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Backhouse, John K. – Mathematics in School, 1986
Presents a computer program written in BBC BASIC to create fractal patterns. Discusses program modifications and gives graphic examples of changes. (JM)
Descriptors: Computer Graphics, Courseware, Fractals, Geometry

Austin, Joe Dan – Mathematics and Computer Education, 1990
Shows a series of Euclidean equations using the Euclidean algorithm to get the greatest common divisor of two integers. Describes the use of the equations to generate a series of circles. Discusses computer generation of Euclidean circles and provides a BASIC program. (YP)
Descriptors: Algorithms, College Mathematics, Computer Graphics, Computer Software

Ball, Derek – Computer Education, 1984
PROLOG is a relatively new programing language with graphics capability. In addition, the language has a declarative rather than a procedural structure. Two programs illustrating use of the language in the mathematics classroom are presented. (JN)
Descriptors: Computer Graphics, Computer Programs, Elementary School Mathematics, Elementary Secondary Education
Rieber, Lloyd P. – 1983
This study investigated the effectiveness of LOGO's turtle graphics in both providing a model of systematic thought and in teaching simple geometry to young children in the second grade. The treatment given to 25 second grade students in the experimental group consisted of programming with LOGO's turtle graphics using four Apple II+…
Descriptors: Computer Assisted Instruction, Computer Graphics, Courseware, Geometry
Upitis, Rena – Computing Teacher, 1982
Describes initial encounter of a fifth grade student with Logo, a computer program language designed to develop in the user a knowledge of programing, geometry, arithmetic, and problem solving. A brief description of Logo, programing examples, and two references are included. (EJS)
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Programs, Display Systems
Watt, Dan – Popular Computing, 1982
Describes LOGO, an educational computing language designed at the Massachusetts Institute of Technology for use by young children in developing problem-solving skills. The structure of LOGO, the drawing operations possible using the LOGO "Turtle," LOGO as a learning environment, and the educational philosophy underlying LOGO are…
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Programs, Early Childhood Education
Billstein, Rick – Computing Teacher, 1982
Discusses author's adaptation of the computer language Logo as an aid in teaching college preservice education students programming, geometry, arithmetic, and problem solving. A description of how Logo works and an example of how "turtle geometry" can be used to help teach geometry concepts are included. Four references are listed. (EJS)
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Programs, Computer Science Education

King, James – Journal of Computers in Mathematics and Science Teaching, 1988
Explores the production of shadows for drawings using the LOGO computer language and Affine Geometry. Explains the methodology of the shadowing and lists the Affine Turtle procedures. Provides for different versions of LOGO. (MVL)
Descriptors: College Mathematics, Computer Graphics, Computer Oriented Programs, Computer Uses in Education

Sabbah, Daniel – Cognitive Science, 1985
Summarizes an initial foray in tackling artificial intelligence problems using a connectionist approach. The task chosen is visual recognition of Origami objects, and the questions answered are how to construct a connectionist network to represent and recognize projected Origami line drawings and the advantages such an approach would have. (30…
Descriptors: Artificial Intelligence, Cognitive Processes, Computer Graphics, Geometry

Maddux, Cleborne D. – Computers in the Schools, 1984
Discussion of Logo use to teach children computer programing covers the educational theory behind Logo, how it differs from other programing languages, its educational promise, its graphics capabilities, Logo research, and different versions available. It is argued that educational computing will succeed only if it provides new ways of teaching.…
Descriptors: Computer Assisted Instruction, Computer Graphics, Discovery Learning, Educational Theories
Rieber, Lloyd P. – 1986
This study was conducted to determine whether young children, given the experience of Logo programming, would acquire problem-solving skills and be able to transfer those skills to other areas. The study also investigated Logo's effectiveness in teaching certain fundamental geometric concepts to children who were supposedly not developmentally…
Descriptors: Computer Assisted Instruction, Computer Graphics, Geometry, Grade 2

Niess, Margaret L. – Journal of Computers in Mathematics and Science Teaching, 1988
Considers activities that use LOGO to slide, turn, and flip the "turtle." Uses non-LOGO tools such as cutouts, pattern blocks, and tangrams to enhance the motion work. Provides examples and programs with explanations. (MVL)
Descriptors: Computer Graphics, Computer Software, Computer Uses in Education, Computers

Hillel, Joel; And Others – Educational Studies in Mathematics, 1989
Described is a year-long study of the way a group of six 12-year-old children went about solving a special class of geometric problems using a computer and a limited set of LOGO programing tools. Examines solution strategies deciding whether those strategies led to insights about mathematical relations. (Author/MVL)
Descriptors: Cognitive Development, Computer Graphics, Computer Oriented Programs, Computer Uses in Education
Lindquist, Mary Montgomery, Ed.; Shulte, Albert P., Ed. – 1987
This yearbook contains 20 articles pertaining to geometry instruction. Part 1 considers "Perspectives," with articles on the van Hiele model, resolving dilemmas, implications of using computer graphics, chances of geometry surviving in the secondary curriculum, and role of Euclidean geometry. Part 2 provides "A View of Problem Solving and…
Descriptors: Calculus, Computer Graphics, Educational Change, Elementary Secondary Education
New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction. – 1985
This document describes a mathematics course that uses the computer to solve mathematics problems. It was developed to be used with students who have completed at least one year of general mathematics or are not achieving success in the traditional mathematics program. The course is intended to review, reinforce, and extend concepts included in…
Descriptors: Algebra, Arithmetic, Computer Assisted Instruction, Computer Graphics
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