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Streibel, Michael J. – 1984
This discussion first analyzes major claims of a cognitive-developmentalist perspective on the use of microcomputers in early childhood education. Five topics are specifically addressed: microcomputers and intellectual structures, microcomputers as cultural events, microcomputers and strategy repetoires, instruction and the self-construction of…
Descriptors: Cognitive Development, Cognitive Structures, Comparative Analysis, Computer Assisted Instruction
Kommers, P. A. M. – 1995
Hypermedia as a learning environment complements traditional instruction as it places the student at a higher level of control. Instead of "wait and see" what the teacher expects the student to learn next, hypermedia stimulates the student to become aware of his/her own cognitive needs and interests. This paper presents a combination of notions…
Descriptors: Cognitive Development, Cognitive Structures, Computer Assisted Instruction, Concept Formation

Babbitt, Beatrice; Usnick, Virginia – Arithmetic Teacher, 1993
Proposes using a hypermedia authoring program as a method for helping students make connections between definitions, representations, and applications of mathematical concepts. Provides an example involving fractions and discusses the advantages of using hypermedia. (eight references and four resources) (MDH)
Descriptors: Cognitive Development, Cognitive Structures, Computer Assisted Instruction, Concept Formation

Euler, Dieter – History Microcomputer Review, 1990
Investigates effect of computer-aided instruction (CAI) on acquisition of communication skills. Sketches a tutorial of the basic communication structure. Recommends confining CAI to cognitive learning because CAI cannot advance communication skills. Maintains that integrating CAI in social arrangements will allow the computer to remain an…
Descriptors: Cognitive Development, Cognitive Structures, Communication Research, Communication Skills
Tall, David – Focus on Learning Problems in Mathematics, 1990
Discussed are possible reasons behind the inconsistencies in the learning of calculus. Implicated are students' beliefs, mathematical paradigms including concept image and concept definition, language use, and curriculum sequencing. (KR)
Descriptors: Abstract Reasoning, Calculus, Cognitive Development, Cognitive Dissonance