann, K.; Bernholt, S.; Harms, U. – Research in Science Education, 2019
Energy is considered both as a disciplinary core idea and as a concept cutting across science disciplines. Most previous approaches studied progressing energy understanding in specific disciplinary contexts, while disregarding the relation of understanding across them. Hence, this study provides a systematic analysis of cross-disciplinary energy…
Descriptors: Energy, Scientific Concepts, Biology, Chemistry