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Peer reviewedLarkin, Martha J.; And Others – Canadian Journal of Special Education, 1995
This article considers how principles of whole-theme constructivism, which integrates multiple learning sources and activates learners' creativity, are used in the University of Alabama's teacher training program, the Multiple Abilities Program. The program centers on the whole-themes of diversity, empowerment, and authenticity. The way these…
Descriptors: Constructivism (Learning), Disabilities, Educational Philosophy, Higher Education
Peer reviewedIran-Nejad, Asghar; And Others – Canadian Journal of Special Education, 1995
This paper discusses whole-theme constructivism as the theoretical framework for the Multiple Abilities Program (MAP), a program at the University of Alabama that prepares teachers to work with students of varying abilities. Whole-theme constructivism, which integrates multiple learning sources and activates learners' creativity, is discussed in…
Descriptors: Constructivism (Learning), Disabilities, Educational Philosophy, Higher Education
Peer reviewedBiddlecomb, Barry D. – Journal of Research in Childhood Education, 1994
Uses work on children's counting schemes and a radical constructivist orientation to describe the development of computer microworlds for the teaching of rational numbers. Suggests that the design of complex software systems needs a strong theoretical background to provide direction for the design. Suggests that computer environments are the…
Descriptors: Computer Assisted Instruction, Constructivism (Learning), Elementary Education, Elementary School Mathematics
Peer reviewedSteffe, Leslie P.; Wiegel, Heide G. – Journal of Research in Childhood Education, 1994
Uses the constructivist principle of active learning to explore the possibly essential elements in transforming a cognitive play activity into mathematical activity. Suggests that for such transformation to occur, cognitive play activity must involve operations of intelligence that, yield situations of mathematical schemes. Illustrates the…
Descriptors: Computer Assisted Instruction, Constructivism (Learning), Elementary Education, Elementary School Mathematics
Orthogonal Reflections on Computer Microworlds, Constructivism, Play and Mathematical Understanding.
Peer reviewedKieren, Thomas E. – Journal of Research in Childhood Education, 1994
Comments on the Fractions Project presented in this same issue. Discusses two major ideas: the construction of mathematics of children and its basis and playful actions as a basis for mathematical actions. Highlights the understanding of children's mathematical concepts and schemes as they grow and are organized in the context of computer…
Descriptors: Computer Assisted Instruction, Constructivism (Learning), Elementary Education, Elementary School Mathematics
Peer reviewedKaput, Jim – Journal of Research in Childhood Education, 1994
Comments on the Fraction Project presented in this same issue. Examines the choice of appropriate perspectives on the phenomena induced and observed and the generalizability of the results. Investigates the phenomena as involving student attunement to constraints built into the computer-based learning environments and in terms of explicit…
Descriptors: Computer Assisted Instruction, Constructivism (Learning), Elementary Education, Elementary School Mathematics
Peer reviewedD'Ambrosio, Beatriz S.; Mewborn, Denise Spangler – Journal of Research in Childhood Education, 1994
Comments on the Fraction Project presented in this same issue. Suggests that it has uncovered many implications for instruction. However, there are limitations as the proposed setting is restricted by the present school circumstances. Concludes that better learning will not come from finding better ways for teachers to instruct but from giving the…
Descriptors: Computer Assisted Instruction, Constructivism (Learning), Elementary Education, Elementary School Mathematics
Peer reviewedWheatley, Grayson H. – Educational Studies in Mathematics, 1992
Discusses the limitations in the explain-practice and active learning methods of teaching mathematics. Proposes that problem-centered learning is a teaching method that encourages student reflection, and presents examples demonstrating that encouraging reflection results in greater mathematics achievement. (MDH)
Descriptors: Computation, Constructivism (Learning), Cooperative Learning, Critical Thinking
Peer reviewedEbenezer, Jazlin V.; Zoller, Uri – Journal of Research in Science Teaching, 1993
Grade 10 students (n=1,564) perceptions of classroom practices and activities, as well as their attitudes toward science teaching and school science, were assessed in British Columbia. Major findings were that students do not appreciate the most prevailing contemporary practices in science classes and that they prefer science teaching and learning…
Descriptors: Attitudes, Classroom Research, Classroom Techniques, Constructivism (Learning)
Peer reviewedMosenthal, James H.; Ball, Deborah Loewenberg – Journal of Teacher Education, 1992
Analyzes how staff at two inservice programs that helped elementary teachers develop constructivist teaching practices construed program subject matter, noting the role they assigned subject matter in helping educators learn to teach. The reformist pedagogy used a principled conception of subject matter. Developing teachers' subject matter…
Descriptors: Constructivism (Learning), Educational Change, Elementary Education, Elementary School Mathematics
Peer reviewedStoddart, Trish; And Others – Teaching and Teacher Education, 1993
Examines the mathematics and science content knowledge of elementary teacher candidates, presents data showing elementary teacher deficiencies in this subject matter, and provides a conceptual approach to educating teachers in these subjects. Data are presented illustrating the effectiveness of these approaches in improving novice teacher's…
Descriptors: Constructivism (Learning), Elementary Education, Elementary School Mathematics, Elementary School Science
Peer reviewedTsai, Chin-Chung – Science Education, 1998
Explores the interaction between scientific epistemological beliefs and learning orientations in a group of Taiwanese eighth-grade students. Suggests the importance of employing a constructivist philosophy in the classroom. Contains 55 references. (DDR)
Descriptors: Cognitive Style, Concept Formation, Constructivism (Learning), Elementary Secondary Education
Peer reviewedScheurman, Geoffrey; Newman, Fred M. – Social Education, 1998
Describes criteria for authentic intellectual achievement in social studies, as well as the assessment and instruction tasks necessary to achieve these criteria. Emphasizes the importance of the construction of knowledge, disciplined inquiry, and the development of qualities of reasoning that have value outside school. (MJP)
Descriptors: Academic Achievement, Cognitive Processes, Constructivism (Learning), Educational Theories
Peer reviewedSherry, Annette C. – International Journal of Instructional Media, 1998
This evaluative case study examines the learning experiences of graduate students studying effective multimedia authoring. Continuum-based instructional design, behaviorism, cognitivism, constructivism, collaboration, the role of a matrix, transfer of training, and qualitative and quantitative results are discussed. (LRW)
Descriptors: Authoring Aids (Programming), Behaviorism, Case Studies, Cognitive Processes
Harlow, Steven D.; Johnson, D. LaMont – Educational Technology Review, 1998
Explores three different views of epistemology: Naive View (senses/mind), Piagetean (constructivist), and Wittgensteinian (culture). Examines the relationship between technology, learning, and knowing. Argues that technology will succeed in schools to the extent that it can stimulate the learner to construct relevant stories. (Author/AEF)
Descriptors: Academic Achievement, Cognitive Processes, Computer Assisted Instruction, Computer Uses in Education


