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DiCarlucci, Joseph A. – School Science and Mathematics, 1995
Presents a secondary classroom investigation into mathematical modeling techniques with the graphing calculator using a match stick puzzle. Geometric models, through their corresponding area formulas, are constructed, tested, and analyzed graphically to fit specified problem conditions. (Author/MKR)
Descriptors: Geometry, Graphing Calculators, Graphs, Mathematical Models
Pope, Sue – Micromath, 2003
Discusses drawing a Pythagoras diagram in the context of how computer software influences mathematical understanding. Requires different understandings of what the diagram involves in order to be successfully completed in different environments. Suggests that while LOGO is often expected to be easier, a graphic calculator can be less demanding.…
Descriptors: Computer Software, Elementary Secondary Education, Geometry, Graphing Calculators
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Farrell, Ann M. – Ohio Journal of School Mathematics, 1995
Students can learn to make algebra, trigonometry, and geometry work for them by using matrices to rotate figures on the graphics screen of a graphing calculator. Includes a software program, TRNSFORM, for the TI-81 graphing calculator which can draw and rotate a triangle. (MKR)
Descriptors: Algebra, Computer Software, Geometry, Graphing Calculators
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Helfgott, Michel; Simonsen, Linda M. – Mathematics and Computer Education, 1998
Presents an activity to investigate physico-mathematical concepts and provide mathematics arguments that are very close to a proof with the advent and availability of powerful technology. Demonstrates without using calculus how the law of reflection for parabolas is derived from Fermat's principle of least time. (ASK)
Descriptors: Educational Technology, Geometry, Graphing Calculators, Higher Education
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Brown, Alan R. – Mathematics Teacher, 1999
Introduces a project in which students use dynamic geometry software with a TI-92 graphing calculator to study geometric constructions. Concludes that interactive technology can enhance the geometry curriculum and better meet the needs of visual and tactile learners than the traditional approach. (ASK)
Descriptors: Educational Technology, Geometry, Graphing Calculators, Mathematics Activities
Ryan, Walter F. – 1998
This book is designed to supplement The University of Chicago School Mathematics Project's (UCSMP) Transition Mathematics textbook. The content and questions in this book have been sequenced to specific geometry lessons in the Transition Mathematics text. All geometry explorations are done with the TI-92 calculator. This book is organized around…
Descriptors: Educational Technology, Geometric Concepts, Geometry, Grade 7
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Jones, Troy; Jackson, Steven – Mathematics Teacher, 2001
Describes a rugby problem designed to help students understand the maximum-minimum situation. Presents a series of explorations that locate an optimal place for kicking the ball to maximize the angle at the goalposts. Uses interactive geometry software to construct a model of the situation. Includes a sample student activity. (KHR)
Descriptors: Calculus, Geometry, Graphing Calculators, Interdisciplinary Approach
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Tobin, Patrick – Teaching Mathematics and Its Applications, 1998
Argues that teachers and lecturers need to identify essential skills which are technology-independent and need to determine the most effective use of new technology in the classroom. Examines prospects for change using the newer technology of graphing calculators for mathematics courses. Contains 15 references. (ASK)
Descriptors: Algebra, Calculus, Educational Change, Educational Technology
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Embse, Charles Vonder; Yoder, Vernon W. – Mathematics Teacher, 1998
Discusses the interconnection among the various modes of the TI-92 calculator (geometry, data graphing, function graphing, and algebra) and how the power of visualization is extended to provide multiple approaches to complex problem situations. Provides a graphing problem with illustrations and results. (AIM)
Descriptors: Algebra, Functions (Mathematics), Geometry, Graphing Calculators
Widmer, Connie; Sheffield, Linda – Learning & Leading with Technology, 1998
U.S. mathematics education has been criticized for being too broad. This article examines ways middle school students use simple problems and situations to foster a deeper understanding of underlying concepts. Presents a sample area and perimeter problem, describes extending the problem using tiles to determine minimum perimeter, and discusses…
Descriptors: Area, Geometry, Graphing Calculators, Graphs
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Cyrus, Vivian Flora; Flora, Ben V. – Mathematics Teacher, 2000
Uses a discovery lesson for determining the area of an equilateral triangle given a side length as an illustration of how to introduce features of the TI-92 graphing calculator geometry package within a mathematical context. (KHR)
Descriptors: Area, Curriculum Development, Data Collection, Discovery Learning
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Jones, Graham A.; And Others – Mathematics Teaching in the Middle School, 1995
Middle-school students were asked to determine the dimensions of a hotel atrium so that guests could enjoy the maximum area of scenic view, given that 650 feet of brass railing could be used around each floor. Several solution approaches are described. (MKR)
Descriptors: Algebra, Area, Elementary Education, Geometry
McNamara, Timothy J. – Corwin Press, 2006
Helping teachers envision how math standards can be integrated into the secondary classroom, this book presents engaging activities and ready-to-use lessons aligned with NCTM content and process standards. This user-friendly book by mathematics educator Timothy J. McNamara is filled with a generous collection of lessons for each of the ten NCTM…
Descriptors: Probability, Elementary Secondary Education, Data Analysis, Graphing Calculators
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Mathematics Teacher, 1990
Presented are three ideas for teaching mathematical concepts including "The Gymnasium- A Dynamic Classroom for Teaching Slope,""The Graphics Calculator: A Helpful Tool," and "The Point-Slope Equation Revisited." (CW)
Descriptors: Elementary School Mathematics, Elementary Secondary Education, Enrichment Activities, Experiential Learning