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Schwartz, Mette Elisabeth – Science Scope, 2009
One of the greatest challenges for middle school Earth science teachers is helping our students get a feel for the magnitude of the long spans that make up Earth's history. The intent of the strategy presented here is to help middle school students get a feel for the real sizes of powers of 10, and then help them use that understanding by…
Descriptors: Middle School Students, Geology, Earth Science, Teaching Methods
Kathota, Vinay – Mathematics Teaching, 2009
"The power of two" is a Royal Institution (Ri) mathematics "master-class". It is a two-and-a half-hour interactive learning session, which, with varying degree of coverage and depth, has been run with students from Year 5 to Year 11, and for teachers. The master class focuses on an historical episode--the Josephus…
Descriptors: Number Systems, Number Concepts, Pattern Recognition, Mathematics Instruction
Cappelletti, Marinella; Freeman, Elliot D.; Cipolotti, Lisa – Neuropsychologia, 2009
This study investigated time, numerosity and space processing in a patient (CB) with a right hemisphere lesion. We tested whether these magnitude dimensions share a common magnitude system or whether they are processed by dimension-specific magnitude systems. Five experimental tasks were used: Tasks 1-3 assessed time and numerosity independently…
Descriptors: Intervals, Numbers, Number Concepts, Time
Zhou, Xinlin; Chen, Chuansheng; Chen, Lan; Dong, Qi – Cognition, 2008
Whether two-digit numbers are represented holistically (each digit pair processed as one number) or compositionally (each digit pair processed separately as a decade digit and a unit digit) remains unresolved. Two experiments were conducted to examine the distance, magnitude, and SNARC effects in a number-matching task involving two-digit numbers.…
Descriptors: Numbers, Measurement Techniques, Number Systems, Number Concepts
de Oliveira, E. Capelas – International Journal of Mathematical Education in Science and Technology, 2008
We present a general formula for a triple product involving four real numbers. As a particular case, we get the sum of a triple product of four odd integers. Some interesting results are recovered. We derive a general formula for more than four odd numbers.
Descriptors: Mathematical Applications, Numbers, Number Concepts, Problem Sets
de Mestre, Neville – Australian Mathematics Teacher, 2008
Prime numbers are important as the building blocks for the set of all natural numbers, because prime factorisation is an important and useful property of all natural numbers. Students can discover them by using the method known as the Sieve of Eratosthenes, named after the Greek geographer and astronomer who lived from c. 276-194 BC. Eratosthenes…
Descriptors: Numbers, Number Concepts, Mathematics Instruction, Mathematical Formulas
Cunningham, Clifton – College Mathematics Journal, 2008
An interesting number system is developed in the context of an encounter with alien culture. The resulting system has intriguing parallels and contrasts with our real number system.
Descriptors: Foreign Culture, Number Systems, Mathematics, Number Concepts
Baroody, Arthur J.; Eiland, Michael D.; Purpura, David J.; Reid, Erin E. – American Educational Research Journal, 2013
In a 9-month training experiment, 64 first graders with a risk factor were randomly assigned to computer-assisted structured discovery of the add-1 rule (e.g., the sum of 7 + 1 is the number after "seven" when we count), unstructured discovery learning of this regularity, or an active-control group. Planned contrasts revealed that the…
Descriptors: Prerequisites, Risk, Discovery Learning, Control Groups
Dingman, Shannon; Teuscher, Dawn; Newton, Jill A.; Kasmer, Lisa – Elementary School Journal, 2013
This article reports the findings from a comparative analysis that examined several mathematical content strands, reasoning processes, and emphasis on technology in prior K-8 state mathematics standards and the Common Core State Standards for Mathematics (CCSSM). Various methodological tools were utilized to compare and contrast CCSSM with prior…
Descriptors: Academic Standards, Mathematics Instruction, Mathematics Achievement, Course Content
Pagar, Dana – ProQuest LLC, 2013
Manipulatives have the potential to be powerful tools in helping children improve their number sense, develop advanced mathematical strategies, and build an understanding of the base ten number system. Physical manipulatives used in classrooms, however, are often not designed to promote efficient strategy use, such as counting on, and typically do…
Descriptors: Mathematics Instruction, Manipulative Materials, Number Concepts, Teaching Methods
Martinez, Mara V., Ed.; Superfine, Alison Castro, Ed. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2013
These Proceedings are a written record of the research presented at the 35th Annual Meeting of the North American Chapter of the International Group for the Psychology of Mathematics Education (PME-NA 2013) held in Chicago, Illinois, November 14-17, 2013. The theme of the conference is Broadening Perspectives on Mathematics Thinking and Learning.…
Descriptors: Mathematics Education, Mathematics Curriculum, Algebra, Number Concepts
Young-Loveridge, Jennifer – Teachers and Curriculum, 2011
This paper challenges the emphasis on counting in New Zealand's Numeracy Development Project (NDP), arguing that subitizing provides an alternative pathway to quantification. Longitudinal data is presented showing that children's subitizing skills at the age of five years were a strong predictor of their later success in mathematics at the age of…
Descriptors: Computation, Mathematics Instruction, Foreign Countries, Numeracy
Pien, Cheng Lu; Dongsheng, Zhao – Mathematics Teaching, 2011
Effective teaching includes enabling learners to make connections within mathematics. It is easy to accord with this statement, but how often is it a reality in the mathematics classroom? This article describes an approach in "connecting equivalent" fractions and whole number operations. The authors illustrate how a teacher can combine a common…
Descriptors: Mathematics Instruction, Numbers, Mathematical Concepts, Mathematics Skills
Zosh, Jennifer M.; Halberda, Justin; Feigenson, Lisa – Journal of Experimental Psychology: General, 2011
The number of individual items that can be maintained in working memory is limited. One solution to this problem is to store representations of ensembles that contain summary information about large numbers of items (e.g., the approximate number or cumulative area of a group of many items). Here we explored the developmental origins of ensemble…
Descriptors: Employment Projections, Infants, Scientific Concepts, Short Term Memory
Slusser, Emily B.; Sarnecka, Barbara W. – Journal of Experimental Child Psychology, 2011
An essential part of understanding number words (e.g., "eight") is understanding that all number words refer to the dimension of experience we call numerosity. Knowledge of this general principle may be separable from knowledge of individual number word meanings. That is, children may learn the meanings of at least a few individual number words…
Descriptors: Evidence, Semantics, Number Concepts, Numeracy

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