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Bächtold, Manuel – Research in Science Education, 2013
This paper aims at shedding light on what students can "construct" when they learn science and how this construction process may be supported. Constructivism is a pluralist theory of science education. As a consequence, I support, there are several points of view concerning this construction process. Firstly, I stress that constructivism…
Descriptors: Constructivism (Learning), Science Instruction, Science Education, Educational Theories
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Dhindsa, Harkirat S.; Makarimi-Kasim; Anderson, O. Roger – Journal of Science Education and Technology, 2011
This study compared the effects of a constructivist-visual mind map teaching approach (CMA) and of a traditional teaching approach (TTA) on (a) the quality and richness of students' knowledge structures and (b) TTA and CMA students' perceptions of the extent that a constructivist learning environment (CLE) was created in their classes. The sample…
Descriptors: Constructivism (Learning), Student Attitudes, Females, Cognitive Structures
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Akaygun, Sevil; Jones, Loretta L. – Chemistry Education Research and Practice, 2013
Helping learners to visualize the structures and dynamics of particles through the use of technology is challenging. Animations and simulations can be difficult for learners to interpret and can even lead to new misconceptions. A systematic approach to development based on the findings of cognitive science was used to design, develop, and evaluate…
Descriptors: Chemistry, Computer Simulation, Science Instruction, Questionnaires
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Gupta, Ayush; Hammer, David; Redish, Edward F. – Journal of the Learning Sciences, 2010
In a series of well-known papers, Chi and Slotta (M. T. H. Chi, 1992, 2005; M. T. H. Chi & J. D. Slotta, 1993; M. T. H. Chi, J. D. Slotta, & N. de Leeuw, 1994; J. Slotta & M. T. H. Chi, 2006; J. D. Slotta, M. T. H. Chi, & E. Joram, 1995) have contended that a reason for students' difficulties in learning physics is that students…
Descriptors: Physics, Scientific Concepts, Models, Expertise
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Kinchin, Ian M. – Journal of Biological Education, 2010
The consideration of threshold concepts is offered in the context of biological education as a theoretical framework that may have utility in the teaching and learning of biology at all levels. Threshold concepts may provide a mechanism to explain the observed punctuated nature of conceptual change. This perspective raises the profile of periods…
Descriptors: Biology, Concept Formation, Models, Academic Achievement
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Tippett, Christine D. – International Journal of Science and Mathematics Education, 2010
As people attempt to make sense of the world, they develop personal knowledge structures. These structures often contain misconceptions--inaccurate or incomplete information--that are highly resistant to change because existing knowledge networks must be restructured to accommodate counterintuitive information in a process known as conceptual…
Descriptors: Concept Formation, Cognitive Structures, Misconceptions, Resistance to Change
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Roth, Wolff-Michael; Lee, Yew Jin; Hwang, SungWon – Cultural Studies of Science Education, 2008
Over the past three decades, science educators have accumulated a vast amount of information on conceptions--variously defined as beliefs, ontologies, cognitive structures, mental models, or frameworks--that generally (at least initially) have been derived from interviews about certain topics. During the same time period, cultural studies has…
Descriptors: Cognitive Structures, Concept Formation, Scientific Concepts, Cultural Influences
Carver, Sharon M., Ed.; Shrager, Jeff, Ed. – APA Books, 2012
The impulse to investigate the natural world is deeply rooted in our earliest childhood experiences. This notion has long guided researchers to uncover the cognitive mechanisms underlying the development of scientific reasoning in children. Until recently, however, research in cognitive development and education followed largely independent…
Descriptors: Thinking Skills, Class Activities, Learning Activities, Science Education
Rus, Vasile; Lintean, Mihai; Azevedo, Roger – International Working Group on Educational Data Mining, 2009
This paper presents several methods to automatically detecting students' mental models in MetaTutor, an intelligent tutoring system that teaches students self-regulatory processes during learning of complex science topics. In particular, we focus on detecting students' mental models based on student-generated paragraphs during prior knowledge…
Descriptors: Data Analysis, Prior Learning, Cognitive Structures, College Students
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Cakir, Mustafa – International Journal of Environmental and Science Education, 2008
This paper draws attention to the literature in the areas of learning, specifically, constructivism, conceptual change and cognitive development. It emphasizes the contribution of such research to our understanding of the learning process. This literature provides guidelines for teachers, at all levels, in their attempt to have their students…
Descriptors: Constructivism (Learning), Cognitive Structures, Learning Processes, Science Teachers
Lawson, Anton E. – Journal of Elementary Science Education, 2008
Children personally construct explanations of natural phenomena, some of which differ from currently accepted scientific explanations. The replacement of personal explanations with scientific explanations, as well as the development of concrete, formal, and post-formal reasoning patterns, requires self-regulation in which alternative explanations…
Descriptors: Children, Cognitive Structures, Active Learning, Inquiry
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Ceylan, Eren; Geban, Omer – Hacettepe University Journal of Education, 2009
The main purpose of the study was to compare the effectiveness of 5E learning cycle model based instruction and traditionally designed chemistry instruction on 10th grade students' understanding of state of matter and solubility concepts. In this study, 119 tenth grade students from chemistry courses instructed by same teacher from an Anatolian…
Descriptors: Experimental Groups, Control Groups, Chemistry, Learning Processes
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Kaya, Osman Nafiz – Hacettepe University Journal of Education, 2008
The purpose of this study is to present the whole process step-by-step of how a science lesson can be planned and implemented based on Multiple Intelligences (MI) theory. First, it provides the potential of the MI theory for science teaching and learning. Then an MI science lesson that was developed based on a modified model in the literature and…
Descriptors: Multiple Intelligences, Cognitive Structures, Science Teachers, Grade 8
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Arasasingham, Ramesh D.; Taagepera, Mare; Potter, Frank; Lonjers, Stacy – Journal of Chemical Education, 2004
The use of knowledge space theory (KST), to assess students' understanding and integration of the different representations in an introductory chemistry course are described. KST is a useful tool for revealing various aspects of students' cognitive structure in chemistry.
Descriptors: Cognitive Structures, Chemistry, Teaching Methods, Science Instruction
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Malone, Kathy L. – Physical Review Special Topics - Physics Education Research, 2008
The modeling instruction pedagogy for the teaching of physics has been proven to be quite effective at increasing the conceptual understanding and problem-solving abilities of students to a much greater extent than that of nonmodeling students. Little research has been conducted concerning the cognitive and metacognitive skills that modeling…
Descriptors: Physics, Cognitive Structures, Problem Solving, Metacognition
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