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What Works Clearinghouse, 2016
"University of Chicago School Mathematics Project" ("UCSMP") is a core mathematics curriculum that emphasizes problem solving, real-world applications, and the use of technology. The curriculum is based on a student-centered approach with a focus on active learning that incorporates reading and uses a flexible lesson…
Descriptors: Mathematics Instruction, Mathematics Curriculum, Problem Solving, Relevance (Education)
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

Alper, Lynne; And Others – Educational Leadership, 1996
The Interactive Mathematics Program is part of a National Science Foundation effort to design a comprehensive, standards-based high school mathematics curriculum. IMP's four-year program, which replaces the traditional sequence, involves little memorization, integrates traditional material with topics such as probability and statistics, and uses…
Descriptors: Algebra, Geometry, High Schools, Mathematics Curriculum

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
Goodman-Petrushka, Sharon – 1988
This workbook was designed to be used as a study aid in any course covering the various techniques of indefinite integration. Many students are able to master each individual technique, but upon encountering an integral on an exam, they often have difficulties in determining which technique to use. By working through all of the exercices in this…
Descriptors: Calculus, College Mathematics, Drills (Practice), Functions (Mathematics)

Barbeau, Edward J. – Mathematics Teacher, 1988
Argues for teaching different approaches to solving problems. Using a geometric example, alternative solutions are given which use synthetic geometry, transformation geometry, analytic geometry, complex numbers, trigonometry or vectors. (PK)
Descriptors: Geometric Concepts, Geometry, Mathematics Curriculum, Mathematics Education
Frandsen, Henry – Viewpoints in Teaching and Learning, 1981
The computer has enormous potential for enhancing the secondary trigonometry curriculum. Areas that can be improved through use of the computer include: solutions of triangles, inductive investigations of functions, graphs of functions, and solution of trigonometric identities. (JN)
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Oriented Programs, Futures (of Society)
New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction. – 1986
This document outlines part one of the third year course of the newly implemented New York State Mathematics Curriculum. The three-year Sequential Mathematics sequence designed by New York State is a move in the direction of fusing the formerly separate topics found in algebra, geometry, and intermediate algebra/trigonometry, and introducing…
Descriptors: Algebra, Critical Thinking, Curriculum Guides, Geometry
New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction. – 1986
This document outlines part two of the third year course of the newly implemented New York State Mathematics Curriculum. The three-year Sequential Mathematics sequence designed by New York State is a move in the direction of fusing the formerly separate topics found in algebra, geometry, and intermediate algebra/trigonometry, and introducing…
Descriptors: Algebra, Critical Thinking, Curriculum Guides, Geometry

Hirsch, Christian R.; And Others – Mathematics Teacher, 1991
Discussed is the place and teaching of trigonometry in a NCTM Standards-based mathematics curriculum. Presented is how these standards can be implemented in a technology-rich environment that encourages reasoning, communication, problem solving, and confidence building. Examples focus on functions, graphical sense, modeling, and identities. (KR)
Descriptors: Calculators, Computer Assisted Instruction, Graphs, Learning Activities
New York Inst. of Tech., Old Westbury. – 1987
This document contains the course syllabus and 12 independent practice modules for a college level mathematics course designed to provide the necessary foundation for success in calculus, develop logical thinking skills, and enhance analytic skills through problem solving. Topics include relations and functions; inequalities; complex numbers;…
Descriptors: Algebra, Behavioral Objectives, College Mathematics, Course Content
Bresnan, Margaret; And Others – 1985
The Sequential Mathematics Sequence provides an integrated course of study for grades 9-11 in New York City. This document presents lesson plans for part two of the second-year course, designed for tenth grade. The curriculum interweaves algebra, geometry, logic, probability, statistics, and trigonometry, with the emphasis in the 60 lessons in…
Descriptors: Algebra, Critical Thinking, Curriculum Guides, Geometry
Arizona State Dept. of Education, Phoenix. – 1992
This document ties the essential skills needed in mathematics to the National Council of Teachers of Mathematics' (NCTM) Curriculum and Evaluation Standards to help facilitate future curriculum development. The overall goal for the 21st century is to make mathematical power a reality for all students. The rationale for this document can be found…
Descriptors: Algebra, Calculus, Curriculum Development, Educational Assessment