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Tuovinen, Juhani E.; Hill, Douglas M. – School Science and Mathematics, 1992
Offers LOGO as an environment that facilitates the development of cognitive strategies useful in problem solving. Presents LOGO activities requiring students to combine preprogramed procedures to produce worksheet patterns. Using this approach promotes using LOGO as a vehicle for problem solving and results in a more positive attitude toward LOGO.…
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Style, Computer Assisted Instruction

Owens, John E. – Journal of Computers in Mathematics and Science Teaching, 1990
This article describes a way in which the computer can be used by students in exploring patterns and solving problems associated with number theory. BASIC programs are described, along with classroom questions and procedures that aid in implementation. (Author/KR)
Descriptors: Cognitive Development, Computer Assisted Instruction, Computer Software, Instructional Materials

Sutherland, Rosamund – For the Learning of Mathematics, 1991
Discusses concerns for mathematics education research on algebra and requestions methods that focus on the Piagetian concept of cognitive obstacles. Suggests the use of computer-based environments to develop the concept of variable and offers research findings indicating that experiences working with variables in LOGO influences student…
Descriptors: Algebra, Cognitive Development, Cognitive Dissonance, Cognitive Processes
Donelson, Frederick Loye – 1990
This study investigated the speed of encoding and rotation of images during simple spatial rotational operations to discover any similarities or differences in groups of differing spatial ability. This project was subdivided into five basic subproblems. First, research was done to arrive at a simple, easily testable information processing model…
Descriptors: Academic Ability, Artificial Intelligence, Cognitive Ability, Cognitive Development

Weller, Herman G.; Johnson, Vivian – Journal of Computers in Mathematics and Science Teaching, 1992
Describes a unit for teaching exponential change in a noncalculus physics course by having students write recursive procedures in LOGO to graphically represent linear and exponential change. Summarizes the experience of implementing the unit in a segment on radioactive decay. Modifications to the unit are suggested for teaching exponential change…
Descriptors: Cognitive Development, Computer Uses in Education, Curriculum Evaluation, Exponents (Mathematics)