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Kurz, Terri L.; Serrano, Alejandra – Teaching Children Mathematics, 2015
To support students' development of concepts in mathematics, the use of technology is often encouraged (Common Core State Standards Initiative [CCSSI] 2010). Technology can contextualize learning and provide a meaningful setting for mathematical ideas. Most teachers are supportive regarding the use of technology to encourage learning and…
Descriptors: Mathematics Instruction, Mathematical Concepts, Concept Formation, Teaching Methods
Tuchscherer, Tyson – National Aeronautics and Space Administration (NASA), 2010
The Calculator Controlled Robots activities are designed to engage students in hands-on inquiry-based missions. These activities address National science and technology standards, as well as specifically focusing on mathematics content and process standards. There are ten missions and three exploration extensions that provide activities for up to…
Descriptors: Graphing Calculators, Educational Technology, Robotics, Discovery Learning
Actuarial Foundation, 2012
The purpose of these modules is to provide an introduction to the world of probability and statistics to accelerated mathematics students at the high school level. The modules also introduce students to real world math concepts and problems that property and casualty actuaries come across in their work. They are designed to be used by teachers and…
Descriptors: Probability, Statistics, Learning Modules, Calculus

Lee, O. T. – Australian Senior Mathematics Journal, 1998
Argues that the calculator is fallible as a repository of mathematical knowledge. Suggests that the calculator should be considered not only a labor-saving device but a learning device. Provides examples of the use of calculators as a learning device. Contains 16 references. (ASK)
Descriptors: Calculators, Educational Technology, Graphing Calculators, Mathematics Activities

Drijvers, Paul; Doorman, Michiel – Journal of Mathematical Behavior, 1996
Covers a project conducted by the Freudenthal Institute in which observation of student behavior supported the premise that the graphics calculator can stimulate the use of realistic contexts, the exploratory approach to mathematics, a more integrated view of mathematics, and more flexible behavior in problem solving. (AIM)
Descriptors: Calculators, Computation, Graphing Calculators, Graphs

Kissane, Barry – Australian Mathematics Teacher, 1996
Illustrates the ease with which programs occupying only a single command line of a graphics calculator can be constructed. (MKR)
Descriptors: Educational Technology, Graphing Calculators, Programming, Secondary Education

Vonder Embse, Charles; Engebretsen, Arne – Mathematics Teacher, 1996
Discusses how to set the size of the viewing window for a graphing calculator so that it is "user friendly" for all levels of students. Visually correct graphs, numerical interpretation, determining screen size, and setting friendly windows are addressed. (AIM)
Descriptors: Graphing Calculators, Graphs, Mathematics Instruction, Secondary Education

Engebretsen, Arne – Mathematics Teacher, 1997
Presents strategies that utilize graphing calculators and computer software to help students understand the concept of minimizing the squared residuals to find the line of best fit. Includes directions for least-squares drawings using a variety of technologies. (DDR)
Descriptors: Calculators, Classroom Techniques, Computer Uses in Education, Data Analysis
McBroom, Douglas C. – 2001
This guide provides students with practice for all the major types of graphs they are likely to encounter. It includes information on graphs of various families of algebraic functions; bar, line, and circle graphs; the creation, reading, and interpretation of graphs; and the use of graphing calculators. (MVL)
Descriptors: Algebra, Data Interpretation, Elementary Secondary Education, Graphing Calculators

Pelech, James; Parker, Jacquelyn – Mathematics Teacher, 1996
Uses a graphing calculator to demonstrate that dividing by a fraction is the same as multiplying by the reciprocal. Students graph a division problem and an equivalent problem, multiplying by the reciprocal. They find that the graphs are the same. (SKS)
Descriptors: Algebra, Division, Fractions, Graphing Calculators

Ruthven, Kenneth – Mathematics in School, 1994
Discusses planetary motion and universal gravitation using a graphing calculator. Includes program and data. (MKR)
Descriptors: Astronomy, Graphing Calculators, Mathematics Education, Mathematics Instruction

Kissane, Barry – Australian Senior Mathematics Journal, 1997
Introduces the Sharp EL-9600 graphing calculator and its capabilities, and discusses its possible uses in mathematics classrooms. (ASK)
Descriptors: Educational Technology, Elementary Secondary Education, Graphing Calculators, Mathematics Activities

Ayoub, Ayoub B. – Mathematics and Computer Education, 1996
Examines the relation between the sequence of approximations to the square root of a number and the harmonic, geometric, and arithmetic means using the TI-85 graphing calculator. (MKR)
Descriptors: Algorithms, Estimation (Mathematics), Graphing Calculators, High Schools

Iossif, Gillian – Teaching Statistics, 1999
Explores some ideas for the imaginative use of a graphics calculator in introductory statistics teaching. (Author/ASK)
Descriptors: Graphing Calculators, Mathematics Instruction, Secondary Education, Statistics
Inglis, Michaela; Caldwell, Will – Australian Mathematics Teacher, 2007
For mathematics teachers who are continually looking for ways in which to engage their students in the learning process, the capabilities offered by technology answer the call. Whether the technology comprises computer based applications or graphics calculators, often boring aspects can be bypassed so that students can work on the "good…
Descriptors: Adolescents, Teaching Methods, Mathematics Teachers, Mathematical Concepts