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Peer reviewedMumford, Michael D.; Feldman, Jack M.; Hein, Michael B.; Nagao, Dennis J. – Journal of Creative Behavior, 2001
This study with 432 college students examined how variables influence the relative performance of groups and individuals on creative problem-solving tasks. Having more ideas available (through a priming manipulation) led to better individual performance. Group performance, however, was enhanced by training appropriate to problem content that…
Descriptors: College Students, Creative Thinking, Creativity, Higher Education
Peer reviewedJausovec, Norbert – Intelligence, 2000
Studied differences in cognitive processes related to creativity and intelligence using EEG coherence and power measures in the lower and upper alpha bands. Results of 2 experiments involving 49 and 48 right-handed student teachers suggest that creativity and intelligence are different abilities that also differ in the neurological activity…
Descriptors: Adults, Brain, Cognitive Processes, Creativity
Peer reviewedPerkins, David – Educational Leadership, 2004
The strategies that expose learners to the large volume of knowledge, enables them for creative thinking, self-management and deep reading. The different ways of creating knowledge with the help of creativity, communication, organization, problem solving and decision-making are discussed.
Descriptors: Creative Thinking, Creativity, Educational Strategies, Self Management
Tousignant, Wayne; Stanley, Darren; Salinitri, Geri; Smith, Kara – Collected Essays on Learning and Teaching, 2008
In 1994, the National Arts Education Association created a research agenda to address major research issues in the field of visual arts education for the purpose of examining, negotiating, and modifying commonly held beliefs in the field of art education. Research by arts educators has done much to inform visual arts education theory and practice,…
Descriptors: Educational Research, Art Education, Visual Arts, Curriculum Development
Partnership for 21st Century Skills, 2008
This 21st Century Skills Map is the result of hundreds of hours of research, development and feedback from educators and business leaders across the nation. The Partnership for 21st Century Skills has issued this map for the core subject of Science.
Descriptors: Core Curriculum, Science Education, Skill Development, Critical Thinking
Stoyanov, Slavi; Kirschner, Paul – Journal of Research on Technology in Education, 2007
This study investigated the effect of two problem-solving techniques: (a) free-association with a direct reference to the problem, called shortly direct, and (b) free-association with a remote and postponed reference to the problem, called remote, on fluency and originality of ideas in solving ill-structured problems. The research design…
Descriptors: Creativity, Cognitive Style, Instructional Design, Problem Solving
Mumford, Michael D.; Blair, Cassie; Dailey, Lesley; Leritz, Lyle E.; Osburn, Holly K. – Journal of Creative Behavior, 2006
The generation of new ideas is a complex demanding activity involving multiple processing operations. As is the case in other forms of complex cognition, biases in process execution can induce errors that limit peoples' ability to generate viable new ideas. In the present effort, the nature of these biases, and their impact on creative thought,…
Descriptors: Creativity, Creative Thinking, Comparative Analysis, Problem Solving
Mann, Eric L. – Journal for the Education of the Gifted, 2006
For the gifted mathematics student, early mastery of concepts and skills in the mathematics curriculum usually results in getting more of the same work and/or moving through the curriculum at a faster pace. Testing, grades, and pacing overshadow the essential role of creativity involved in doing mathematics. Talent development requires creative…
Descriptors: Academically Gifted, Mathematical Aptitude, Creativity, Mathematics
Peer reviewedGordon, W. J. J. – Journal of Creative Behavior, 1974
Author presented a selection of examples of the role of connective analogies in invention/discovery. (Author/RK)
Descriptors: Association (Psychology), Cognitive Processes, Concept Formation, Creative Activities
Kelly, Verne C.; Steinberg, Monica – 1984
The paper describes Project ICE (Institute for Creative Education), an approach to developing students' divergent thinking skills through a creative problem-solving process. Project ICE is designed to help students of all backgrounds and ability levels benefit by growth in fluent, flexible, original, and elaborate responses to problems or tasks.…
Descriptors: Creative Thinking, Creativity, Curriculum, Divergent Thinking
Treffinger, Donald J.; Ripple, Richard E. – 1968
The effectiveness of the Productive Thinking Program in developing creative thinking and problem solving abilities among 370 pupils in grades four through seven was examined. An exploratory investigation of the program's instructional content was also undertaken. At all four grade levels studied, instructed pupils' scores on Covington's Childhood…
Descriptors: Creativity, Elementary School Students, Elementary Schools, Instructional Innovation
Peer reviewedMettal, Walter G. – Journal of Creative Behavior, 1977
Descriptors: Creativity, Cybernetics, Feedback, Futures (of Society)
Peer reviewedOlmo, Barbara G. – High School Journal, 1977
In a course, Developing Creativity in Teaching, graduate students, many of them experienced teachers of varied subjects in junior and senior high school, practiced some methods which facilitate creative learning. (Author)
Descriptors: Creative Teaching, Creativity, Criteria, Educational Research
Cycenas, Frank – Gifted Child Today (GCT), 1987
The bibliography lists 101 resources dealing with creativity and creative development. Age levels range from under 12 years to adult. Approaches include "how-to" literature and technical information. Areas covered include art, advertising, problem solving, use of tools, use of materials, use of mediums, use of color, techniques, format, and…
Descriptors: Adults, Books, Creativity, Disabilities
Peer reviewedSubotnik, Rena F. – Journal of Creative Behavior, 1988
A study of 147 Westinghouse Science Talent Search winners classified 57 subjects as independent problem finders. They were asked to select five of the 31 factors in Guilford's Structure of Intellect model which best described the process of choosing their research question. Implications for educating secondary science students are discussed. (VW)
Descriptors: Cognitive Processes, Cognitive Style, Creativity, Models

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