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Showing 1 to 15 of 65 results Save | Export
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Ina Zaimi; Field M. Watts; David Kranz; Nicole Graulich; Ginger V. Shultz – Chemistry Education Research and Practice, 2025
Solving organic chemistry reactions requires reasoning with multiple concepts and data (i.e., multivariate reasoning). However, studies have reported that organic chemistry students typically demonstrate univariate reasoning. Case comparisons, where students compare two or more tasks, have been reported to support students' multivariate reasoning.…
Descriptors: Undergraduate Students, College Science, Organic Chemistry, Science Process Skills
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Kevin H. Hunter; Lauren A. Groenenboom; Ayesha Farheen; Nicole M. Becker – Chemistry Education Research and Practice, 2025
The current study aims to contribute to the literature on how organic chemistry students weigh various factors when predicting products of substitution and elimination reactions. This study focuses specifically on these mechanism types, as they are often the first instances where students must consider the "how" and the "why"…
Descriptors: Student Experience, Scientific Concepts, Science Education, Student Attitudes
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Lauren Baade; Effie Kartsonaki; Hassan Khosravi; Gwendolyn A. Lawrie – Chemistry Education Research and Practice, 2025
Effective learning in chemistry education requires students to understand visual representations across multiple conceptual levels. Essential to this process are visuospatial skills which enable students to interpret and manipulate these representations effectively. These abilities allow students to construct mental models that support problem…
Descriptors: Visualization, Thinking Skills, Spatial Ability, Problem Solving
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Alisha R. Szozda; Zahra Lalani; Samira Behroozi; Peter G. Mahaffy; Alison B. Flynn – Journal of Chemical Education, 2024
Researchers and educators have been exploring systems thinking (ST) in chemistry education to better equip citizens for 21st century challenges; however, little is known about students' perspectives and experiences. In this study, we investigated students' perspectives of ST and their experiences with ST activities. We designed and implemented a…
Descriptors: Systems Approach, Thinking Skills, Chemistry, Science Education
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Anderson, Margene; Hills-Meyer, Patrick R.; Stamm, Julie M.; Brown, Kirsten – Anatomical Sciences Education, 2022
Clinically integrated curricula in health science education has been shown to promote the development of problem-solving schema and positively impact knowledge acquisition. Despite its' purported benefits, this type of curricula can impose a high cognitive load, which may negatively impact novice learners' knowledge acquisition and problem-solving…
Descriptors: Thinking Skills, Anatomy, Undergraduate Students, Knowledge Level
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Özgür, Sinem Dinçol – International Online Journal of Education and Teaching, 2021
This paper aims to explore (1) students' chemistry self-efficacy beliefs and metacognitive skills during problem solving in chemistry, (2) a potential significant difference of chemistry self-efficacy beliefs and levels of metacognitive skills in accordance with subject fields and, (3) the level of chemistry self-efficacy beliefs as a predictor of…
Descriptors: Chemistry, Self Efficacy, Predictor Variables, Metacognition
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Gopinath, B.; Santhi, R. – Higher Education for the Future, 2021
In this article, Fishbone-based advanced computational thinking (FACT) pedagogy is proposed by fusing fishbone pedagogy and computational thinking pedagogy for enhancing teaching-learning process while teaching engineering and science courses, for engineering and science students respectively. The proposed FACT pedagogy has been implemented using…
Descriptors: Problem Solving, Thinking Skills, Computation, Visual Learning
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Chen, Ya-Chun; Wilson, Kimberley; Lin, Huann-shyang – Chemistry Education Research and Practice, 2019
Systems thinking has been an educational priority for more than a decade, yet its related assessment and teaching strategies have been understudied in the chemistry education research community. Through the lens of systems thinking, this study explores how undergraduate students connect and translate their conceptual representations when they are…
Descriptors: College Science, Chemistry, Problem Solving, Systems Approach
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Mkhatshwa, Thembinkosi Peter; Doerr, Helen M. – Mathematical Thinking and Learning: An International Journal, 2018
Contributing to a growing body of research on undergraduate students' quantitative reasoning, the study reported in this article used task-based interviews to investigate business calculus students' quantitative reasoning when solving two optimization tasks situated in the context of revenue and profit maximization. Analysis of verbal responses…
Descriptors: Undergraduate Students, Calculus, Mathematics Instruction, Mathematical Logic
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Syahrin, Alfi; Dawud, Dawud; Suwignyo, Heri; Priyatni, Endah Tri – Eurasian Journal of Educational Research, 2019
Purpose: This study aimed to explain creative thinking patterns, including imaginative thinking, divergent thinking, and lateral thinking of students in scientific work. The scientific work studied was in the form of the Student Creativity Program at Malang State University, Indonesia. Research Methods: This study used a qualitative approach with…
Descriptors: Foreign Countries, Creative Thinking, College Students, College Science
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Upahi, Johnson E.; Ramnarain, Umesh – Journal of Baltic Science Education, 2020
Open-ended problem-solving skills have been identified as employable skills, which undergraduate students will need to have in order to cope with real-life problems in their workplaces after graduation. However, the development and assessment of these skills have been inconsistent across courses offered in universities. This research examined…
Descriptors: Correlation, Short Term Memory, Difficulty Level, Problem Solving
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Mota, Ana Rita; Körhasan, Nilüfer Didis; Miller, Kelly; Mazur, Eric – Physical Review Physics Education Research, 2019
A considerable body of research shows that individuals who demonstrate a wide variety of metacognitive skills perform better on scientific problem solving. We developed a way of implementing homework in an undergraduate physics course to promote metacognitive skills. This novel homework design includes both an individual and a team phase and was…
Descriptors: Homework, Metacognition, Undergraduate Students, Physics
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Park, Ellane J. – Journal of Chemical Education, 2019
With the rapidly growing field of nanotechnology, there has been a pressing need to teach non-science undergraduate majors how to critically interpret science in popular media and news sources. The present work introduces students to chemistry concepts through the lens of relatable nanotechnology applications, including electronics, medicine,…
Descriptors: Science Instruction, Chemistry, Critical Thinking, Thinking Skills
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Dai, Rui; Fritchman, Joseph C.; Liu, Qiaoyi; Xiao, Yang; Yu, Haibo; Bao, Lei – Physical Review Physics Education Research, 2019
Light interference is an essential topic for understanding the wavelike nature of light, however, there are limited studies on modeling and assessing students' misconceptions and learning difficulties in this area. Based on the knowledge integration modeling approach, a conceptual framework for light interference is developed and used to model…
Descriptors: Light, Comprehension, Scientific Concepts, Physics
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Sujarittham, Thanida; Tanamatayarat, Jintawat; Kittiravechote, Aungtinee – Turkish Online Journal of Educational Technology - TOJET, 2019
The goals of this advanced physics laboratory course emphasized not only to improve students' physics knowledge but also spectrum scientific abilities in particular for preparing their future-ready competencies. One of those scientific abilities was initiated to study that was "the ability to design experiment". It was the fundamental…
Descriptors: Physics, Science Instruction, Science Laboratories, Thinking Skills
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