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Jerome, Lawrence – International Journal for Technology in Mathematics Education, 2012
Discrete Mathematics instructors and students have long been struggling with various labelling and scanning algorithms for solving many important problems. This paper shows how to solve a wide variety of Discrete Mathematics and OR problems using assignment matrices and linear programming, specifically using Excel Solvers although the same…
Descriptors: Mathematical Applications, Computer Software, Computer Assisted Instruction, Mathematics Instruction
de Castro, Christopher H. – ProQuest LLC, 2011
This study explored the development of student's conceptual understandings of limit and derivative when utilizing specifically designed computational tools. Fourteen students from a secondary Advanced Placement Calculus AB course learned and explored the limit and derivative concepts from differential calculus using visualization tools in the…
Descriptors: Advanced Placement Programs, Problem Solving, Programming, Mathematical Concepts
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Bunch, John M. – Journal of Information Systems Education, 2009
This paper presents a goal-based scenario approach to teaching introductory database concepts to undergraduates using two different scaffolding methods. One method, termed "worked-out examples," attempts to reduce extraneous cognitive load by requiring students to complete increasingly complex missing parts of worked out examples. The other…
Descriptors: Cognitive Processes, Difficulty Level, Undergraduate Students, Scaffolding (Teaching Technique)
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Ecker, Michael W. – Mathematics and Computer Education, 2005
In this article, the author proves a theorem about polynomial zeros, but the focus is on how the theorem is integrated into a QuickBASIC computer program, and how that program answers the questions of the theorem--a unification of mathematics and computer programming. For a given polynomial, how can one overcome assorted problems in finding zeros…
Descriptors: Computers, Programming, Intervals, Computer Software
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Scarlatos, Lori L. – Interactive Technology and Smart Education, 2006
Educators recognize that group work and physical involvement with learning materials can greatly enhance the understanding and retention of difficult concepts. As a result, math manipulatives--such as pattern blocks and number lines--have increasingly been making their way into classrooms and children's museums. Yet without the constant guidance…
Descriptors: Museums, Mathematical Concepts, Mathematics Instruction, Problem Solving