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Hirsch, Jenna – MathAMATYC Educator, 2012
A facility with signed numbers forms the basis for effective problem solving throughout developmental mathematics. Most developmental mathematics textbooks explain signed number operations using absolute value, a method that involves considering the problem in several cases (same sign, opposite sign), and in the case of subtraction, rewriting the…
Descriptors: Mathematics Education, Number Concepts, Number Systems, Numbers
Debnath, Lokenath – International Journal of Mathematical Education in Science and Technology, 2011
This article deals with a brief history of Fibonacci's life and career. It includes Fibonacci's major mathematical discoveries to establish that he was undoubtedly one of the most brilliant mathematicians of the Medieval Period. Special attention is given to the Fibonacci numbers, the golden number and the Lucas numbers and their fundamental…
Descriptors: Mathematics Education, Numbers, Science Education History, Career Development
Hong, Dae S. – International Journal of Mathematical Education in Science and Technology, 2011
In its mathematics standards, National Council of Teachers of Mathematics (NCTM) states that problem solving is an integral part of all mathematics learning and exposure to problem solving strategies should be embedded across the curriculum. Furthermore, by high school, students should be able to use, decide and invent a wide range of strategies.…
Descriptors: Mathematics Education, Testing, Problem Solving, Mathematics Teachers
Wander, Roger; Pierce, Robyn – Australian Mathematics Teacher, 2009
In early 2008 researchers from the University of Melbourne's "New Technologies for Teaching Mathematics" project created a lesson for the Year 10 students at their Victorian research schools. Two important goals of secondary school mathematics education are to build students' conceptual knowledge and to teach students to think…
Descriptors: Secondary School Mathematics, Animals, Mathematics Education, Problem Sets
Alberta Dept. of Education, Edmonton. Curriculum Branch. – 1987
This monograph was developed with the intention of addressing the concerns of high school mathematics teachers in Alberta (Canada) who want to base their programs on problem solving but have questions about effective and efficient ways to do so. Considered are the most basic philosophical questions, and a framework is provided to use in solving…
Descriptors: High Schools, Mathematics Education, Mathematics Instruction, Mathematics Skills
Olds, Edwin G., Comp; And Others – 1942
This yearbook is a reference source of direct applications of mathematics for use in grades 7-12. Topics are listed alphabetically in each of four sections: arithmetic, algebra, geometry, and trigonometry. An explanation is given as to the plan of the book, making the location of desired material easier, and an index is included. In many cases the…
Descriptors: Algebra, Elementary School Mathematics, Geometry, Mathematical Applications
Dobbs, David E. – Mathematics and Computer Education, 2005
The author discusses the definition of the ordinary points and the regular singular points of a homogeneous linear ordinary differential equation (ODE). The material of this note can find classroom use as enrichment material in courses on ODEs, in particular, to reinforce the unit on the Existence-Uniqueness Theorem for solutions of initial value…
Descriptors: Calculus, Mathematical Formulas, Mathematics Education, College Mathematics
Peer reviewedStarkey, Mary Ann – Arithmetic Teacher, 1989
Describes the use of calculators for the teaching of mathematics in grade 1. (YP)
Descriptors: Calculators, Elementary Education, Elementary School Mathematics, Grade 1
Cannon, Lawrence O.; Elich, Joe – 1989
In most mathematics problem solving work, students' motivation comes from trying to please their teachers or to earn a good grade. The questions students must tackle are almost never generated by their own interest. Seven open-ended college algebra-level problems are presented in which the solution of one question suggests other related questions.…
Descriptors: Algebra, College Mathematics, Higher Education, Mathematical Concepts
Peer reviewedTaback, Stanley F. – Mathematics Teacher, 1988
Argues that there is a sense of surprise and wonder that can result from looking back at problem solutions and there is a potential for then creating unexpected, even memorable, alternative solutions. Example problems with routine solutions and alternative approaches uncovered while "looking back" at the solution are given. (PK)
Descriptors: Creative Thinking, Learning Strategies, Mathematics Curriculum, Mathematics Education
Peer reviewedThompson, H. Bradford – Journal of Computers in Mathematics and Science Teaching, 1992
This report includes the framework, the experiences, the benefits, student attitude survey results, typical computer screen output, and BASIC program listings for PROBLEM, a general computer system for homework management in a time-sharing environment that can handle any exercise in which students must calculate numerical results from numerical…
Descriptors: Computation, Computer Assisted Instruction, Computer Managed Instruction, Mathematical Applications
Sowder, Larry – 1988
This project was based on recent interview research which suggested that in choosing operations for story problems in mathematics many students are guided by computational considerations rather than meanings for the operations. This project aimed to refine the catalogue of strategies used by students and to design and test instructional materials…
Descriptors: Computation, Curriculum Development, Curriculum Evaluation, Elementary Education
Peer reviewedGreenes, Carole – Journal of Education, 1995
Introduces the constructivist theory of mathematical learning, and illustrates its application in a curriculum focusing on fundamental concepts. How knowledge is constructed, how concepts mature, and what it means to learn and to know mathematics are presented. Pedagogical implications of adopting a constructivist perspective on knowledge and…
Descriptors: Cognitive Development, Cognitive Processes, Concept Teaching, Constructivism (Learning)

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