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Halil Tu¨may – Journal of Chemical Education, 2023
Chemistry is a systems science that deals with complex-dynamic systems and systems thinking is an essential aspect of chemical practices. Thus, a systems thinking approach is needed in chemistry education for meaningful learning of the subject matter. Despite this necessity, systems thinking has not received sufficient attention in chemistry…
Descriptors: Systems Approach, Chemistry, Science Instruction, Thinking Skills
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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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Jeong, Soojeong; Elliott, Jennifer B.; Feng, Zhang; Feldon, David F. – Journal of Science Education and Technology, 2022
The properties and functions of complex systems apply across a variety of domains of science and are at the heart of the solutions to many global crises facing the world today. As such, understanding of complex systems has been increasingly recognized as a core goal of science education. Learning about complexity-related concepts and phenomena is…
Descriptors: Ecology, Systems Approach, Science Education, Scientific Concepts
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Michelle Pauley Murphy; Woei Hung – Advances in Physiology Education, 2023
A well-developed mental model is crucial for effectively studying physiology core concepts. However, mental models can be difficult for students to represent and for instructors to evaluate and correct. Systems modeling as a visualization cognitive tool may facilitate mental model development. On the other hand, evidence of mental model…
Descriptors: Schemata (Cognition), Scientific Concepts, Physiology, Allied Health Occupations Education
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Jescovitch, Lauren N.; Scott, Emily E.; Cerchiara, Jack A.; Doherty, Jennifer H.; Wenderoth, Mary Pat; Merrill, John E.; Urban-Lurain, Mark; Haudek, Kevin C. – Practical Assessment, Research & Evaluation, 2019
Constructed responses can be used to assess the complexity of student thinking and can be evaluated using rubrics. The two most typical rubric types used are holistic and analytic. Holistic rubrics may be difficult to use with expert-level reasoning that has additive or overlapping language. In an attempt to unpack complexity in holistic rubrics…
Descriptors: Scoring Rubrics, Measurement, Logical Thinking, Scientific Concepts
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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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Nelson, Connie; Stroink, Mirella – Michigan Journal of Community Service Learning, 2020
Community-campus engagement (CCE) offers transformative opportunities for collaborative knowledge creation. Over the last few decades, thoughtful energy has gone into identifying the parts of a CCE and then developing tools to study these parts, with discrete focus on community groups, students, and faculty. Bringing a complexity science approach…
Descriptors: School Community Relationship, Models, College Students, College Faculty
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Lavi, Rea; Dori, Yehudit Judy – International Journal of Science Education, 2019
Systems thinking is an important skill in science and engineering education. Our study objectives were (1) to create the basis for a systems thinking language common to both science education and engineering education, and (2) to apply this language to assess science and engineering teachers' systems thinking. We administered two assignments to…
Descriptors: Engineering Education, Systems Approach, Science Education, Language Usage
Wampler, Wendi N. – ProQuest LLC, 2013
Introductory undergraduate physics courses aim to help students develop the skills and strategies necessary to solve complex, real world problems, but many students not only leave these courses with serious gaps in their conceptual understanding, but also maintain a novice-like approach to solving problems. "Matter and Interactions"…
Descriptors: Student Attitudes, Problem Solving, Physics, Epistemology
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Klymkowsky, M. W. – CBE - Life Sciences Education, 2010
Not until the core concepts of biology are clearly defined and become the focus of instruction and assessment can we expect meaningful improvements in biological literacy and the removal of unnecessary barriers to student engagement.
Descriptors: Biological Sciences, Barriers, Fundamental Concepts, Scientific Concepts
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Axley, Stephen R.; McMahon, Timothy R. – Journal of Management Education, 2006
This article critiques the mechanistic grounding of traditional management education and proposes complexity science as a fitting explanatory model for an age of complexity, contributing timely and important educational content and instructional processes to management education. It highlights some of those contributions and reviews instructional…
Descriptors: Administrator Education, Teaching Methods, Business Administration Education, Educational Philosophy