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Katrin Schuessler; Vanessa Fischer; Maik Walpuski – Instructional Science: An International Journal of the Learning Sciences, 2025
Cognitive load studies are mostly centered on information on perceived cognitive load. Single-item subjective rating scales are the dominant measurement practice to investigate overall cognitive load. Usually, either invested mental effort or perceived task difficulty is used as an overall cognitive load measure. However, the extent to which the…
Descriptors: Cognitive Processes, Difficulty Level, Rating Scales, Construct Validity
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Jianqiang Ye; Junhua Gao; Tingting Lin; Kun He; Dimei Chen – Journal of Baltic Science Education, 2025
This study explored the impact of oxidation-reduction reaction problem difficulty on university students' cognitive load using event-related potentials (ERPs). Forty-eight balanced low and high difficulty problems were designed. Fifteen undergraduate students majoring in chemistry (8 females and 7 males) participated in the study. Results…
Descriptors: Science Instruction, Undergraduate Students, Chemistry, Difficulty Level
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Oier Pedrera; Oihana Barrutia; José Ramón Díez – Research in Science Education, 2025
Identifying the mental models held by students has been widely emphasized as being a pivotal aspect of effective science education. In fact, it allows us to understand students' conceptions, detect teaching-learning difficulties and tailor instruction accordingly. Hence, in this study, the plant nutrition mental models held by upper secondary…
Descriptors: Secondary School Students, Cognitive Processes, Schemata (Cognition), Plants (Botany)
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Manal Abdul Karim Al Momani; Mohareb Alsmadi; Muntaha Farah Sulieman Samardali; Amjad Mohamad Ahmad Al Abdalazez – Research in Science & Technological Education, 2024
Background: This research explores thinking and teaching strategy in sciences teaching by analyzing 2027 research articles from the Web of Science. It is anticipated that groups of keywords, writers, and universities will highlight patterns, offer advice to scholars and teachers, and add to the body of literature already available on the topic.…
Descriptors: Bibliometrics, Science Instruction, Databases, Teaching Methods
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Yushan Xiong; Jialan Liu; Jiejie Lai; Tongyi Zheng; Xuhuai Qu; Qiuye Li; Yi Zhong; Lei Bao; Shaona Zhou – Physical Review Physics Education Research, 2025
This study investigates the cognitive processes of novice students in science learning, with a specific focus on how inhibitory control is employed to overcome a common student misconception about the buoyant force in liquid, which leads to the belief that "the greater the depth an object is in a liquid, the greater the buoyant force it…
Descriptors: Scientific Concepts, Misconceptions, Intervention, Physics
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Fu-Yun Yu; Ju-Ko Wei – Technology, Pedagogy and Education, 2024
While enabling students to refer to and build on peer-produced work (termed 'citing' herein) during content creation appears pedagogically promising, its associated learning effects remain under-studied. This research aimed at examining the effects of online citing of peer-generated assessment items during student test-construction on promoting…
Descriptors: Foreign Countries, Grade 5, Science Instruction, Peer Teaching
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Mariano Andrés Castellaro; Nadia Soledad Peralta; Juan Manuel Curcio – European Journal of Psychology of Education, 2024
A structural/cross-sectional micro-analytic perspective prevails in the Socio-constructivist research of peer knowledge construction. This paper proposes an alternative micro-sequential approach that focuses on the transitions between events during the activity. From this micro-sequential perspective, the study aimed to (a) explore the…
Descriptors: Cooperation, Competence, Grade 7, Grade 6
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Jingjing Ma; Qingtang Liu; Shufan Yu; Xiaojuan Li; Jindian Liu – Educational Technology Research and Development, 2025
In science education, the abstraction and complexity of scientific concepts are usually stumbling blocks that prevent students from learning science. Recently, augmented reality (AR) has offered transformative potential to support scientific concept learning by visualizing scientific phenomena and enhancing students' experiences. However, the lack…
Descriptors: Scientific Concepts, Concept Mapping, Cognitive Structures, Cognitive Processes
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Joy Ada B. Fernandez; Ma. Elizabeth D. C. Leoveras – Science Education International, 2025
This study investigates the correlation between learning styles (Visual, Auditory, Reading/Writing, and Kinesthetic [VARK]) and information processing patterns (Parallel, Sequential, Top-down, and Bottom-up) among Senior High School Science, Technology, Engineering, and Mathematics (STEM) learners, specifically in the context of Biology. The…
Descriptors: Cognitive Style, Biology, Science Instruction, High School Students
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Karaca, Melek; Bektas, Oktay; Celikkiran, Aysegul T. – Psychology in the Schools, 2023
This research aims to examine the self-regulation of students with different achievement levels toward science learning based on Zimmerman's model including three phases: forethought, performance, and self-reflection. The research was conducted based on the case study from the qualitative research method. The study group consisted of 12 students…
Descriptors: Foreign Countries, Middle School Students, Science Instruction, Self Control
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Gur Arie Livni Alcasid; Michal Haskel-Ittah – Research in Science Education, 2025
Mechanistic explanations, aiming to disclose details of entities and their activities, employ the act of unpacking which, inherently and paradoxically, produces explanatory gaps--pieces of undisclosed, undetailed mechanistic information. These gaps, termed explanatory black boxes, are often perceived as counterproductive to the teaching of…
Descriptors: Science Instruction, Science Teachers, Biology, Teacher Attitudes
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Vegard Gjerde; Sivert Hagane – Physical Review Physics Education Research, 2024
Peer Instruction gives practice in the abstract language of physics, addresses common misconceptions among students, and is more effective than traditional lecturing. However, it is not clear what makes Peer Instruction effective nor how we might improve the method. An emerging perspective is that what makes Peer Instruction effective is how it…
Descriptors: Science Instruction, Peer Teaching, Scientific Concepts, Models
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Wouter Spaan; Ron Oostdam; Jaap Schuitema; Monique Pijls – Research in Science & Technological Education, 2024
Background: Practical work in school science has been ineffective due to students not connecting hands-on to minds-on aspects. With the designation Thinking-Back-and-Forth (TBF)we present a framework with a taxonomy of TBF activities. Purpose: Aim was to gain insight how teachers stimulate and support their students in TBF. Detailed information…
Descriptors: Foreign Countries, Grade 8, Grade 9, Secondary School Teachers
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Willem Keppens; Mieke De Cock; Hans Van Winckel; Wim Van Dooren; Jan Sermeus – Physical Review Physics Education Research, 2025
Estimating astronomical scales requires multiple complex mental processes, such as spatial thinking and interpreting large numbers. As such, it is a nontrivial question how these estimates can be most efficiently assessed. There is reason to believe that results from previous studies probing astronomical scale estimates are possibly susceptible to…
Descriptors: Astronomy, Science Instruction, Physics, Comparative Analysis
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Yueh-Nu Hung – Reading Teacher, 2025
In bilingual elementary classrooms where English is taught as a foreign language, science lessons often prioritize spoken interaction, while reading and writing receive less emphasis. This article explores how Cognitive Discourse Functions (CDFs)--such as defining, explaining, hypothesizing, and evaluating--can support disciplinary and…
Descriptors: English (Second Language), Bilingual Education, Science Instruction, Elementary School Science
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