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Nature of Engineering: A Cognitive and Epistemic Account with Implications for Engineering Education
Miri Barak; Tamar Ginzburg; Sibel Erduran – Science & Education, 2024
Engineering education has slowly been making its way into schools with the aim of promoting engineering literacy, which is central to learning and working in a technology-oriented society. Educators and policy makers advocate the need for developing students' understanding of the nature of engineering (NOE); yet, there is an ongoing debate on the…
Descriptors: Engineering Education, Science Curriculum, Integrated Curriculum, Educational Research
Chen, Ying-Chih; Hand, Brian; Park, Soonhye – Science & Education, 2016
Argumentation, and the production of scientific arguments are critical elements of inquiry that are necessary for helping students become scientifically literate through engaging them in constructing and critiquing ideas. This case study employed a mixed methods research design to examine the development in 5th grade students' practices of oral…
Descriptors: Persuasive Discourse, Elementary School Students, Elementary School Science, Scientific Literacy
Park, Jisun; Song, Jinwoong; Abrahams, Ian – Science & Education, 2016
This study explored, from the perspective of intellectual passion developed by Michael Polanyi, the unintended learning that occurred in primary practical science lessons. We use the term "unintended" learning to distinguish it from "intended" learning that appears in teachers' learning objectives. Data were collected using…
Descriptors: Foreign Countries, Primary Education, Elementary School Science, Science Education
Galamba, Arthur – Science & Education, 2016
Not surprisingly historical studies have suggested that there is a distance between concepts of teaching methods, their interpretations and their actual use in the classroom. This issue, however, is not always pitched to the personal level in historical studies, which may provide an alternative insight on how teachers conceptualise and engage with…
Descriptors: Science Education, Science Instruction, Teaching Methods, Concept Formation
Janssen, F. J. J. M.; van Berkel, B. – Science & Education, 2015
Philosophy of science education can play a vital role in the preparation and professional development of science teachers. In order to fulfill this role a philosophy of science education should be made practical for teachers. First, multiple and inherently incomplete philosophies on the teacher and teaching on what, how and why should be…
Descriptors: Scientific Principles, Science Instruction, Science Teachers, Educational Philosophy
Gouvea, Julia; Passmore, Cynthia – Science & Education, 2017
The inclusion of the practice of "developing and using models" in the "Framework for K-12 Science Education" and in the "Next Generation Science Standards" provides an opportunity for educators to examine the role this practice plays in science and how it can be leveraged in a science classroom. Drawing on conceptions…
Descriptors: Models, Science Education, Elementary Secondary Education, Academic Standards
Duschl, Richard A.; Grandy, Richard – Science & Education, 2013
Our focus is on the effects that dated ideas about the nature of science (NOS) have on curriculum, instruction and assessments. First we examine historical developments in teaching about NOS, beginning with the seminal ideas of James Conant. Next we provide an overview of recent developments in philosophy and cognitive sciences that have shifted…
Descriptors: Scientific Principles, Direct Instruction, Science Instruction, Educational History
Chamizo, Jose A. – Science & Education, 2012
The graphic organizer called here heuristic diagram as an improvement of Gowin's Vee heuristic is proposed as a tool to teach history of science. Heuristic diagrams have the purpose of helping students (or teachers, or researchers) to understand their own research considering that asks and problem-solving are central to scientific activity. The…
Descriptors: Semantics, Heuristics, Semantic Differential, Instructional Materials
Marroum, Renata-Maria – Science & Education, 2004
This paper describes the transcendental method of Bernard Lonergan and its relevance to science education in general, and to physics education in particular. Lonergan formulated a cognitional theory, based upon the self-assembling dynamic invariant structure of human knowing, that unfolds the complex relation among knowing, objective knowledge,…
Descriptors: Science Education, Teaching Methods, Physics, Science Instruction