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Kidd, Terry, Ed.; Morris, Lonnie R., Jr., Ed. – IGI Global, 2017
Incorporating new methods and approaches in learning environments is imperative to the development of education systems. By enhancing learning processes, education becomes more attainable at all levels. "The Handbook of Research on Instructional Systems and Educational Technology" is an essential reference source for the latest scholarly…
Descriptors: Guides, Educational Technology, Instructional Systems, Research
Peer reviewedHope, Jack A. – Educational Studies in Mathematics, 1985
The processes and procedures used by expert mental calculators are identified from a literature review. Experts are characterized by knowledge of a variety of methods, ability to recall numerical equivalents, and ability to remember the numbers involved in various stages of calculations. (MNS)
Descriptors: Adults, Cognitive Processes, Computation, Educational Research
Peer reviewedReys, Robert E., Ed.; Reys, Barbara J., Ed. – Arithmetic Teacher, 1986
Using factoring as an aid to mental multiplication is illustrated. Other suggestions for teaching mental computation are also included. (MNS)
Descriptors: Computation, Elementary Education, Elementary School Mathematics, Mathematics Instruction
Peer reviewedMoore, Theodore F. – Mathematics Teacher, 1986
Presents a technique for multiplying two-digit numbers whose tens digits are equal and whose units digits have a sum of 10. Then various mental calculations with other types of two-digit and larger numbers are discussed. (MNS)
Descriptors: Computation, Learning Activities, Mathematics Instruction, Mental Computation
Peer reviewedDietz, Charles – Perspectives in Education and Deafness, 1993
Strategies for rapid mental computation are explained, including multiplying by 11 (or 21, 31, etc.); adding columns of numbers; and multiplying 2-digit numbers. Rapid mental computation is suggested as a motivator for investigating the underlying mathematical principles. (DB)
Descriptors: Algorithms, Computation, Elementary Secondary Education, Learning Strategies
Peer reviewedFrench, Doug – Mathematics in School, 1987
Choosing mental, written, or calculator procedures is important for children to learn. Children should be encouraged to be flexible and consider alternatives when doing mental calculation. Developing mental skills, symbols and rules, and numbers in context are each considered. (MNS)
Descriptors: Cognitive Processes, Computation, Elementary Education, Elementary School Mathematics
Isaacson, Dan – Creative Computing, 1982
A set of three problem-solving programs designed as drills that give practice in mental arithmetic are reviewed. The programs are viewed to have several weaknesses in style, but are noted as worthy of consideration for purchase. The material is designed to motivate students to practice all four basic operations. (MP)
Descriptors: Computation, Drills (Practice), Educational Games, Elementary Secondary Education
Peer reviewedSowder, Judith T. – Arithmetic Teacher, 1990
Discusses mental computation and how and when it should be taught. Describes seven properties of mental algorithms. (YP)
Descriptors: Arithmetic, Computation, Elementary Education, Elementary School Mathematics
Peer reviewedReys, Robert E. – Arithmetic Teacher, 1985
This article calls attention to testing as an integral part of teaching mental computation. It begins with an overview of students' performance and is followed by some specific suggestions for testing mental computation skills in the classroom. (Author)
Descriptors: Computation, Elementary Education, Elementary School Mathematics, Mathematics Education
Peer reviewedMusser, Gary L. – Arithmetic Teacher, 1982
Two mental algorithms, one for addition and one for subtraction, are described. It is felt such algorithms should be taught explicitly. The usual process taught for paper and pencil is seen to inhibit mental arithmetic, and a need to include mental algorithms in the regular mathematics curriculum is promoted. (MP)
Descriptors: Addition, Algorithms, Computation, Elementary Education
Peer reviewedHope, John A. – Journal for Research in Mathematics Education, 1987
This case study examined the performance of a 13-year-old highly skilled mental calculator on mental multiplication tasks. She solved difficult tasks by using various ingenious calculation methods, including distributing, factoring, and recalling the product directly. Implications for instruction are reported. (Author/RH)
Descriptors: Academically Gifted, Adolescents, Computation, Elementary Education
Peer reviewedHedren, Rolf – Educational Studies in Mathematics, 1985
Studied for three years were eight Swedish classes with pupils aged 10-12 using calculators whenever they could be of use, along with experimental textbooks. The experimental classes were as competent as control classes in mental arithmetic and calculations with simple algorithms, and had better understanding of numbers and problem solving. (MNS)
Descriptors: Calculators, Computation, Educational Research, Elementary Education
Peer reviewedMathematics Teacher, 1983
Included in this section are brief articles outlining an approach to teaching mental computation, an inductive approach to algebra, and using football to teach probability. (MNS)
Descriptors: Algebra, Computation, Games, Induction
Peer reviewedVale, Colleen – Australian Primary Mathematics Classroom, 1999
Computation activities focusing on speed and accuracy do not provide children with the opportunity to learn or develop their own mental computation strategies. Sets out some goals and ideas for teaching mental computation and introduces a card game for helping children compute mentally. (ASK)
Descriptors: Computation, Educational Games, Elementary Education, Elementary School Mathematics
Peer reviewedHolmes, Emma E. – Arithmetic Teacher, 1975
Games for use in practicing rounding numbers and mental computation using tens and hundreds are described. The importance of estimation to computation is discussed. (SD)
Descriptors: Basic Skills, Computation, Elementary Education, Elementary School Mathematics

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