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Showing 1 to 15 of 51 results Save | Export
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Michael J. Hogan; Adam Barton; Alison Twiner; Cynthia James; Farah Ahmed; Imogen Casebourne; Ian Steed; Pamela Hamilton; Shengpeng Shi; Yi Zhao; Owen M. Harney; Rupert Wegerif – Irish Educational Studies, 2025
Collective Intelligence (CI) is important for groups that seek to address shared problems. CI in human groups can be mediated by educational technologies. The current paper presents a framework to support design thinking in relation to CI educational technologies. Our framework is grounded in an organismic-contextualist developmental perspective…
Descriptors: Intelligence, Educational Technology, Problem Solving, Group Behavior
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Mohammad Zarour; Mohammed Akour; Mamdouh Alenezi – Open Education Studies, 2024
System-based learning (SBL) in engineering domains integrates systems thinking and engineering principles to develop a system. In software engineering, to develop software using the DevOps process, using SBL environment, students gain a comprehensive understanding of the DevOps software development process and apply theoretical concepts to…
Descriptors: Engineering Education, Systems Approach, Computer Software, Teaching Methods
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Michael Giamellaro; Benjamin Ewing; Deborah Siegel – International Journal of Science and Mathematics Education, 2025
School change is difficult and is both leveraged and hindered by interactive influences within complex systems of social practice. Whole-school STEM (science, technology, engineering, and mathematics) is a growing trend with unique aspects of change required of educators. A qualitative case study was used to analyze educator perspectives of the…
Descriptors: Affordances, Barriers, Program Implementation, Student Projects
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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
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Derek Gladwin; Naoko Ellis – Educational Philosophy and Theory, 2024
A multitude of global challenges that society grapples with, including climate change, social injustices, and economic disparities, persist largely due to the shortcomings of effectively responding to complex systems. In this article, we consider adopting systems literacy as a comprehensive educational approach to navigate in complex systems. We…
Descriptors: Systems Approach, Teaching Methods, Educational Philosophy, Active Learning
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Balda, Janis Bragan; Stanberry, Joanna; Altman, Barbara – New Directions for Student Leadership, 2023
How leadership is taught and applied must take into account the complexities of socio-ecological systems, the opportunities found in diverse viewpoints, the ability to parse conflict and power differences, and the ability to resource expert knowledge for more sustainable futures. We discuss and chart resources linked to leadership concepts…
Descriptors: Leadership Training, Training Methods, Sustainable Development, Systems Approach
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Mariah Syifa Salsabila; Yayan Sanjaya; Eliyawati Eliyawati; Witsanu Suttiwan – Journal of Science Learning, 2024
The research on the ability to think in systems in education is also minimal, which is why the ability to think in systems in Indonesia has not been optimally trained. Dealing with a system's complexity can be challenging at any age, particularly for students who must apply the system's cognitive capabilities during the learning process. Systems…
Descriptors: Junior High School Students, Water Pollution, Conservation (Environment), Foreign Countries
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Goode, Gretchen S.; MacGillivray, Laurie – Childhood Education, 2023
Mapping provides an entry point for improving teacher and student understandings of inquiry and systems thinking. The authors recognize their potential for structuring inquiry learning, developing culturally responsive and sustaining classrooms, and engaging teachers and students in deep discussions about the complexity of life. In this article,…
Descriptors: Concept Mapping, Inquiry, Systems Approach, Active Learning
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Danielle Lake; Wen Guo; Elizabeth Chen; Jacqui McLaughlin – Teaching & Learning Inquiry, 2024
This article builds upon current research to understand the value and limitations of teaching and learning design thinking (DT) in higher education. We implemented a mixed-methods study with faculty and students across 23 diverse courses in four higher education institutions in the United States. Findings showed that following structured learning…
Descriptors: Design, Thinking Skills, Higher Education, Decolonization
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Geng, Gretchen; Zhu, Yue; Disney, Leigh Patrick – Higher Education Quarterly, 2023
This paper reconceptualised the interrelated learning constructs in higher education based on the Dynamic Systems Theory (DST). The university students' learning experience before, during and post the Emergency Online Learning (EOL) was investigated to explore the dynamic changes among the learning constructs in higher education. A case study of a…
Descriptors: Foreign Countries, Higher Education, Systems Approach, Learning Experience
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Ekselsa, Ria Anita; Purwianingsih, Widi; Anggraeni, Sri; Wicaksono, Azizul Ghofar Candra – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2023
High school students need to be introduced to and trained in system thinking skills as one of the implementations of Education for Sustainable Development (ESD). This study aimed to develop high school students' systems thinking skills through ESD-laden project-based learning on environmental change material. A pre-experimental method was applied…
Descriptors: Systems Approach, Thinking Skills, Skill Development, Active Learning
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von Lautz-Cauzanet, Eilean – Prospects, 2022
This viewpoint article argues that there is an urgent need to reform the project-based EdTech approach in order to allow EdTech to contribute to the resilience of education systems in the aftermath of COVID-19. Looking at the contrast between the multiplication of EdTech pilot projects presented as a necessary step in a process that will…
Descriptors: Educational Technology, Technology Uses in Education, Student Projects, Active Learning
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Luiz Ney d'Escoffier; Dan Jiang; Aida Guerra; Andres Felipe Valderrama Pineda; Imad Abou-Hayt – European Journal of Engineering Education, 2024
Despite an emerging emphasis on the role of engineers in achieving the SDGs, there is still a lack of agreement on which competencies should be prioritised to prepare them to tackle future sustainability challenges. By formulating a theoretical framework of key sustainable competencies based on prior studies, this study investigated engineering…
Descriptors: Problem Based Learning, Q Methodology, Student Attitudes, Engineering Education
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Lavi, Rea; Bathe, Mark; Hosoi, Anette; Mitra, Amitava; Crawley, Ed – Advances in Engineering Education, 2021
In Fall 2016, the School of Engineering at the Massachusetts Institute of Technology (MIT) chartered the New Engineering Education Transformation (NEET) initiative. NEET aims to educate young engineers to build the new machines and systems that will address societal needs of the 21st century. Students enter NEET in their sophomore year and join…
Descriptors: Technical Institutes, Engineering Education, Undergraduate Students, Interdisciplinary Approach
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Yang, Yisi; Zhang, Yan; Xiong, Xujie; Zhang, Wanju; Chen, Wen; Ge, Shiping – Journal of Chemical Education, 2021
Project-based learning (PJBL) is student-centered and teamwork educational activity that prepares students for the challenge of real-world problems. This kind of instructional method is highly recommended by the Accreditation Board for Engineering and Technology (ABET).This paper describes an authentic project that focuses on the preparation of…
Descriptors: Student Projects, Active Learning, Science Instruction, Learning Activities
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