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Cheng-Wen He; Logan Fiorella; Paula P. Lemons – Educational Psychology Review, 2025
This study tested competing theories about the effectiveness of different instructional sequences for learners with different levels of prior knowledge. Across two classroom experiments, undergraduates learned about noncovalent interactions in biochemistry by either receiving explicit instruction before problem-solving (I-PS group) or engaging in…
Descriptors: Instructional Effectiveness, Problem Solving, Prior Learning, Learning Processes
Pi-Hun Yang; Chung-Yuan Hsu; Gwo-Jen Hwang; Gwo-Haur Hwang; Min-Ai Yang – Journal of Baltic Science Education, 2024
The complexity of gear concepts, often misunderstood by young children, highlights the need for educational frameworks beyond simple play. To examine the effects of using the prediction, observation, and explanation (POE) model in building block activities, a true experimental design was implemented. A total of 49 preschoolers were randomly…
Descriptors: Preschool Children, Preschool Education, Play, Science Education
Sittichai Wichaidit; Patcharee R. Wichaidit – Journal of Pedagogical Research, 2024
Game-based learning has gained significant attention from educational researchers because of its ability to create an engaging and enjoyable learning environment for students. However, there was a research gap regarding the design of game mechanics that specifically helped students understand abstract scientific concepts. Also, the impact of…
Descriptors: Game Based Learning, Abstract Reasoning, Scientific Concepts, Biology
Sintje Liline; Anensiana Tomhisa; Dominggus Rumahlatu; Kristin Sangur – Journal of Turkish Science Education, 2024
In this industrial revolution era, university-level education emphasises higher-order thinking skills. This research aims to analyse the effect of implementing the PjB-HOTS learning model on cognitive learning, creative thinking skills, analytical thinking skills, and metacognitive skills of the students studying osmoregulation concepts in Animal…
Descriptors: Thinking Skills, Biology, Metacognition, Science Instruction
Fabian Hennig; Kristóf Tóth; Joaquin Veith; Philipp Bitzenbauer – Physical Review Physics Education Research, 2024
Evidence from physics education research suggests that the introduction of a formalistic description of quantum phenomena can be beneficial to student learning, particularly in terms of helping students move away from naive realist views of quanta or space-time descriptions of quantum phenomena. However, the mathematical requirements for mastering…
Descriptors: Scientific Concepts, Quantum Mechanics, Physics, Equations (Mathematics)
David Menendez; Karl S. Rosengren; Martha W. Alibali – Grantee Submission, 2022
Visualizations are commonly used in educational materials, however not all visualizations are equally effective at promoting learning. Prior research has supported the idea that both perceptually rich and bland visualizations are beneficial for learning and generalization. We investigated whether the perceptual richness of a life cycle diagram…
Descriptors: Elementary School Students, Visualization, Visual Aids, Scientific Concepts
Philipp Bitzenbauer; Sergej Faletic; Marisa Michelini; Kristóf Tóth; Gesche Pospiech – Physical Review Physics Education Research, 2024
The teaching and learning of quantum physics has recently become a topic of increasing interest in physics education research. In particular, the study of two-state systems is gaining importance as a means of teaching quantum physics at various educational levels. Meanwhile, a number of approaches have been developed that are also suitable for…
Descriptors: Physics, Science Instruction, Measurement Techniques, Teaching Methods
Olanrewaju P. Olaogun; Nathaniel J. Hunsu – European Journal of Psychology of Education, 2025
Students have misconceptions about many scientific topics they encounter in the classroom--such misconceptions are especially rife in subjects with counterintuitive concepts. Several studies have copiously documented students' misconceptions in different science domains. Research shows that students' misconceptions can be resistant to change and…
Descriptors: College Students, College Faculty, Engineering Education, Misconceptions
Paary Balakumar; Heather Fice; Samuel Richer; Tamara L. Western; Jacqueline Yao – International Journal for Students as Partners, 2024
Introductory science courses can be a struggle for instructors and students not only because of the challenging nature of the material, but also due to differences in the background knowledge of students. Provision of pre-lecture resources reviewing or introducing key concepts is recommended to support diverse students. In this paper, we describe…
Descriptors: Introductory Courses, Genetics, Science Instruction, Student Attitudes
Ayyildiz, Yildizay; Tarhan, Leman; Gil, Aylin – Research in Science & Technological Education, 2023
Background: Research on chemistry education has found that students have commonly some difficulties in understanding chemical changes. These difficulties in the learning process have negatively affected students' success. For this reason, it is very important to overcome students' learning difficulties with new materials that prevent the…
Descriptors: Chemistry, Science Achievement, Science Curriculum, Course Descriptions
Richards, Allison Hart; Ercan-Dursun, Jale; Suh, Jee Kyung; Hand, Brian; Fulmer, Gavin – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2023
Abstract concepts, such as gravity, may provide the perfect opportunity to bring phenomena into the classroom. As a knowledge generation strategy, summarizing can foster that opportunity. Using phenomena and summary writing together might help student learning since it requires making connections between their ideas and words to explain the…
Descriptors: Elementary School Students, Writing (Composition), Writing Strategies, Documentation
Jihoon Kang; Jina Kim – Journal of Baltic Science Education, 2024
While existing studies have underscored the educational benefits of generating explanatory hypotheses (EHs) in response to unexpected outcomes, empirical research on the underlying mechanisms driving their effectiveness in science learning remains limited. Thus, this study aimed to empirically examine the effectiveness of generating an EH for…
Descriptors: Science Instruction, Learning Processes, Protocol Analysis, Scientific Concepts
Rusnayati, Heni; Ruswandi, Wawan; Khotimah, Tiara Husnul – Journal of Science Learning, 2023
The limited time allocation for lectures in the classroom is an obstacle to presenting student-centered learning. This is one of the factors that prospective physics teacher students experience conceptual difficulties, especially in crystal structure material. So the purpose of this study was to determine the effectiveness of the problem flipped…
Descriptors: Physics, Science Education, Flipped Classroom, Problem Based Learning
Monkovic, Julia Marie; Jones, Serena Monique; Nicolas, Madeleine; Katyal, Priya; Punia, Kamia; Noland, Damon; Montclare, Jin Kim – Journal of Biological Education, 2022
While Science, Technology, Engineering, and Mathematics (STEM) education is essential in the high school curriculum, it often carries a reputation of being formidable and overwhelming. The resulting unease students often face inhibits their ability to learn effectively; thus it can be beneficial to integrate a more familiar approach to teach them…
Descriptors: Educational Technology, Biology, Science Instruction, STEM Education
Murniati, Neni; Susilo, Herawati; Listyorini, Dwi – Pegem Journal of Education and Instruction, 2023
The learning model should be able to improve student's learning abilities. The Brain-Based Whole Learning (BBWL) model is one of the alternative learning models that can improve students' retention achievement, supported by scientific literacy and concept mastery. This study aims to determine the effect of the BBWL model on students' scientific…
Descriptors: Retention (Psychology), Brain Hemisphere Functions, Learning Processes, Models