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Theogene Niyomufasha; Celestin Ntivuguruzwa; Leon Rugema Mugabo – Cogent Education, 2024
The subject of physics can sometimes seem esoteric and challenging to engineering students. It would be beneficial to create a more conducive learning environment for them by combining words, mathematical equations, graphs, and diagrams to increase their problem-solving abilities. It has been demonstrated in mechanics that employing multiple…
Descriptors: Engineering Education, Problem Solving, Mathematics, Achievement Tests
Yajun Wei; Xiaotong Chen; Yi Zhong; Guangyi Liu; Mengjun Wang; Feipeng Pi; Changhong Li – Journal of Baltic Science Education, 2024
Numerous studies compared the effectiveness of various formats of video-based teaching, yet their focus has primarily been on relatively straightforward content, such as concepts and basic procedures. Research on the effectiveness of teaching complex content through different formats of videos remains limited. This study addresses this gap by…
Descriptors: Physics, Science Instruction, Problem Solving, Video Technology
Musa Adekunle Ayanwale; Jamiu Oluwadamilare Amusa; Adekunle Ibrahim Oladejo; Funmilayo Ayedun – Interchange: A Quarterly Review of Education, 2024
The study focuses on assessing the proficiency levels of higher education students, specifically the physics achievement test (PHY 101) at the National Open University of Nigeria (NOUN). This test, like others, evaluates various aspects of knowledge and skills simultaneously. However, relying on traditional models for such tests can result in…
Descriptors: Item Response Theory, Difficulty Level, Item Analysis, Test Items
Soojeong Jeong; Justin Rague; Kaylee Litson; David F. Feldon; M. Jeannette Lawler; Kenneth Plummer – Education and Information Technologies, 2025
DBL is a novel pedagogical approach intended to improve students' conditional knowledge and problem-solving skills by exposing them to a sequence of branching learning decisions. The DBL software provided students with ample opportunities to engage in the expert decision-making processes involved in complex problem-solving and to receive…
Descriptors: Decision Making, Learning Processes, Introductory Courses, Science Education
Yiting Wang; Xiumei Feng; Yuchen Jiang; Li Xie; Min Xia; Lei Bao – Physical Review Physics Education Research, 2025
Understanding particle motion in force fields (PMFF), which encompasses the nature of forces and the relationship between force and motion, is fundamental to mastering mechanics and electromagnetism. Effectively solving PMFF-related problems requires advanced reasoning skills and the ability to apply knowledge across diverse contexts. Despite…
Descriptors: Physics, Difficulty Level, Science Instruction, Scientific Concepts
Saenna, Watcharaporn; Phusee-orn, Songsak – Higher Education Studies, 2022
The purposes of the research were to: (1) create a scientific creativity measure for high school students; (2) examine the quality of the science creativity scale of the created test; (3) establish a benchmark for scientific creativity scores for high school students; and (4) study a scientific creativity level of students in the senior high…
Descriptors: Foreign Countries, Test Construction, High School Students, Creativity
Kablan, Zeynel; Günen, Aslihan – Science Education International, 2021
Reflective thinking skills are thought to be an important factor affecting the success of problem solving both routine and non-routine science problems. This research aimed to determine the relationship between eighth-grade students' reflective thinking skills toward problem-solving and their level of solving routine and non-routine science…
Descriptors: Correlation, Reflection, Problem Solving, Evaluative Thinking
Daniel Elford; Garth A. Jones; Simon J. Lancaster – Chemistry Education Research and Practice, 2024
Peer Instruction (PI), a student-centred teaching method, engages students during class through structured, frequent questioning, facilitated by classroom response systems. The central feature of PI is the ConcepTest, a question designed to help resolve student misconceptions around the subject content. Within our coordination chemistry PI…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Computer Simulation
Marcom, Guilherme Stecca; Villar, Renato Pacheco; Kleinke, Maurício Urban – Physics Education, 2022
Research on problem-solving strategies has been conducted since the 1940s. Experts and novices use different strategies in problem solving; the main difference is in the familiarity with which they face new problems. For multiple-choice problems, an analysis of distractors can provide possible clues about the resolution processes developed by…
Descriptors: Problem Solving, High Stakes Tests, Mechanics (Physics), Physics
Avena, Jennifer S.; Knight, Jennifer K. – CBE - Life Sciences Education, 2019
Problem solving is an integral part of doing science, yet it is challenging for students in many disciplines to learn. We explored student success in solving genetics problems in several genetics content areas using sets of three consecutive questions for each content area. To promote improvement, we provided students the choice to take a…
Descriptors: Problem Solving, Genetics, Prompting, Science Tests
Burkholder, E. W.; Miles, J. K.; Layden, T. J.; Wang, K. D.; Fritz, A. V.; Wieman, C. E. – Physical Review Physics Education Research, 2020
We introduce a template to (i) scaffold the problem solving process for students in the physics 1 course, and (ii) serve as a generic rubric for measuring how expertlike students are in their problem solving. This template is based on empirical studies of the problem solving practices of expert scientists and engineers, unlike most existing…
Descriptors: Physics, Science Instruction, Teaching Methods, Introductory Courses
Lindner, Marlit A.; Schult, Johannes; Mayer, Richard E. – Journal of Educational Psychology, 2022
This classroom experiment investigates the effects of adding representational pictures to multiple-choice and constructed-response test items to understand the role of the response format for the multimedia effect in testing. Participants were 575 fifth- and sixth-graders who answered 28 science test items--seven items in each of four experimental…
Descriptors: Elementary School Students, Grade 5, Grade 6, Multimedia Materials
Mihalca, Loredana; Mengelkamp, Christoph – Journal of Educational Psychology, 2020
Both accurate monitoring and adequate control are crucial for effective self-regulation when learning from problem-solving tasks. Prior research has shown that self-regulated learning is especially harmful for low prior knowledge students, given their difficulties with accurate monitoring and control decisions. Although many studies have indicated…
Descriptors: Problem Solving, Accuracy, Decision Making, Metacognition
Shakhman, Larisa; Barak, Moshe – EURASIA Journal of Mathematics, Science and Technology Education, 2019
This study addresses the development and evaluation of the Physics Problem-Solving Taxonomy (PPST), comprising five levels: retrieval, diagnosis, strategy, conceptual, and creative thinking. The taxonomy draws on Bloom's revised taxonomy in the cognitive domain, the Types of Knowledge Taxonomy, and the Problem-Solving Taxonomy in engineering. The…
Descriptors: Foreign Countries, Physics, Problem Solving, Taxonomy
Le Hebel, Florence; Tiberghien, Andrée; Montpied, Pascale; Fontanieu, Valérie – International Journal of Science Education, 2019
This study focuses on the teachers' predictions of the students' performances -- in particular the middle-low achievers -- while solving tasks testing inquiry competencies. The tasks come from PISA science. More specifically we study science teachers' predictions for several aspects: levels of difficulty of the tasks, the potential sources of…
Descriptors: Teacher Attitudes, Teacher Expectations of Students, Prediction, Scientific Literacy
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