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DeVenney, William S.; And Others – 1971
This text is one of the sequence of textbooks produced for low achievers in the seventh and eighth grades by the School Mathematics Study Group (SMSG). There are eight texts in the sequence, of which this is the sixth. This set of volumes differs from the regular editions of SMSG junior high school texts in that very little reading is required.…
Descriptors: Curriculum, Geometric Concepts, Geometry, Graphs
Mahaffey, Michael L.; McKillip, William D. – 1975
This manual is designed for teachers using units in the Career Oriented Mathematics Program titled: (1) Scale, (2) Apprenticeship: Learning to be a Cement Mason, (3) Textiles, (4) Being Self-Employed: Harvesting and Sale of Pulpwood, and (5) Lumber Yard Employee. Lesson plans, masters for dittos and transparencies, and problem solutions are…
Descriptors: Basic Skills, Career Education, Curriculum, Geometry
Cosler, Norma, Ed. – 1974
This booklet, developed by the Oregon Vo-Tech Math Project, contains a series of mathematical problems related to vocations in agriculture. The mathematical topics on which problems are based include whole numbers; fractions; decimals; percent; use of formulas; charts and graphs; ratio and proportion; solution of equations; perimeter, area, and…
Descriptors: Agriculture, Algebra, Geometry, Individualized Instruction
Reeve, W. D., Ed. – 1933
The first of six chapters in this yearbook discusses articulation between junior and senior high school in terms of several specific content and topic areas. The following chapter is a selected review of research in mathematics education for the years 1915-1931. Investigations are categorized into one of nine areas and a 132-entry bibliography is…
Descriptors: Articulation (Education), Course Content, Curriculum, Geometry
Dennis, John Richard – 1969
A developmental curriculum project is summarized which investigates the feasibility of using the PLATO computer assisted instruction (CAI) system to assist in the presentation of material in a geometry course which requires pictorial responses by the student. Geometrical concepts such as congruence, symmetry, perpendicularity, parallel, triangle,…
Descriptors: Computer Assisted Instruction, Computer Graphics, Curriculum Development, Doctoral Dissertations
United Nations Educational, Scientific, and Cultural Organization, Paris (France). Dept. of Mass Communication. – 1973
The "Television Polytechnic" program of 1966 - 1970 was a joint effort of the Polish Ministry of Higher Education and Polish Television to provide televised education for working students. The subjects taught were those normally included in the first two years of the higher technical schools--math, physics, geometry, chemistry, mechanics…
Descriptors: Adult Education, Adult Students, Chemistry, Educational Television
Coburn, Terrence G. – 1970
This guide accompanies "Where is the Point?"; it contains all of the student materials in SE 015 342 plus supplemental teacher materials. With each lesson there is a list of objectives and equipment and teaching aids, suggested approaches, discussion questions, and answers. Appendices include transparency masters and supplemental…
Descriptors: Analytic Geometry, Curriculum, Geometric Concepts, Graphs
diSessa, Andy – 1975
The LOGO Turtles, originally developed at the Massachusetts Institute of Technology Artificial Intelligence Laboratory for teaching concepts in elementary geometry to primary-age children, can also be used in teaching higher-level mathematics. In the exercises described here, the turtle was programed to traverse curved surfaces. Both geometric and…
Descriptors: Artificial Intelligence, College Mathematics, Computer Oriented Programs, Computers
Niess, Margaret L. – Computing Teacher, 1988
Description of the use of Logo for teaching geometry is the first in a two-part series on the development of Logo tools for doing middle school mathematics. The learning process is discussed, and examples of activities integrating Logo with teacher-prepared procedures are presented. (Author/LRW)
Descriptors: Computer Assisted Instruction, Curriculum Enrichment, Geometry, Integrated Activities
Peer reviewedSteen, Lynn Arthur – Science, 1988
Discusses the changing nature of mathematics. Describes how computers, applications, and cross-fertilization have produced new methods, theories, and models in the mathematical sciences transforming it into a powerful collection of tools for science. (RT)
Descriptors: Computer Oriented Programs, Computers, Development, Geometry
Peer reviewedLappan, Glenda; Even, Ruhama – Arithmetic Teacher, 1988
Provides an overview of research relative to achievement in the area of similarity. Suggests activities which might improve student understanding of the concept. (PK)
Descriptors: Elementary Education, Elementary School Mathematics, Geometric Concepts, Geometry
Peer reviewedSmith, Stuart E.; Walker, William J. – Journal for Research in Mathematics Education, 1988
Reports on a study to determine if female high school students scored as high as male high school students on New York State Regents examinations in mathematics. Results indicated that if female students had an instructional history similar to that of male students they performed as well. (PK)
Descriptors: Algebra, Course Selection (Students), Elective Courses, Enrollment
Peer reviewedNichols, Beverly W. – Mathematics Teacher, 1988
Argues that reasons for teaching geometry before second-year algebra include higher student achievement and attitude and better abstract thinking. (PK)
Descriptors: Algebra, Curriculum Design, Fixed Sequence, Geometry
Peer reviewedMathematics Teacher, 1988
Offers practical tips on teaching secondary mathematics topics. The ideas are classroom-tested approaches that offer new slants on familiar subjects. The topics discussed include the interpretation of mathematical symbolism in concrete terms, ellipses, and vectors. (PK)
Descriptors: Algebra, Analytic Geometry, Geometric Constructions, Graphs
Peer reviewedLotspeich, Richard – Mathematics Teacher, 1988
One method (attributed to Archimedes) of approximating pi offers a simple yet interesting introduction to one of the basic ideas of numerical analysis, an iteration sequence. The method is described and elaborated. (PK)
Descriptors: Calculators, Estimation (Mathematics), Functions (Mathematics), Geometric Concepts


