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Anna Pshenichny-Mamo; Dina Tsybulsky – Science & Education, 2025
The development of understanding of nature of science (NOS) can be seen as one of the educational goals of natural history museums. In these museums, guides take on the role of educators responsible for shaping the content and style of guided tours. They play a crucial role in making scientific knowledge and narratives accessible to visitors,…
Descriptors: Museums, History Instruction, Science Education, Information Scientists
Jerrid Kruse; Sarah Voss; Jaclyn Easter; Isaiah Kent-Schneider; Lucas Menke; David Owens; Kean Roberts; Lindsay Woodward – Journal of Research in Science Teaching, 2025
The goals of science education must be sufficiently broad to support learners navigating changing scientific, social, and media landscapes. This position paper builds upon existing scholarship to articulate a set of constructs useful for navigating the modern information landscape including constructs with a long history in science education…
Descriptors: Science Education, Students, Adoption (Ideas), Teacher Education
Shelby M. Cagle; Ashley A. Anderson; Nicole C. Kelp – Journal of Research in Science Teaching, 2025
Teaching science in an age of disinformation and misinformation requires empowering students to address inaccurate information in evidence-based ways. Science communication scholarship highlights the growing importance of inclusive and relational approaches for addressing misinformation. Thus, we developed, implemented, and evaluated an…
Descriptors: Science Education, Science Instruction, Misinformation, Information Literacy
Tofel-Grehl, Colby; Searle, Kristin A.; Ball, Douglas – Journal of Science Education and Technology, 2022
This paper shares findings from a teacher designed physics and computing unit that engaged students in learning physics and computing concurrently thru inquiry. Using scientific inquiry skills and practices, students were tasked with assessing the validity of local rollercoaster g-force ratings as posted to the public. Students used computational…
Descriptors: Computation, Thinking Skills, Science Education, Physics
Marcus Harmes – History of Education Review, 2024
Purpose: The purpose of this paper is to study the popular educational broadcasting of Julius Sumner Miller and its intersections with contemporary science policy and education. Design/methodology/approach: The paper draws on archival research including resources so far unused by historians of science or of broadcasting and audio-visual resources…
Descriptors: Science Education, Science and Society, Telecommunications, Programming (Broadcast)
Wittje, Roland – History of Education, 2023
This paper reviews the current position of the history of education within the existing historiography of science and technology, and argues for the relocation of education from the periphery of the history of science and technology to its centre. It claims that it is essential to study science education in its entirety and complexity if we want…
Descriptors: Historiography, Educational History, Science Education History, Science Education
Qianqian Gao; Yi Cao; Hongni Xie; Xuefeng Li – Science & Education, 2025
Science education in China has undergone a new round of reform in recent years, emphasizing the development of students' scientific literacy, of which the nature of science (NOS) is an essential component. Curriculum standards are the source of top-down curriculum reform, and the Ministry of Education of the People's Republic of China promulgated…
Descriptors: Biology, Science Education, Curriculum Development, Foreign Countries
Martin Sigot; Sebastian Tassoti – Journal of Chemical Education, 2025
With the emergence of generative artificial intelligence (GenAI) and ChatGPT, individualization of learning pathways was discussed in the educational context. One way to achieve customization is the use of specialized versions of ChatGPT--so-called GPTs. Those GPTs are publicly available and used daily by thousands of people worldwide. In this…
Descriptors: Artificial Intelligence, Chemistry, Computer Uses in Education, Science Education
Lautaro Cabrera; Diane Jass Ketelhut; Kelly Mills; Heather Killen; Merijke Coenraad; Virginia L. Byrne; Jandelyn Dawn Plane – Journal of Research in Science Teaching, 2024
As professional science becomes increasingly computational, researchers and educators are advocating for the integration of computational thinking (CT) into science education. Researchers and policymakers have argued that CT learning opportunities should begin in elementary school and span across the K-12 grades. While researchers and policymakers…
Descriptors: Computer Science Education, Thinking Skills, Science Education, Elementary School Students
Karl Lundengård; Peter Johnson; Phil Ramsden – International Journal for Technology in Mathematics Education, 2024
Formative feedback is important in learning. Automating the provision of specific, objective, constructive feedback to large cohorts requires complex algorithms that most teachers do not have time to develop, suggesting that a community effort is needed to create a library of specialised algorithms. We present an exemplar algorithm for a class of…
Descriptors: Automation, Feedback (Response), Algorithms, Science Education
Ilona Ilowiecka-Tanska; Katarzyna Potega vel Zabik – Science Education, 2025
How is it that the millions of visitors who flock to science centers each year are able to make use of the exhibits there? How do they discover the properties of previously unknown machines? How much time does it take? What is the significance of the process? An issue of particular interest to us is how visitors figure out what they can do with an…
Descriptors: Exhibits, Experiential Learning, Children, Psychomotor Skills
Loucas T. Louca; Zacharias C. Zacharia – Science Education, 2025
This study seeks to enrich our understanding of modeling-based learning (MbL) in kindergarten science education, investigating the influences of different modeling tools on kindergarten child-constructed models and their modeling reasoning. Therefore, this multi-case study aimed at providing in-depth descriptions of how MbL was enacted by 66…
Descriptors: Foreign Countries, Kindergarten, Young Children, Science Education
Antonio García-Carmona – Science & Education, 2025
Scientific thinking and critical thinking are two intellectual processes that are considered keys in the basic and comprehensive education of citizens. For this reason, their development is also contemplated as among the main objectives of science education. However, in the literature about the two types of thinking in the context of science…
Descriptors: Thinking Skills, Critical Thinking, Science Education, Scientific Concepts
David Stroupe; Enrique Suárez; Déana Scipio – Journal of Research in Science Teaching, 2025
Scientists and science educators have argued that learners (students, preservice teachers, and inservice teachers) should understand knowledge construction in science, in addition to figuring out disciplinary core ideas. Given this goal, some science education scholars created a construct called the "Nature of Science" (NOS), which aims…
Descriptors: Epistemology, Justice, Scientific Principles, Science Education
James E. Patterson; Haley N. Hunsaker; Laurel C. Smith; Rebecca L. Sansom; Matthew C. Asplund – Journal of Chemical Education, 2024
Modifications are presented for the iodine clock reaction to introduce the concept of activity and to help students better appreciate molecular aspects of chemical equilibrium. The addition of an unreactive salt affects the activity of the reactants in the iodine clock reaction. The difference in activity affects how long the iodine clock reaction…
Descriptors: Chemistry, Color, Science Education, Time