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Antonio García-Carmona – Science & Education, 2025
For many years, hegemonic approaches to teaching the nature of science (NOS) have focused mainly on understanding some epistemic (i.e., rational, or cognitive) aspects involved in the construction of science. So, aspects of a non-epistemic (i.e., non-rational, contextual, or extra-scientific) nature have been practically neglected in these…
Descriptors: Science Instruction, Teaching Methods, Scientific Principles, Holistic Approach
Amy J. Hopper; Angus M. Brown – Advances in Physiology Education, 2024
In this article we analyze the classic Hodgkin and Keynes 1955 paper describing investigations of the independence principle, with the expectation that there is much students and educators can learn from such exercises, most notably how the authors applied their diverse skill set to tackling the numerous obstacles that the study presented. The…
Descriptors: Science Education, Physiology, Scientific Principles, Scientific Concepts
Sevgi Aydin-Günbatar; Gillian H. Roehrig – Science & Education, 2025
With the release of Framework for K-12 Science Education (National Research Council, 2012) and Next Generation Science Standards (2013) documents, engineering was integrated into science teaching. With that emphasis, teachers require to incorporate engineering practices and nature of engineering into their practice. Most of the attention has been…
Descriptors: Science Education, Elementary Secondary Education, Engineering, Academic Standards
Anna Henriksson; Marie Fridberg; Lotta Leden – Early Childhood Education Journal, 2025
The Swedish preschool educational tradition is based on a holistic view where care, play, learning, and teaching are intertwined. Previous research argues for the need to develop teaching approaches that simultaneously direct attention towards content and children's perspectives. The aim of this study is to contribute with knowledge about how…
Descriptors: Foreign Countries, Preschool Children, Preschool Education, Holistic Approach
Minji Yun; Kent J. Crippen – Journal of Science Teacher Education, 2025
Computational Thinking (CT) has emerged as a fundamental aspect of modern science education, especially within pre-service teacher education. This study examines the current landscape of CT integration in pre-service science teacher education, drawing insights from an analysis of 18 empirical studies conducted since the implementation of the Next…
Descriptors: Computer Science Education, Teacher Education Programs, Science Education, Preservice Teacher Education
Nicola Broderick – Irish Educational Studies, 2025
This discussion paper focuses on the purpose of, and vision for, Irish primary science education prior to the redevelopment and publication of the primary science curriculum in 2024. Scientific literacy is broadly accepted as the goal of science education. Despite this, curricular analysis focusing on scientific literacy in Europe is scarce. There…
Descriptors: Scientific Literacy, Elementary School Science, Teaching Methods, Science Education
Allchin, Douglas; Zemplén, Gábor Á. – Science Education, 2020
Argumentation constitutes an important element in nature of science education. However, its virtues and scope can be overstated. Here, we survey in detail the place of argumentation in science education. Our benchmark is the range of epistemic processes relevant to citizens and consumers as they assess the reliability of scientific claims in…
Descriptors: Persuasive Discourse, Science Education, Teaching Methods, Holistic Approach
Puttick, Steven; Cullinane, Alison – Journal of Geography in Higher Education, 2022
This paper offers an exploratory account of the Nature of Geography (NOG) for geography education. The proposed NOG framework describes geography through the theoretical offerings of the family resemblance approach across the dimensions of: aims and values; knowledge; methods and methodological rules; practices; and geography as a…
Descriptors: Geography Instruction, Scientific Principles, Science Education, Guidelines
Trocco, Frank – Current Issues in Education, 2023
This academic essay provides a strategy for teaching complementary and alternative medicine (CAM) in the classroom, a subject typically critiqued as unconventional and non-scientific. It demonstrates how students can enhance their critically reflective skills by examining polarizing and controversial medical topics, which are often considered by…
Descriptors: Medicine, Folk Culture, Science Education, Teaching Methods
Goode, Gretchen S.; MacGillivray, Laurie – Journal of Pedagogical Research, 2023
The prevalence of systems thinking pedagogy is growing in classrooms because of its inclusion in the Next Generation Science Standards and its potential as a tool for addressing complex, global problems. While most of the research on systems thinking targets the ways students develop system thinking skills, this qualitative study explores…
Descriptors: Systems Approach, Faculty Development, Science Education, Standards
Price, Gareth; Bevins, Stuart – Electronic Journal for Research in Science & Mathematics Education, 2021
We have argued that science in general, and scientific inquiry in particular, is a human activity and that current models to describe science (either as Scientific Method or as a Body of Knowledge) tend to underestimate the significance of human beings in the phenomenon. Our earlier paper (Bevins & Price, 2016) suggests a model to correct this…
Descriptors: Inquiry, Scientific Principles, Scientific Methodology, Science Education
Güngör, Sema Nur; Yücel, Elif Özata; Özer, Dilek Zeren; Özkan, Muhlis – International Journal of Progressive Education, 2022
This study aims to determine the changes in the cognitive structures of the 35 participants after ecology-based nature education in Bursa Uludag and its vicinity. This study used a single group pretest-posttest experimental mode where the data was collected by a word association test. It included the key concepts of nature, national parks,…
Descriptors: Ecology, Environmental Education, Parks, Comparative Analysis
Imad, Mays – Liberal Education, 2019
Author Mays Imad, who is a neuroscientist, writes that throughout her teaching career she has watched talented, creative, high-potential students walk away from the sciences because they feel that the STEM curriculum lacks ethical, political, and creative significance. One of her students wrote to her, "Life is hard and the world feels drab…
Descriptors: STEM Education, Science Education, Teaching Methods, Science Curriculum
Mehta, Rohit; Mehta, Swati; Seals, Christopher – Journal of Computers in Mathematics and Science Teaching, 2017
In this chapter, we argue that science education is more than the high stakes, rigorous practices and methodology that students often find dull and uninspiring. We present that aesthetic and humanistic motivations, such as wonder, curiosity, and social justice, are also inherent reasons for doing science. In the MSUrbanSTEM program, we designed an…
Descriptors: Science Education, Holistic Approach, Aesthetics, Student Motivation
Finch, Lila; Moreno, Celeste; Shapiro, R. Benjamin – Cognition and Instruction, 2021
Creating learning environments that integrate arts, sciences, and computing in education can improve learning in these disciplines. In particular, transdisciplinary integrations of these disciplines can lead to expansive alterations or dissolutions of epistemological, ideological, and methodological boundaries. We wish to support teachers in the…
Descriptors: Interdisciplinary Approach, Learning Processes, Thinking Skills, Epistemology