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Kastner, Bernice – 1978
This text is based on the idea that teachers of mathematics at any level will find it advantageous to be able to point to interesting, useful, and diverse applications of the mathematics they teach. The first chapter describes several graphing techniques used for displaying data and finding meaningful relationships as a result. Subsequent chapters…
Descriptors: Algebra, Calculus, College Mathematics, Geometry
Rogers, Arnold R., Ed.; And Others – 1972
Behavioral objectives for geometry, algebra, computer mathematics, trigonometry, analytic geometry, calculus, and probability are specified for grades 10 through 12. General objectives are stated for major areas under each topic and are followed by a list of specific objectives for that area. This work was prepared under an ESEA Title III…
Descriptors: Behavioral Objectives, Calculus, Computers, Curriculum
Farmaki, Vassiliki; Klaudatos, Nikos; Paschos, Theodorus – International Group for the Psychology of Mathematics Education, 2004
The integration of History in the educational practice can lead to the development of a series of activities exploiting genetic "moments" of the history of Mathematics. Utilizing genetic ideas that developed during the 14th century (Merton College, N. Oresme), activities are developed and mathematical models for solving problems related to uniform…
Descriptors: Teaching Methods, Mathematics Instruction, Scientific Concepts, Mathematical Models
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Jarrett, Joscelyn A. – Mathematics Teacher, 1982
Examples of some geometric illustrations of limits are presented. It is believed the limit concept is among the most important topics in mathematics, yet many students do not have good intuitive feelings for the concept, since it is often taught very abstractly. Geometric examples are suggested as meaningful tools. (MP)
Descriptors: Calculus, College Mathematics, Geometry, Higher Education
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Gilks, Joe – Australian Mathematics Teacher, 1989
Various methods for solving the problem of finding when the hour and minute hand of a watch have the same direction are explored. The relationship of these problems to the educational environment and the maturity of the student are discussed. (CW)
Descriptors: Calculus, Geometry, Mathematical Applications, Mathematics Education
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Dodge, Walter; Goto, Kathleen; Mallinson, Philip – Mathematics Teacher, 1998
Discusses how different meanings can be given to the proof at different levels and branches of mathematics education. (ASK)
Descriptors: Algebra, Calculus, Geometry, Mathematical Concepts
Gine, Roser; Kruse, Diane – Horace, 2007
The authors have attempted to implement "less is more" in a variety of educational contexts. The schools they have been part of include a pilot school in Boston, New Mission High School(New Mission), a charter school in Fitchburg, North Central Charter Essential School (NCCES), and a charter school in Devens, Francis W. Parker Charter…
Descriptors: Mathematics Curriculum, Charter Schools, Course Content, Mathematics Instruction
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Mathematics and Computer Education, 1987
Presented are reviews of several microcomputer software programs. Included are reviews of: (1) Microstat (Zenith); (2) MathCAD (MathSoft); (3) Discrete Mathematics (True Basic); (4) CALCULUS (True Basic); (5) Linear-Kit (John Wiley); and (6) Geometry Sensei (Broderbund). (RH)
Descriptors: Calculus, College Mathematics, Computer Assisted Instruction, Computer Software
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Changming, Li – Mathematics Teacher, 1988
Considers a trigonometric solution to a standard calculus minimization problem. Presents a geometric solution which can be used to solve other trigonometric or algebraic problems. (PK)
Descriptors: Calculus, Geometry, Mathematical Applications, Mathematics Curriculum
Giraldo, Victor; Belfort, Elizabeth; Carvalho, Luiz Mariano – International Group for the Psychology of Mathematics Education, 2004
We expand the theoretical perspective based on the notions of description and conflict, which was previously used to the learning of functions and calculus, to the learning of deductive geometry supported by Dynamic Geometry (DG) environments. Based on prior studies on functions and on the potential role of a DG software, we analyze a case study…
Descriptors: Conflict, Calculus, Geometry, Mathematics Instruction
Mathematical Gazette, 1971
This column contains brief notes on graphing in three dimensions; patterns in Pascal's triangle; plotting graphs by computer; and an application of the hypocycloid. (MM)
Descriptors: Calculus, Computers, Geometry, Graphs
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Austin, Joe Dan – AMATYC Review, 1992
Argues that the derivation of the area of a circle using integral calculus is invalid. Describes the derivation of the area of a circle when the formula is not known by inscribing and circumscribing the circle with regular polygons whose areas converge to the same number. (MDH)
Descriptors: Area, Calculus, Geometry, Mathematical Formulas
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Subramanian, P. R.; And Others – Physics Education, 1991
A way for students to refresh and use their knowledge in both mathematics and physics is presented. By the study of the properties of the "Runge-Lenz" vector the subjects of algebra, analytical geometry, calculus, classical mechanics, differential equations, matrices, quantum mechanics, trigonometry, and vector analysis can be reviewed. (KR)
Descriptors: Algebra, Astronomy, Calculus, Geometry
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Greenwald, Sarah J.; Nestler, Andrew – PRIMUS, 2004
"The Simpsons" is an ideal source of fun ways to introduce important mathematical concepts, motivate students, and reduce math anxiety. We discuss examples from "The Simpsons" related to calculus, geometry, and number theory that we have incorporated into the classroom. We explore student reactions and educational benefits and difficulties…
Descriptors: Geometry, Number Concepts, Calculus, Mathematics Instruction
Alaska State Dept. of Education, Juneau. Office of Curriculum Services. – 1986
This is the second edition of a curriculum guide for secondary school mathematics. It is one of a series intended to serve as a model for Alaskan school districts as they develop and review their curriculum documents. Listed are topics and concepts, learning outcomes and objectives, and sample learning activities. The learning activities are…
Descriptors: Algebra, Calculus, Educational Objectives, Geometry
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