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Eleonora Barelli; Michael Lodi; Laura Branchetti; Olivia Levrini – Science & Education, 2025
In a historical moment in which Artificial Intelligence and machine learning have become within everyone's reach, science education needs to find new ways to foster "AI literacy." Since the AI revolution is not only a matter of having introduced extremely performant tools but has been determining a radical change in how we conceive and…
Descriptors: Artificial Intelligence, Science Education, Cognitive Development, Cultural Influences
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Fooladi, Erik C. – Science & Education, 2020
The fields of science education and science communication are said to have developed as disparate fields of research and practice, operating based on somewhat different logics and premises about their audiences. As the two fields share many of the same goals, arguments have been made for a rapprochement between the two. Drawing inspiration from a…
Descriptors: Science Education, Communication (Thought Transfer), Science and Society, COVID-19
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Taber, Keith S. – Center for Educational Policy Studies Journal, 2021
This article argues that what is most at risk in schooling during a global pandemic, or other similar broad challenges to normal functioning, are those elements that might be considered the less traditional and so the most progressive. After setting out some general background common to the challenge faced by schools and school teachers, this…
Descriptors: Educational Change, COVID-19, Pandemics, Progressive Education
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Hottecke, Dietmar; Silva, Cibelle Celestino – Science & Education, 2011
Teaching and learning with history and philosophy of science (HPS) has been, and continues to be, supported by science educators. While science education standards documents in many countries also stress the importance of teaching and learning with HPS, the approach still suffers from ineffective implementation in school science teaching. In order…
Descriptors: Textbooks, Science Education, Teaching Methods, Teacher Attitudes
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Dieker, Lisa A.; Lane, Holly B.; Allsopp, David H.; O'Brien, Chris; Butler, Tyran Wright; Kyger, Maggie; Lovin, LouAnn; Fenty, Nicole S. – Teacher Education and Special Education, 2009
A process was developed to create Web-based video models of effective instructional practices for use in teacher education settings. Three video models, created at three university sites, demonstrated exemplary implementation of specific, evidence-based strategies in reading, math, and science. Video models of strategies were field tested with…
Descriptors: Educational Technology, Teaching Methods, Teacher Education Programs, Teaching Models
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Hart, Christina – Research in Science Education, 2008
Models are important both in the development of physics itself and in teaching physics. Historically, the consensus models of physics have come to embody particular ontological assumptions and epistemological commitments. Educators have generally assumed that the consensus models of physics, which have stood the test of time, will also work well…
Descriptors: Fundamental Concepts, Teaching Models, Physics, Concept Formation
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Braund, Martin – Education 3-13, 2009
Modelled Discussions About Science (MoDAS), where adults talk together about scientific ideas, procedures and applications, were devised to model and improve the quality of pupils' discussions. Two examples from one of the project schools are examined to see if these aims were fulfilled and to comment on examples of cognitive and social aspects of…
Descriptors: Persuasive Discourse, Science Education, Students, Teaching Models
Zeidler, Dana L.; Nichols, Bryan H. – Journal of Elementary Science Education, 2009
Drawing upon recent research, this article reviews the theory underlying the use of socioscientific issues (SSI) in science education. We begin with a definition and rationale for SSI and note the importance of SSI for advancing functional scientific literacy. We then examine the various roles of context, teachers, and students in SSI lessons as…
Descriptors: Scientific Literacy, Theory Practice Relationship, Discussion (Teaching Technique), Teaching Methods
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Wieman, Carl; Perkins, Katherine; Gilbert, Sarah – Change: The Magazine of Higher Learning, 2010
There are countless reports stressing the economic and societal benefits to be gained from improved science, technology, engineering, and math (STEM) education for all students. Although there is extensive research on alternative teaching methods that increase student learning and are practical to implement, the combined efforts of federal…
Descriptors: Foreign Countries, Higher Education, Research Universities, Educational Innovation
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Oliva, Jose M.; Azcarate, P.; Navarrete, A. – International Journal of Science Education, 2007
The present work discusses, firstly, different dimensions that characterize the use of analogies in the classroom. Foremost among these are the pupil's level of activity and the degree of monitoring carried out by the teacher. Secondly, the routines declared by a group of science teachers (n = 73), when they described their classroom activity in…
Descriptors: Teaching Models, Science Teachers, Science Education, Classroom Techniques
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Falcao, Douglas; Colinvaux, Dominique; Krapas, Sonia; Querioz, Gloria; Alves, Fatima; Cazelli, Sibele; Valente, Maria Esther, Gouvea, Guaracira – International Journal of Science Education, 2004
A models and modelling approach was adopted to investigate the educational potential of a science museum exhibition. It focused on patterns of relationship between the teaching models proposed by designers and students models in regard to four exhibits concerning astronomical cycles. Student's models were elicited by interviewing 21 pupils…
Descriptors: Teaching Methods, Teaching Models, Exhibits, Museums
Lewis, Bradford F. – 1998
In recent years science educators have placed increasing emphasis on the importance of understanding student knowledge. The research aimed at exploring student knowledge--misconception research, nature of science studies, and conceptual change research--has proved useful in telling us what concepts students know before and after instruction.…
Descriptors: Elementary Secondary Education, Misconceptions, Science Education, Teaching Methods
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Besson, Ugo; Viennot, Laurence – International Journal of Science Education, 2004
This article examines the didactic suitability of introducing models at an intermediate (i.e. mesoscopic) scale in teaching certain subjects, at an early stage. The design and evaluation of two short sequences based on this rationale will be outlined: one bears on propulsion by solid friction, the other on fluid statics in the presence of gravity.…
Descriptors: Control Groups, Physics, Teaching Models, Science Education
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Zardetto-Smith, Andrea M.; Mu, Keli; Carruth, Laura L.; Frantz, Kyle J. – CBE - Life Sciences Education, 2006
Brains Rule! Neuroscience Expositions, funded through a National Institute on Drug Abuse Science Education Drug Abuse Partnership Award, has developed a successful model for informal neuroscience education. Each Exposition is a "reverse science fair" in which neuroscientists present short neuroscience teaching modules to students. This…
Descriptors: Science Activities, Informal Education, Outreach Programs, Demonstration Programs
Scarborough, Jule Dee – Online Submission, 2004
This document (book) reports on the Strategic Alliance to Advance Technological Education through Enhanced Mathematics, Science, Technology, and English Education at the Secondary Level, funded by National Science Foundation. It was a collaborative partnership involving the Rockford Public Schools, Rock Valley College, and Northern Illinois…
Descriptors: Program Effectiveness, Articulation (Education), Workshops, Teaching Models