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Hyesun You; Minju Hong – Research in Science Education, 2024
Natural phenomena and scientific issues are intrinsically interdisciplinary. Students need to study a variety of academic disciplines in the natural sciences to explain a phenomenon or its related problems. Our goal in the current study was to examine the epistemological foundation of students' interdisciplinary understanding of carbon cycling…
Descriptors: High School Students, College Students, Science Education, Knowledge Level
Tytler, Russell; Prain, Vaughan; Hannigan, Shelley – Research in Science Education, 2022
While the multimodal nature of the languages of science is now broadly recognised, the role of affect and aesthetics in these languages, and the potential for this aesthetic focus to add to these languages, has tended to be ignored. Research into these languages has mainly focused on a codification of their functions, an approach to which…
Descriptors: Science Education, Aesthetics, Scientific Concepts, Concept Formation
Tasso E. F. Diógenes; Gabriela A. de B. Vieira; Joao R. A. Leao; Glaydson F. B. de Oliveira – Journal of Education and Learning, 2024
The professional high school by the federal schools in Brazil requires an integrated curriculum itinerary. There is a lack of information about how to achieve that in a practical conception of integration. This article aimed to investigate the interdisciplinary approach of the content "transformation of energy" involving the relationship…
Descriptors: Interdisciplinary Approach, High School Students, Intervention, Teaching Methods
Peretz, Roee; Tal, Marina; Akiri, Effrat; Dori, Dov; Dori, Yehudit Judy – Instructional Science: An International Journal of the Learning Sciences, 2023
As science and technology create an ecosystem that is becoming increasingly more knowledge-intensive, complex, and interconnected, the next generation science standards include systems thinking and systems modeling among 21st skills that should be fostered. We examined the effect of an online cross-disciplinary learning process on the development…
Descriptors: Engineering Education, Science Education, Assignments, Interdisciplinary Approach
Martin Bílek; Karel Kolár; Monika Pelikánová – International Baltic Symposium on Science and Technology Education, 2025
This study explores the integration of STEM principles into chemistry education through the redesign of the topic Chemical Reactions for initial teacher training. The aim was to develop and evaluate an innovative teaching module that fosters key competences--knowledge, skills, and attitudes--via student-centred, context-based, and…
Descriptors: STEM Education, Chemistry, Scientific Principles, Knowledge Level
Mambrey, Sophia; Timm, Justin; Landskron, Jana Julia; Schmiemann, Philipp – Journal of Research in Science Teaching, 2020
Present and future social and ecological challenges are complex both to understand and to attempt to solve. To comprehend the complex systems underlying these issues, students need systems thinking skills. However, in science education, a uniform delineation of systems thinking across contexts has yet to be established. While there seems to be…
Descriptors: Science Education, Grade 5, Grade 6, Systems Approach
Lan, Yu; Chi, Shaohui; Wang, Zuhao – Journal of Baltic Science Education, 2021
Science educators have highlighted the need to develop students to integrate knowledge across science disciplines to address real-world issues. However, there has been little research about the development of interdisciplinary assessment instruments. In this research, the instrument that measures the level of upper-secondary school students'…
Descriptors: High School Students, Grade 11, Adolescents, Interdisciplinary Approach
Mandrikas, Achilleas; Michailidi, Emily; Stavrou, Dimitris – Research in Science & Technological Education, 2020
Background: Nanoscience and Nanotechnology (NST) have been recognized as an emerging technology of the 21st century. The interdisciplinary nature and remarkable applications of NST have prompted science education researchers to recognize its potential in science teaching. NST have also been acknowledged as a vital field in technology in order to…
Descriptors: Teaching Methods, Elementary School Students, Technology Education, Interdisciplinary Approach
McGregor, Debra, Ed.; Anderson, Dayle, Ed. – Contributions from Science Education Research, 2023
This book presents a wide range of international perspectives that explore the different ways the diverse forms of drama supports learning in science. It illustrates how learning science by adopting and adapting theatrical techniques can offer more inclusive ways for students to relate to scientific ideas and concepts. The theatrical processes by…
Descriptors: Science Education, Drama, Theater Arts, Teaching Methods
Portnoy, Lindsay; Lemberger, Talia – Information and Learning Sciences, 2022
Purpose: Approaches to learning have the ability to influence knowledge acquisition, comprehension, retention and even motivation to learn. Previous work indicates that despite age, experience, or prior knowledge, students have a tendency to approach learning differently as a function of the presented content. The purpose of this study is to…
Descriptors: Cognitive Style, Learning Processes, Science Education, History
Guasch, Blanca; González, Marta; Cortiñas, Sergi – Journal of Technology and Science Education, 2020
Nanoscience and nanotechnology are two key areas in the development of new technologies. However, scientific advances in these fields are still far removed from the contents taught in schools. But what if basic concepts within these areas were introduced in secondary schools? We believe science is an essential facet of culture and the most recent…
Descriptors: Secondary School Students, Early Adolescents, Design, Knowledge Level
You, Hye Sun; Marshall, Jill A.; Delgado, Cesar – Journal of Research in Science Teaching, 2018
Global carbon cycling describes the movement of carbon through atmosphere, biosphere, geosphere, and hydrosphere; it lies at the heart of climate change and sustainability. To understand the global carbon cycle, students will require "interdisciplinary knowledge." While standards documents in science education have long promoted…
Descriptors: Knowledge Level, Scientific Concepts, Climate, Sustainability
Prestholdt, Tara; Fletcher, Vail – Bioscene: Journal of College Biology Teaching, 2018
Experiential learning provides students the time and space to participate in the process of learning by engaging in real, modern situations. Via hands on activities and reflection, students are able to assimilate new experiences with previous ones, and it has been repeatedly shown to improve student learning. We assessed how ten days of…
Descriptors: Interdisciplinary Approach, Study Abroad, Experiential Learning, Nonmajors
Tate, Kathleen; Doyle, Colin; Messina, Daniela; Warnecke, Brian; DePriter, Tiffany; Brillhart, Daniel – Science and Children, 2018
The National Science Teachers Association (NSTA) (2014) sets forth that children learning science and engineering practices in the early years lays "the foundation for a progression of science learning in K-12 settings and throughout their entire lives." So, it is important to build upon children's natural curiosities and expose them to…
Descriptors: Science Instruction, Metallurgy, Grade 5, Academically Gifted
Eggert, Sabina; Nitsch, Anne; Boone, William J.; Nückles, Matthias; Bögeholz, Susanne – Research in Science Education, 2017
Climate change is one of the most challenging problems facing today's global society (e.g., IPCC 2013). While climate change is a widely covered topic in the media, and abundant information is made available through the internet, the causes and consequences of climate change in its full complexity are difficult for individuals, especially…
Descriptors: Climate, Change, Environmental Education, Sustainable Development