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Harold Abelson, Editor; Siu-Cheung Kong, Editor – MIT Press, 2024
In today's digital society, computational thinking (CT) is a critical component of all children's education. In "Computational Thinking Curricula in K-12," editors Harold Abelson and Siu-Cheung Kong present a range of professional perspectives on the most effective ways to integrate CT into school curricula. Their edited volume, which…
Descriptors: Computation, Thinking Skills, Elementary Secondary Education, Educational Policy
Doss, Christopher Joseph; Johnston, William R. – RAND Corporation, 2018
This technical appendix provides additional information about the sample, data, and estimation strategy that were used for a series of AEP Data Notes published by the RAND Corporation in 2018 and 2019. The Data Note series is intended to provide brief, incisive analyses of teacher and school leader survey results which may be of immediate interest…
Descriptors: Teacher Surveys, Administrator Surveys, Sampling, Public Schools
US Department of Education, 2017
Student graduation from high school with a regular high school diploma is an important indicator of school success and one of the most significant indicators of student college and career readiness. In addition, there are substantial economic benefits to high school completion. For example, according to the U.S. Department of Education's National…
Descriptors: Federal Legislation, Educational Legislation, High School Students, Graduation Rate
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Urban, Michael J., Ed.; Falvo, David A., Ed. – IGI Global, 2016
The application of technology in classroom settings has equipped educators with innovative tools and techniques for effective teaching practice. Integrating digital technologies at the elementary and secondary levels helps to enrich the students' learning experience and maximize competency in the areas of science, technology, engineering, and…
Descriptors: Elementary Secondary Education, STEM Education, Outcomes of Education, Technology Integration
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Dietz, 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
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
Schoen, Harold L., Ed.; Zweng, Marilyn J., Ed. – 1986
This yearbook responds to the growing recognition among mathematics educators of the importance of teaching and learning estimation. It makes a strong case for the importance of estimation in such domains as numerosity, computation, and measurement. An important theme is the interdependency between the process of estimating in a particular domain…
Descriptors: Computation, Educational Change, Educational Research, Elementary Secondary Education
Trafton, Paul R. – NCTM Yearbook, 1978
The need to include proficiency with estimation and mental arithmetic as goals for the study of computation is presented. Approaches and guidelines are described for developing these skills.
Descriptors: Basic Skills, Computation, Elementary School Mathematics, Elementary Secondary Education
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Blake, Rich; Verhille, Charles – For the Learning of Mathematics, 1985
This paper on the language of zero (1) deals with the spoken and written symbols used to convey the concepts of zero; (2) considers computational algorithms and the exception behavior of zero which illustrate much language of and about zero; and (3) the historical evolution of the language of zero. (JN)
Descriptors: Computation, Elementary Secondary Education, Mathematics Education, Mathematics History
Miller, James H.; Milam, Cheryl P. – Learning Disabilities Research, 1987
The study investigated types of errors made by learning disabled children by analyzing written responses to multiplication and division problems. Error classifications are discussed, and possible causes are suggested. The importance of thorough investigation of errors by teachers is stressed. (Author/DB)
Descriptors: Computation, Diagnostic Teaching, Division, Elementary Secondary Education
Bone, Dorothea – Independent School, 1981
Describes the development of computers and calculators, noting intitial resistance to and later acceptance of calculators in the classroom. Advocates teaching children to perform simple calculations and stresses estimation skills over speed and accuracy for doing long, complicated computations. Includes recommendations for classroom calculator use…
Descriptors: Calculators, Computation, Educational Trends, Elementary Secondary Education
Peer reviewed Peer reviewed
Jamski, William D. – School Science and Mathematics, 1978
Comparing calendar years and planetary years serves as the basis of a calculator problem. (MP)
Descriptors: Calculators, Computation, Elementary Secondary Education, Instruction
Hallden-Abberton, Patti; Waits, Bert K. – MATYC Journal, 1978
A program is presented which enables a programable calculator to become a device to check the arithmetic computational skills of students. (MP)
Descriptors: Arithmetic, Calculators, Computation, Elementary Secondary Education
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Wheatley, Charlotte L. – School Science and Mathematics, 1980
Described is the calculator's place in the classroom and its potential for reshaping our computationally oriented curriculum. Activities are suggested for ways calculators can effectively be used to develop four types of mathematical thought. (Author/DS)
Descriptors: Calculators, Class Activities, Computation, Elementary Secondary Education
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Cawley, John F. – Journal of Reading, Writing, and Learning Disabilities International, 1987
The article offers an interpretation of "specially designed instruction" in arithmetic computation for learning disabled students which challenges overreliance on paper-and-pencil methodologies, rule-oriented procedures, and traditional sequences. Long division is used as an example of developing conceptual understanding to undergird computation.…
Descriptors: Arithmetic, Computation, Division, Elementary Secondary Education
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