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Showing 1 to 15 of 22 results Save | Export
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Sofie Ye; Maja Elmgren; Magnus Jacobsson; Felix M. Ho – Chemistry Education Research and Practice, 2024
Problem solving in chemical kinetics poses substantial challenges for university students since it often involves significant use of mathematics as a tool and language, with challenging translations and transitions between chemical phenomena and mathematical representations. In this paper, we present key findings from a study investigating…
Descriptors: Problem Solving, Chemistry, Kinetics, Mathematics
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Habiddin, Habiddin; Page, Elizabeth Mary – International Journal of Science and Mathematics Education, 2021
The published study of Nurrenbern and Pickering in 1987 raises awareness among chemistry educators that students' success in answering numerical questions does not necessarily reflect their degree of understanding of the related chemical concepts. Efforts have been made to provide more opportunities for students to improve their ability in…
Descriptors: Problem Solving, Mathematics Skills, Chemistry, Kinetics
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Karch, Jessica M.; Sevian, Hannah – Chemistry Education Research and Practice, 2022
Productive problem solving, concept construction, and sense making occur through the core process of abstraction. Although the capacity for domain-general abstraction is developed at a young age, the role of abstraction in increasingly complex and disciplinary environments, such as those encountered in undergraduate STEM education, is not well…
Descriptors: Organic Chemistry, Problem Solving, Undergraduate Students, Thermodynamics
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Tong, Dazhen; Liu, Jia; Sun, Yechao; Liu, Qiaoyi; Zhang, Xiangqun; Pan, Sudong; Bao, Lei – Physical Review Physics Education Research, 2023
Work and mechanical energy is a fundamental topic in introductory physics. Studies in existing literature have shown that students have difficulties in understanding work and mechanical energy, particularly the topic of work-energy theorem. To study students' knowledge integration in learning work and mechanical energy, a conceptual framework…
Descriptors: Student Evaluation, Physics, Science Instruction, Scientific Concepts
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Rodriguez, Jon-Marc G.; Stricker, Avery R.; Becker, Nicole M. – Journal of Chemical Education, 2020
Chemical kinetics is an important topic that is reinforced across the undergraduate chemistry curriculum, but previous research indicates students tend to have difficulty developing a sophisticated understanding of reaction rate. In this qualitative case study, we characterized how two students conceptualized reaction rate in the context of…
Descriptors: Science Instruction, Chemistry, Kinetics, Undergraduate Study
Obaya Valdivia, Adolfo E.; Osornio, Carlos Montaño; Vargas-Rodríguez, Yolanda Marina – Online Submission, 2021
In the resolution of problems in chemical kinetics and catalysis the mathematical models relate the independent variable that is usually time, with the dependent variable which is normally the concentration of a reactant. They conform to linear models, whose parameters such as the ordering to origin and the slope are kinetic parameters, applying…
Descriptors: Problem Based Learning, Problem Solving, Chemistry, Kinetics
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Sutiani, Ani; Situmorang, Manihar; Silalahi, Albinus – International Journal of Instruction, 2021
The development of good learning resources on inquiry learning model with science literacy as a strategy to facilitate active learning has become a trend in education. Critical thinking ability is needed as a strategy to build students competencies in problem solving and discovery as required in science learning. This study aims to develop a set…
Descriptors: Active Learning, Inquiry, Scientific Literacy, Science Process Skills
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Rodriguez, Jon-Marc G.; Bain, Kinsey; Hux, Nicholas P.; Towns, Marcy H. – Chemistry Education Research and Practice, 2019
Problem solving is a critical feature of highly quantitative physical science topics, such as chemical kinetics. In order to solve a problem, students must cue into relevant features, ignore irrelevant features, and choose among potential problem-solving approaches. However, what is considered appropriate or productive for problem solving is…
Descriptors: Science Instruction, Problem Solving, Chemistry, Kinetics
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Bain, Kinsey; Rodriguez, Jon-Marc G.; Towns, Marcy H. – Journal of Chemical Education, 2019
The themes discussed in this study relate to how students reason about the information encoded in rate constants, which is important for developing a deep understanding of chemical kinetics at the molecular level. This study is part of a larger project centered more generally on students' understanding and use of mathematics in chemical kinetics.…
Descriptors: Science Instruction, Teaching Methods, Molecular Structure, Scientific Concepts
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Popova, Maia; Bretz, Stacey Lowery – Journal of Chemical Education, 2018
The purpose of this study was to analyze organic chemistry students' annotations of reaction coordinate diagrams to better understand how they sought connections between reactions and reaction coordinate diagrams. Thirty-six students enrolled in Organic Chemistry II participated in semistructured, think-aloud interviews that asked students to…
Descriptors: Organic Chemistry, Undergraduate Students, Misconceptions, Problem Solving
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Ferrés Gurt, Concepció; Marbà Tallada, Anna – Journal of Biological Education, 2018
This case study describes a classroom-based questionnaire that was carried out with a group of 36 high school students (17-18 years old) in Catalonia. The aim was to examine the usefulness of questionnaires focused on scientific inquiry, both to evaluate students' inquiry abilities and for their potential as tools to improve the understanding of…
Descriptors: Student Experience, Inquiry, Biochemistry, Kinetics
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Bain, Kinsey; Rodriguez, Jon-Marc G.; Moon, Alena; Towns, Marcy H. – Chemistry Education Research and Practice, 2018
Chemical kinetics is a highly quantitative content area that involves the use of multiple mathematical representations to model processes and is a context that is under-investigated in the literature. This qualitative study explored undergraduate student integration of chemistry and mathematics during problem solving in the context of chemical…
Descriptors: Chemistry, Science Instruction, Qualitative Research, Undergraduate Students
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de la Pen~a, Lisandro Herna´ndez – Journal of Chemical Education, 2016
The solution of simple kinetic equations is analyzed without referencing any topic from differential equations or integral calculus. Guided by the physical meaning of the rate equation, a systematic procedure is used to generate an approximate solution that converges uniformly to the exact solution in the case of zero, first, and second order…
Descriptors: Kinetics, Chemistry, Problem Solving, Equations (Mathematics)
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Zhu, Guangtian; Wang, Jue – Physical Review Physics Education Research, 2017
Students' categorization of physics problems reflects their expertise in problem solving. We conducted a pseudolongitudinal study to investigate the development of students' categorization ability. Over 250 Chinese students from grade 10 to grade 12 were asked to categorize 20 problems of kinematics and mechanics into suitable categories based on…
Descriptors: Foreign Countries, High School Students, Classification, Expertise
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DiLisi, Gregory A.; Rarick, Richard A. – Physics Teacher, 2015
Halfway through the 2015 AFC Championship game between the New England Patriots and Indianapolis Colts, game officials discovered that the Patriots were using underinflated footballs on their offensive snaps. A controversy ensued because the Patriots had actually supplied these balls to the game's referee just hours before kickoff. Athletes and…
Descriptors: Physics, Introductory Courses, Secondary School Science, Undergraduate Students
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