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Todd, E. Michelle; Higgs, Cory A.; Mumford, Michael D. – Creativity Research Journal, 2023
Idea evaluation has been identified as a critical step in the creative problem-solving process. Yet, it is unclear how exactly individuals evaluate and compensate for weaknesses in their creative ideas. In the present study, both qualitative and quantitative methods were used to identify the compensatory strategies that undergraduate participants…
Descriptors: Creative Thinking, Concept Formation, Evaluative Thinking, Problem Solving
Sagun, Richard Deanne; Prudente, Maricar – Educational Action Research, 2023
The learning environment plays a crucial role in the promotion of school science. Redesigning the science classroom into a metacognitive learning environment is imperative in developing students' 21st century skills -- communication, collaboration, critical thinking and creative thinking. In this study, we exposed the students to a variety of…
Descriptors: Metacognition, Learning Strategies, Action Research, Science Instruction
Royce, Christine Anne – Science and Children, 2016
Creative thinking is important to scientists and engineers as they frame their work and engage in the practices of their fields. Elementary-age children need opportunities to think about and develop an idea from its inception through to its conclusion to expand their thinking and engage in scientific processes. Generating and expanding on ideas…
Descriptors: Elementary School Students, Creative Thinking, Concept Formation, Thinking Skills

Wan, Wendy W. N.; Chiu, Chi-Yue – Journal of Creative Behavior, 2002
Two experiments involving 44 Hong Kong undergraduates revealed that solving novel conceptual combination problems could enhance performance in a subsequent test of creativity. The evidence also showed that the beneficial effects of solving novel conceptual combination problems were mediated in part by the use of novel conceptual combination…
Descriptors: College Students, Concept Formation, Creative Thinking, Creativity
Clement, John – 1987
In this study 34 spontaneous analogies produced by 16 college freshmen while solving qualitative physics problems are analyzed. A number of the analogies were invalid in the sense that they led to an incorrect answer from the physicist's point of view. However, many were valid, and a few were powerful in the sense that they seemed not only to help…
Descriptors: Analogy, Cognitive Structures, College Science, Concept Formation

Fuson, Karen C.; And Others – Journal for Research in Mathematics Education, 1997
Researchers from four projects with a problem-solving approach to teaching and learning multidigit number concepts and operations describe a common framework of conceptual structures children construct for multidigit numbers, and categories of methods children devise for multidigit addition and subtraction. Conceptions include unitary, decade and…
Descriptors: Classroom Techniques, Cognitive Development, Comprehension, Concept Formation

Carpenter, Thomas P.; Franke, Megan L.; Jacobs, Victoria R.; Fennema, Elizabeth; Empson, Susan B. – Journal for Research in Mathematics Education, 1998
Presents a three-year longitudinal study investigating the development of children's (n=82) understanding of multidigit number concepts and operations in grades one through three by using interview processes. Provides an existence proof that children can invent strategies for adding and subtracting and illustrates both what that invention affords…
Descriptors: Addition, Arithmetic, Concept Formation, Creative Thinking
Dirkes, M. Ann – 1985
Two learning strategies are discussed: (1) fluent and creative idea-production involving concepts and problems, and (2) metacognition, or students' awareness of and direction of their thinking. The sample included college students, as well as teachers who used these strategies in elementary and secondary mathematics classrooms. Techniques for…
Descriptors: Cognitive Style, Concept Formation, Creative Thinking, Decision Making Skills