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Mary Jane Brundage; Alysa Malespina; Chandralekha Singh – Physical Review Physics Education Research, 2023
Collaborative learning with peers can lead to students learning from each other and solving physics problems correctly not only in situations in which one student knows how to solve the problems but also when none of the students can solve the problems alone. We define the rate of construction as the percentage of groups collaborating on problem…
Descriptors: Peer Relationship, Cooperative Learning, Science Education, Quantum Mechanics
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Gwo-Jen Hwang; Chun-Chun Chang; Chin-Ya Juan – Educational Technology Research and Development, 2025
Problem-posing has been regarded as a potential method to engage students in deeper thinking; however, without sufficient supports, most students could encounter difficulties in posing quality problems. In this study, a concept mapping-based online cooperative problem-posing (CM-OCPP) approach is proposed to guide students to complete…
Descriptors: Learning Processes, Learning Strategies, Concept Mapping, Electronic Learning
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Ernest Koranteng – Science Education International, 2024
This study aimed to uncover common difficulties and possible areas for improvement by focusing on the approaches and errors made by 3rd-year undergraduate chemistry students in solving organic synthesis problems. The study employed a purposive sampling technique to select 112 undergraduate chemistry major students to participate in this study.…
Descriptors: Foreign Countries, Undergraduate Students, Chemistry, Science Instruction
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Kuan-Fu Chen; Gwo-Jen Hwang; Mei-Rong Alice Chen – Educational Technology Research and Development, 2024
Many studies have incorporated concept maps into digital games to enable learners to make connections between subject concepts in the game. However, most learners do not associate spontaneously with the thematic concepts in the game but need to be facilitated by effective scaffolding mechanisms to reconceptualize the learning process and content.…
Descriptors: Concept Mapping, Game Based Learning, Learning Strategies, Grade 7
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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
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Chen, Jyun-Chen; Huang, Yun; Lin, Kuen-Yi; Chang, Yu-Shan; Lin, Hung-Chang; Lin, Chien-Yu; Hsiao, Hsien-Sheng – Journal of Computer Assisted Learning, 2020
This study combined virtual reality (VR) technology, the 6E (Engage, Explore, Explain, Engineer, Enrich, and Evaluate) model, and STEM (Science, Technology, Engineering, and Mathematics) education to develop a hands-on activity aimed at helping students to achieve "learning by doing." The participants were 162 tenth-grade students,…
Descriptors: Hands on Science, Computer Simulation, STEM Education, Experiential Learning
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Miha Slapnicar; Valerija Tompa; Saša A. Glažar; Iztok Devetak – Journal of Baltic Science Education, 2018
Learning and presenting chemical concepts at the triple level of chemical concepts provides opportunities for the development of misconceptions. The research aimed to identify potential misconceptions of chemical concepts: the states of matter, a pure substance, a mixture, an element, a compound, a physical change, and a chemical reaction at the…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Learning Processes
Iyamuremye, Aloys; Nsabayezu, Ezechiel – Online Submission, 2022
The current study investigates teachers' conception and reflection of computer programming from scratch in terms of technological and pedagogical standpoint. Mixed research approaches typically achievement tests and interviews were used to collect quantitative and qualitative data respectively. A total of twenty-one Mathematics and Science…
Descriptors: Mathematics Teachers, Science Teachers, Teacher Attitudes, Achievement Tests
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Vieira, Camilo; Magana, Alejandra J.; Roy, Anindya; Falk, Michael L. – Cognition and Instruction, 2019
Creating explanations is an important process for students, not only to make connections between novel information and background knowledge, but also to be able to communicate their understanding of any given topic. This article explores students' explanations in the context of computational science and engineering, an important interdisciplinary…
Descriptors: Student Attitudes, Comprehension, Computation, Programming
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Wiener, Gerfried J.; Schmeling, Sascha M.; Hopf, Martin – European Journal of Science and Mathematics Education, 2015
This study introduces a teaching concept based on the Standard Model of particle physics. It comprises two consecutive chapters--elementary particles and fundamental interactions. The rationale of this concept is that the fundamental principles of particle physics can run as the golden thread through the whole physics curriculum. The design…
Descriptors: Concept Teaching, Physics, Scientific Principles, Microteaching
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Nyachwaya, James M.; Warfa, Abdi-Rizak M; Roehrig, Gillian H.; Schneider, Jamie L. – Chemistry Education Research and Practice, 2014
This study sought to uncover memorized algorithms and procedures that students relied on in responding to questions based on the particulate nature of matter (PNM). We describe various memorized algorithms or processes used by students. In the study, students were asked to balance three equations of chemical reaction and then draw particulate…
Descriptors: Chemistry, College Students, Learning Processes, Mnemonics
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Apedoe, Xornam S.; Schunn, Christian D. – Instructional Science: An International Journal of the Learning Sciences, 2013
While the purposes of design and science are often different, they share some key practices and processes. Design-based science learning, which combines the processes of engineering design with scientific inquiry, is one attempt to engage students in scientific reasoning via solving practical problems. Although research suggests that engaging…
Descriptors: Success, Design, Learning, Problem Solving
Yuan, Kun; Le, Vi-Nhuan – RAND Corporation, 2014
In 2010, the William and Flora Hewlett Foundation's Education Program has established the Deeper Learning Initiative, which focuses on students' development of deeper learning skills (i.e., the mastery of core academic content, critical-thinking, problem-solving, collaboration, communication, and "learn-how-to-learn" skills). Two test…
Descriptors: Test Items, Cognitive Processes, Difficulty Level, Skill Development
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Robinson, William R.; Niaz, Mansoor – International Journal of Science Education, 1991
The performance of two groups of chemistry students, one taught using the traditional lecture method and the other interactive, in solving stoichiometry problems is described. The interactive instruction appears more effective for students who are less adept at information processing. The interaction apparently does not challenge better students,…
Descriptors: Cognitive Ability, Foreign Countries, Interaction, Learning Processes
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Bunce, Diane M.; And Others – Journal of Research in Science Teaching, 1991
Focuses on the enhancement of chemistry students' skill in problem solving utilizing problem categorization techniques. Indicates that explicit training in categorization skills can lead to higher achievement in complex problem-solving situations but that such achievement may be limited by the lack of linkages between students' conceptual…
Descriptors: Chemistry, Cognitive Development, Cognitive Style, Concept Formation
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