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Blakely, Alan; Desmond, Fadia; Potter, Gregory – 1999
This study examines the changes in students' conceptual thinking and problem solving abilities. Conceptual thinking skills and problem solving abilities are important factors for medical school applicants as diagnosis and treatment procedures strongly depend on these skills. Underrepresented minorities in medicine is a concern in United States,…
Descriptors: Constructivism (Learning), Ethnicity, Higher Education, Learning Processes
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Glasson, George E.; Lalik, Rosary V. – Journal of Research in Science Teaching, 1993
This study investigated whether Science Curriculum Improvement Study or more recent interpretations of the learning cycle could be used by teachers to engage students in social constructivist learning. Two researchers and six science teachers implemented instruction based on the reciprocal use of language and action. Changing beliefs and practices…
Descriptors: Constructivism (Learning), Educational Change, Educational Research, Elementary Education
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Mulholland, Judith; Wallace, John – Research in Science Education, 2000
Reports on a case study of the transition from preservice to inservice science teaching. Describes four sets of overlapping areas that provide vantage points for the study. Three sets describe participating teacher experiences, and the fourth set describes researchers' developments. Discusses the differences between a person who is good at science…
Descriptors: Classroom Techniques, Constructivism (Learning), Cooperative Learning, Educational Environment
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Mascolo, Michael F.; Kanner, Bonnie G.; Griffin, Sharon – Early Child Development and Care, 1998
Reviews constructivist and sociocultural approaches to child development and early education. Outlines a neo-Piagetian systems approach to early learning and development which examines development as the result of coactions between multiple levels of hierarchical individual-environment systems. Discusses a neo-Piagetian curriculum, Rightstart, for…
Descriptors: Child Development, Constructivism (Learning), Early Childhood Education, Educational Theories
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Watters, James J.; Diezmann, Carmel M. – Early Child Development and Care, 1998
Describes a science enrichment program for 5- to 8-year- olds that used constructivist theory to create a social learning environment conducive to science learning. Considers the strategic actions and roles the teacher adopted to achieve theoretical objectives. Presents evidence that the children engaged in knowledge generation and critical…
Descriptors: Classroom Environment, Constructivism (Learning), Early Childhood Education, Educational Theories
Gabriel, Martha – Journal of Distance Education, 2004
Recent studies in the literature on online learning highlight a constructivist approach to knowledge-building in Web-based environments. In this case study of an online course, students were introduced to a constructivist orientation toward learning, a requirement to work in a new learning environment, and a challenge to accomplish academic work…
Descriptors: Constructivism (Learning), Communication Strategies, Student Attitudes, Self Efficacy
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Arvaja, Maarit – International Journal of Computer-Supported Collaborative Learning, 2007
This paper presents a methodology designed to explore the role of context in collaborative knowledge construction activity in asynchronous web-based discussion. The discussions of two student groups participating in a web-based teacher education course were compared. The comparison aimed to highlight the differences and similarities between the…
Descriptors: Education Courses, Cooperative Learning, Evaluation Methods, Internet
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Flake, Janice L. – Computers in the Schools, 1996
From a constructivist perspective, the World Wide Web offers students an opportunity to be engaged in sense making, problem solving, and open investigation of the learning process. Students have access to a wide range of information, can develop in socially relevant ways, and are empowered. Selected Web sites (i.e. the White House home page) are…
Descriptors: Access to Information, Cognitive Processes, Computer Networks, Constructivism (Learning)
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Lawless, Kimberly A.; Brown, Scott W. – Instructional Science, 1997
Examines how different internal learner characteristics (prior knowledge, self efficacy, and interest) and different external constraints (learner control, instructional design, and level of control) influence the learning process. Discusses learning from multimedia environments (video, hypertext, kiosk, and other hypermedia) within a schema…
Descriptors: Constructivism (Learning), Educational Environment, Instructional Design, Interests
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Driver, Rosalind; And Others – Educational Researcher, 1994
Presents a view of the interplay among the various factors of personal experience, language, and socialization in the process of learning science in classrooms. Discusses the problematic relations among scientific knowledge, the learning of science, and pedagogy. (GLR)
Descriptors: Classroom Environment, Cognitive Processes, Concept Formation, Constructivism (Learning)
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Dykstra, D. I.; And Others – Science Education, 1992
Discusses (1) the need for teachers to understand student conceptions; (2) alternative conceptions that students formulate; (3) changing conceptions; (4) representing conceptual knowledge for studying conceptual change; (5) strategies for inducing change; and (6) a taxonomy of conceptual change. (Contains 61 references.) (MDH)
Descriptors: Beliefs, Classification, Cognitive Development, Cognitive Mapping
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Yell, Michael M.; Scheurman, Geoffrey – Social Education, 1998
Presents an annotated bibliography of educational resources supporting constructivist teaching. Includes books that illustrate active teaching strategies, general works on the philosophical bases for constructivism, guides to teaching strategies and assessment, theme issues of academic journals, and historical perspectives on constructivism. (MJP)
Descriptors: Annotated Bibliographies, Books, Cognitive Processes, Constructivism (Learning)
Callison, Daniel – School Library Media Activities Monthly, 2000
Discusses the concept of taxonomy in learning. Highlights include cognitive domain, affective domain, and psycho-motor domain; behaviorism and constructivism; scaffolding; other classification formats, including rubrics and matrices; learning taxonomy applied to information literacy and to library media specialist as teacher; and the taxonomy for…
Descriptors: Behaviorism, Classification, Constructivism (Learning), Elementary Secondary Education
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Willis, Cylette R.; Harcombe, Elnora S. – Educational Forum, 1998
A university-school model science lab helps middle school teachers learn to use constructivism in the classroom by supporting their own knowledge construction. Elements of the educational environment are motive, time, reflection, community, and practice. Effective components for knowledge construction include authentic need, mistakes, cooperation,…
Descriptors: College School Cooperation, Constructivism (Learning), Educational Environment, Faculty Development
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von Aufschnaiter, Claudia; von Aufschnaiter, Stefan – Journal of Research in Science Teaching, 2003
In the literature, learners' cognitive development is mainly discussed with respect to changes in learners' content-dependent knowledge (conceptual change or growth). Additional dimensions of time and complexity may also be taken into account to describe cognitive processes in at least three dimensions. We discuss these three dimensions of…
Descriptors: Cognitive Development, Advanced Students, Cognitive Processes, Cognitive Structures
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