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Tenenbaum, Harriet R.; To, Cheryl; Wormald, Daniel; Pegram, Emma – Science Education, 2015
Darwinian evolution is difficult to understand because of conceptual barriers stemming from intuitive ideas. This study examined understanding of evolution in 52 students (M = 14.48 years, SD = 0.89) before and after a guided field trip to a natural history museum and in a comparison group of 18 students (M = 14.17 years, SD = 0.79) who did not…
Descriptors: Science Education, Scientific Concepts, Evolution, Genetics
Bivall, Petter; Ainsworth, Shaaron; Tibell, Lena A. E. – Science Education, 2011
This study explored whether adding a haptic interface (that provides users with somatosensory information about virtual objects by force and tactile feedback) to a three-dimensional (3D) chemical model enhanced students' understanding of complex molecular interactions. Two modes of the model were compared in a between-groups pre- and posttest…
Descriptors: Molecular Structure, Science Instruction, Tactual Perception, Educational Technology
Peer reviewedWest, Leo H. T.; Pines, A. Leon – Science Education, 1983
Argues that there is a strong nonrational component in conceptual change, analyzing aspects of the nonrational or aesthetic that are part of the conceptual change process. Shows that the results of Posner et. al. ("Science Education" 66: 211-27, 1982) support this thesis. (Author/JN)
Descriptors: Change, Cognitive Processes, Concept Formation, Epistemology
Peer reviewedStrike, Kenneth A.; Posner, George J. – Science Education, 1983
Responds to comments by West and Pines ("Science Education" 67: 37-39, 1983) on rationality and learning. Discusses two views of learning, distinguishes between what learning depends on and what it is, and offers distinctions between rational and nonrational factors in learning. (Author/JN)
Descriptors: Change, Cognitive Processes, Concept Formation, Epistemology
Hsu, Ying-Shao – Science Education, 2008
To explore the ways in which teacher-guided and student-centered instructional approaches influence students' conceptual understanding of seasonal change, we designed a technology-enhanced learning (TEL) course to compare, by means of concept maps, the learning outcome of students in two groups: a teacher-guided (TG) class (with whole-class…
Descriptors: Concept Mapping, Online Courses, Concept Formation, Foreign Countries
Peer reviewedStuck, Gary B.; Wyne, Marvin D. – Science Education, 1970
Experiment compares the effect of equilibration type training to the effects of S-R reinforcement type training in developing weight-conservation concepts in second and third grade pupils. S-R group performed significantly better than control group on initial posttest for conservation of weight. A measure for permanence of the conservation beliefs…
Descriptors: Cognitive Processes, Concept Formation, Conservation (Concept), Elementary School Science
Peer reviewedAlbert, Edna – Science Education, 1979
Discusses Novak's views that Ausubel's meaningful learning can become an alternative to Piagetian psychology and argues that Ausubel does not provide a theory that can be an alternative to Piaget's developmental psychology. (HM)
Descriptors: Cognitive Development, Cognitive Processes, Concept Formation, Educational Psychology
Peer reviewedNovak, Joseph D. – Science Education, 2002
Suggests that the construction and reconstruction of meanings by learners requires that they actively seek to integrate new knowledge with knowledge already in their cognitive structure. Concept mapping has been used effectively to aid meaningful learning with resulting modification of student's knowledge structures. Asserts that new computer…
Descriptors: Cognitive Processes, Computer Uses in Education, Concept Formation, Concept Mapping
Peer reviewedStavy, Ruth; Berkovitz, Baruch – Science Education, 1980
This study examines the effectiveness exercises based on the cognitive conflict, existing within the child, between two representational systems related to temperature: the qualitative-verbal one and the quantitative-numerical one as these relate to the advancement of children's understanding of the concept of temperature. (Author/DS)
Descriptors: Cognitive Development, Cognitive Processes, Concept Formation, Conflict Resolution
Peer reviewedDhillon, Amarjit Singh – Science Education, 1998
Explores the problem-solving behavior of a university lecturer as well as that of undergraduate and graduate students. Identifies and describes 14 physical and cognitive actions employed in the problem solving. Contains 28 references. (DDR)
Descriptors: Cognitive Processes, Concept Formation, Critical Thinking, Heuristics
Peer reviewedFurio, C.; Guisasola, J. – Science Education, 1998
Analyzes students' main difficulties in learning the concept of electric field. Briefly describes the main conceptual profiles within which electric interactions can be interpreted and concludes that most students have difficulty using the idea of electric field. Contains 28 references. (DDR)
Descriptors: Cognitive Processes, Concept Formation, Electricity, Epistemology
Peer reviewedPosner, George J.; Gertzog, William A. – Science Education, 1982
Discusses the use of the clinical interview in assessing cognitive structure and in investigating conceptual change. They caution much more work is needed to increase the applicability and validity of the clinical interview method and point out that there is a lack of systematization in the analysis of interview transcripts. (Author/PB)
Descriptors: Cognitive Development, Cognitive Processes, Concept Formation, Evaluation Methods
Peer reviewedLowell, Walter E. – Science Education, 1979
Analyzes the meaning of Piaget's concept of abstraction and provides discussion of some of its shortcomings. (HM)
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Processes, Concept Formation
Peer reviewedHalloun, Ibrahim – Science Education, 1998
Presents the epistemology of scientific concepts from a schematic modeling perspective. Discusses students' initial cognitive states based on the level of commensurability between students' own concepts and their scientific counterparts. Contains 87 references. (DDR)
Descriptors: Cognitive Processes, Concept Formation, Elementary Secondary Education, Epistemology
Peer reviewedLawson, Anton E. – Science Education, 1982
The author examines Novak's position that science and mathematics educators should discard Piaget's theory of intellectual development in favor of Ausubel's theory of meaningful learning as a guide for teaching practice and research. (PB)
Descriptors: Advance Organizers, Cognitive Development, Cognitive Processes, Concept Formation
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