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Showing 1 to 15 of 800 results
Morin, Olivier; Simonneaux, Laurence; Simmoneaux, Jean; Tytler, Russell; Barraza, Laura – Science Education, 2014
Within the increasing body of research that examines students' reasoning on socioscientific issues, we consider in particular student reasoning concerning acute, open-ended questions that bring out the complexities and uncertainties embedded in ill-structured problems. In this paper, we propose a socioscientific sustainability reasoning…
Descriptors: Sustainability, Web Based Instruction, Cognitive Processes, Logical Thinking
Polman, Joseph L.; Newman, Alan; Saul, Ellen Wendy; Farrar, Cathy – Science Education, 2014
In this paper, the authors describe how the practices of expert science journalists enable them to act as "competent outsiders" to science. We assert that selected science journalism practices can be used to design reform-based science instruction; these practices not only foster science literacy that is useful in daily life, but also…
Descriptors: Scientific Literacy, Science Instruction, Educational Change, Science Activities
Juuti, Kalle – Science & Education, 2014
The goal of this paper is to study the question of whether a phenomenological view of the Earth could be empirically endorsed. The phenomenological way of thinking considers the Earth as a material entity, but not as an object as viewed in science. In the learning science tradition, tracking the process of the conceptual change of the shape of the…
Descriptors: Science Instruction, Earth Science, Phenomenology, Astronomy
Kang, Hosun; Thompson, Jessica; Windschitl, Mark – Science Education, 2014
This study examines the ways in which teachers provide students with written scaffolds in assessment tasks and the impact of these on students' abilities to demonstrate a core disciplinary proficiency--constructing evidence-based explanations. Data include 76 assessment tasks designed by 33 science teachers and 707 samples of student work. We…
Descriptors: Scaffolding (Teaching Technique), Science Instruction, Science Teachers, Student Evaluation
Mutanen, Arto – Science & Education, 2014
The paper is a philosophical analysis of experimentation. The philosophical framework of the analysis is the interrogative model of inquiry developed by Hintikka. The basis of the model is explicit and well-formed logic of questions and answers. The framework allows us to formulate a flexible logic of experimentation. In particular, the formulated…
Descriptors: Science Instruction, Science Experiments, Inquiry, Models
Ohlsson, Stellan; Cosejo, David G. – Science & Education, 2014
The problem of how people process novel and unexpected information--"deep learning" (Ohlsson in "Deep learning: how the mind overrides experience." Cambridge University Press, New York, 2011)--is central to several fields of research, including creativity, belief revision, and conceptual change. Researchers have not converged…
Descriptors: Cognitive Processes, Scientific Concepts, Change Strategies, Concept Formation
Greca, Ileana M.; Seoane, Eugenia; Arriassecq, Irene – Science & Education, 2014
Computers and simulations represent an undeniable aspect of daily scientific life, the use of simulations being comparable to the introduction of the microscope and the telescope, in the development of knowledge. In science education, simulations have been proposed for over three decades as useful tools to improve the conceptual understanding of…
Descriptors: Computer Simulation, Computer Uses in Education, Science Education, Teaching Methods
Lee, Shinyoung; Kim, Heui-Baik – Science & Education, 2014
The purpose of this study is to identify the epistemological features and model qualities depending on model evaluation levels and to explore the reasoning process behind high-level evaluation through small group interaction about blood circulation. Nine groups of three to four students in the eighth grade participated in the modeling practice.…
Descriptors: Epistemology, Models, Small Group Instruction, Scientific Concepts
Besson, Ugo; De Ambrosis, Anna – Science & Education, 2014
Energy is a central topic in physics and a key concept for understanding the physical, biological and technological worlds. It is a complex topic with multiple connections with different areas of science and with social, environmental and philosophical issues. In this paper we discuss some aspects of the teaching and learning of the energy…
Descriptors: Energy, Science Instruction, Scientific Concepts, Physics
Heywood, David; Parker, Joan; Rowlands, Mark – Science Education, 2013
The role of visualization and model-based reasoning has become increasingly significant in science education across a range of contexts. It is generally recognized that supporting learning in developing causal explanations for observed astronomical events presents considerable pedagogic challenge. Understanding the Sun's apparent movement…
Descriptors: Visualization, Spatial Ability, Science Education, Astronomy
Sjöström, Jesper – Science & Education, 2013
This paper concerns "Bildung"-oriented chemistry education, based on a reflective and critical discourse of chemistry. It is contrasted with the dominant type of chemistry education, based on the mainstream discourse of chemistry. "Bildung"-oriented chemistry education includes not only content knowledge in chemistry, but also…
Descriptors: Chemistry, Science Education, Scientific Principles, Science Instruction
Erduran, Sibel; Mugaloglu, Ebru Z. – Science & Education, 2013
In recent years, there has been upsurge of interest in the applications of interdisciplinary perspectives on science in science education. Within this framework, the implications of the so-called "economics of science" is virtually an uncharted territory. In this paper, we trace a set of arguments that provide a dialectic engagement with…
Descriptors: Science Education, Interdisciplinary Approach, Commercialization, Scientific Enterprise
Glass, Rory J. – Science & Education, 2013
The purpose of this paper is to provide an examination of the role tacit knowledge plays in understanding, and to provide a model to make such knowledge identifiable. To do this I first consider the needs of society, the ubiquity of information in our world and the future demands of the science classroom. I propose the use of more implicit or…
Descriptors: Knowledge Level, Comprehension, Science Education, Models
Leydesdorff, Loet – Science & Education, 2013
Both self-organization and organization are important for the further development of the sciences: the two dynamics condition and enable each other. Commercial and public considerations can interact and "interpenetrate" in historical organization; different codes of communication are then "recombined". However,…
Descriptors: Commercialization, Sciences, School Business Relationship, Government School Relationship
Adúriz-Bravo, Agustín – Science & Education, 2013
In this paper I inspect a "semantic" view of scientific models taken from contemporary philosophy of science-I draw upon the so-called "semanticist family", which frontally challenges the received, syntactic conception of scientific theories. I argue that a semantic view may be of use both for science education in the…
Descriptors: Science Education, Models, Scientific Principles, Philosophy

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