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Viktor Wang, Editor – IGI Global, 2025
Artificial Intelligence (AI) integration in andragogical education offers significant enhancements to the learning experience for adult learners. By utilizing AI-powered platforms, instructors can provide personalized learning paths that adapt to the unique needs, interests, and goals of each individual. These systems can analyze performance data…
Descriptors: Andragogy, Artificial Intelligence, Computer Software, Technology Integration
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Brady, Richard R. – School Science and Mathematics, 1991
Student problem-solving behaviors are analyzed using a four-dimensional framework with related detrimental factors identified for each dimension. General approaches and specific techniques developed to address negative factors are reviewed. Examined are means of developing the components of problem-solving teaching. (KR)
Descriptors: Cognitive Development, Critical Thinking, Educational Strategies, Elementary Secondary Education
Roberts, Maxwell J.; Erdos, George – Educational Psychology: An International Journal of Experimental Psychology, 1993
Asserts that metacognition is one of the most important developments in the contemporary study of learning. Proposes a theoretical analysis of a number of interrelated issues with regard to their importance for metacognition. Focuses on strategy selection in light of the impasse-based theories of problem solving. (CFR)
Descriptors: Cognitive Development, Cognitive Processes, Concept Formation, Educational Research
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Johnson, David W.; Johnson, Roger T. – American Behavioral Scientist, 1993
Asserts that whether students engage in creative and critical thinking depends on how teachers structure the learning situation. Contends that using "academic controversy" among students provides a basis for deliberate discourse and creative problem solving. Presents a five-step instructional model to guide students. (CFR)
Descriptors: Cognitive Processes, Cooperative Learning, Creative Thinking, Critical Thinking
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Borasi, Raffaella – For the Learning of Mathematics, 1987
Suggests that student errors in mathematics be used as motivational devices and starting points for mathematical explorations, involving problem solving and problem posing activities. It is further suggested that errors can foster a deeper and more complete understanding of mathematical content and nature of mathematics itself. (PK)
Descriptors: Educational Strategies, Elementary School Mathematics, Elementary Secondary Education, Error Patterns
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Hanley, Gerard L. – Teaching of Psychology, 1995
Contends that, to become a better critical thinker, one must not only develop expert thinking skills, but also become an expert at choosing the best skills for the particular situation. Reports on a study of critical thinking and metacognition among 65 college students. (CFR)
Descriptors: Classroom Techniques, Cognitive Processes, Cognitive Psychology, Critical Thinking
Plomp, Tjeerd, Ed.; Ely, Donald P., Ed. – 1996
This encyclopedia provides scholarly information on all aspects of educational technology. It treats integrating educational technology as a problem-solving process. The book consists of 123 papers by numerous authors, divided into five sections. Section 1, "Educational Technology: Definition and Conceptual Background," introduces educational…
Descriptors: Computer Uses in Education, Current Events, Educational Media, Educational Strategies
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Paul, Richard W. – American Behavioral Scientist, 1993
Maintains that educational reform is related directly to issues of creativity and critical thinking. Contends that the creative dimension of thinking is fostered best by joining it with the critical dimension. Includes a figure and eight basic conditions implicit in creative, critical acts of the mind. (CFR)
Descriptors: Cognitive Processes, Concept Formation, Cooperative Learning, Creative Thinking
Lipman, Matthew – Educational Psychology: An International Journal of Experimental Psychology, 1993
Asserts that promotion of classroom thinking generally is assumed to be the sole responsibility of the teacher. Suggests using a text that portrays students engaged in reasoning and other interventions to stimulate the growth of critical and creative thinking. (CFR)
Descriptors: Concept Formation, Cooperative Learning, Course Content, Creative Thinking
Fox, Michael E. – 1988
The purpose of this report is to see what the literature has to say about motivation and group interactions, both with and without the assistance of computers. The ultimate purpose is to examine in detail how the emerging ideas can be used to enhance the teaching and learning of arithmetic using computers. This report is divided into the following…
Descriptors: Computer Assisted Instruction, Cooperative Learning, Discovery Learning, Educational Strategies
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VanSickle, Ronald L. – Journal of Social Studies Research, 1990
Reviews the information-processing approach to problem solving to apply research findings to cooperative problem solving in social studies classes. Provides examples of how experts and novices solved problems in a study on domestic Soviet affairs. Delineates a problem-solving instructional strategy by explaining nine guidelines that employ…
Descriptors: Cognitive Psychology, Cooperative Learning, Educational Research, Educational Strategies
Cheren, Mark E., Ed.; And Others – 1987
This collection, which should be of particular interest to adult education teachers, trainers, and researchers, suggests new models for attaining learning management skills to facilitate on-the-job learning. In the introduction, Mark E. Cheren discusses the need for new models and terms and examines the concepts of learning management and…
Descriptors: Adult Education, Adult Learning, Corporate Education, Educational Strategies
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Doolittle, John H. – Teaching of Psychology, 1995
Maintains that cognitive flexibility, the ability to generate many possible solutions, is identified as the most critical aspect of creativity training. Describes the use of word tables, computer games, and riddles to develop cognitive flexibility. Presents evidence that these methods are effective in enhancing creative and critical thinking…
Descriptors: Classroom Techniques, Cognitive Processes, Cognitive Psychology, Computer Uses in Education