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Michelle Reidel; Ariel Cornett; Erin Piedmont; Kania Greer; Betsy Barrow; Alex Reyes – Social Studies and the Young Learner, 2025
By some estimates, over 1.2 billion tons of soil was blown across the Great Plains during the height of the Dust Bowl. The so-called "black blizzards" these massive dust storms caused suffocated cattle, sickened children, and destroyed thousands of family farms. Formerly prosperous farmers, unsure why they had such bad luck, wondered if…
Descriptors: Systems Approach, United States History, History Instruction, Integrated Activities
Allison M. Baas – ProQuest LLC, 2024
Science reforms in the United States' education systems have been ongoing for over the last 50 years. These reforms are continually revised in response to the demand to increase employment in STEM careers. The Next Generation Science Standards (NGSS) released in 2013 are the most recent standards-based science reform effort created using years of…
Descriptors: Systems Approach, Science Education, Academic Standards, Educational Change
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Emil Eidin; Tom Bielik; Israel Touitou; Jonathan Bowers; Cynthia McIntyre; Dan Damelin; Joseph Krajcik – Journal of Science Education and Technology, 2024
Understanding the world around us is a growing necessity for the whole public, as citizens are required to make informed decisions in their everyday lives about complex issues. Systems thinking (ST) is a promising approach for developing solutions to various problems that society faces and has been acknowledged as a crosscutting concept that…
Descriptors: Chemistry, Science Instruction, High School Students, Educational Technology
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Lulu Desia Mutiani Rahmayuni; Siti Sriyatib; Diah Kusumawaty – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
Business Model Canvas (BMC) is a business model that must be mastered by students in the Bioentrepreneurship course as an initial provision for entering the entrepreneurial world, while in compiling Business Model Canvas (BMC) systematic thinking skills are needed. This study aims to provide an assessment instrument to measure students' system…
Descriptors: Systems Approach, Thinking Skills, Models, Business Administration
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Ravi, Manoj; Puente-Urbina, Allen; van Bokhoven, Jeroen A. – Journal of Chemical Education, 2021
While several engineering and science disciplines, including biology and environmental science, have greatly benefited from adopting a systems thinking approach, its extension to chemistry education is a much more recent advancement. The initial body of literature in this direction has largely surveyed the feasibility for systems thinking in…
Descriptors: Systems Approach, Chemistry, Advanced Courses, Science Instruction
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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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Niklas Schneeweiß; Leona Mölgen; Harald Gropengießer – Journal of Biological Education, 2024
Explanation of natural phenomena at one level of biological organisation almost always involves causes that are found at other levels. Although scientists thinking across levels find it easy to explain physiological phenomena, students often perceive this as a challenge. We developed a new graphic organiser called Zoom Map, which is a mode for…
Descriptors: Foreign Countries, High School Students, Science Instruction, Biology
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Jen Eklund; Kelsie Fowler; Caroline Kiehle; Lori Henrickson; Deb L. Morrison – Connected Science Learning, 2024
A system of climate learning includes students, educators, administrators, educational leaders, community members, and others across different contexts and from diverse lived experiences. As people begin to foster climate learning within these systems, the work of drawing people together in this work can seem daunting. However, the lessons from…
Descriptors: Climate, Science Instruction, Environmental Education, Communities of Practice
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McGowan, Veronica Cassone; Bell, Philip – Educational and Developmental Psychologist, 2022
Objective: Systems thinking can be counterintuitive to everyday ways of knowing. This can surface doubt around predicted patterns of emergence in complex systems data, especially as it relates to the current climate crisis and related justice-oriented solutions. Method: Our study describes a four-year design-based research project in which we…
Descriptors: Systems Approach, Climate, Crisis Management, High School Students
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Helen Harper; Bronwyn Parkin – Educational Review, 2024
This paper draws on Bernstein's educational sociology to illustrate how a language-focused "subversive" pedagogic approach (Martin, 2011) was systematically realised through classroom interactions. While educational inequalities are often addressed at the level of policy and budgets, this paper provides a perspective on inequality and…
Descriptors: Foreign Countries, Elementary School Teachers, Disadvantaged, Power Structure
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Kiesewetter, Andrea; Schmiemann, Philipp – CBE - Life Sciences Education, 2022
Understanding homeostasis is a goal of biology education curricula, as homeostasis is a core feature of living systems. Identifying and understanding the underlying molecular feedback mechanisms appear to be challenging for students. Understanding the properties and mechanisms of such complex homeostatic systems requires feedback loop reasoning,…
Descriptors: Biology, Feedback (Response), Thinking Skills, High School Students
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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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York, Sarah; Orgill, MaryKay – Journal of Chemical Education, 2020
Recently, there have been calls to integrate systems thinking approaches into chemistry education in order to strengthen students' conceptual understanding, build their problem-solving capabilities, and prepare them to make informed, ethical decisions about globally relevant issues, such as sustainability. Unfortunately, implementation of systems…
Descriptors: Systems Approach, Teaching Methods, Chemistry, Science Instruction
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Inés Martinez Pena; Blanca Puig; Araitz Uskola – Journal of Baltic Science Education, 2024
Systems thinking (ST) is an essential skill for understanding complex issues, making predictions and informed decisions. This research explores how students applied ST in complex health contexts using the 'One Health' (OH) approach. OH highlights the interdependence relationship between animal, human and ecosystemic health (including plants).…
Descriptors: Systems Approach, Secondary School Students, Capacity Building, COVID-19
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Alisha R. Szozda; Kathryn Bruyere; Hayley Lee; Peter G. Mahaffy; Alison B. Flynn – Journal of Chemical Education, 2022
Systems thinking in chemistry education (STICE) has been proposed as an approach that could better equip students with abilities to connect their chemistry knowledge with other disciplines and with the skills needed to tackle complex global issues. However, educational change in chemistry is a complex effort that involves many interconnected…
Descriptors: Teacher Attitudes, Chemistry, Science Instruction, Teaching Methods
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