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King, Kenneth P. – Science Scope, 2007
The inertial balance is one device that can help students to quantify the quality of inertia--a body's resistance to a change in movement--in more generally understood terms of mass. In this hands-on activity, students use the inertial balance to develop a more quantitative idea of what mass means in an inertial sense. The activity also helps…
Descriptors: Science Instruction, Hands on Science, Teaching Methods, Scientific Concepts
Hewitt, Dave – Mathematics Teaching Incorporating Micromath, 2007
In this article, the author offers two well-known mathematical images--that of a dot moving around a circle; and that of the tens chart--and considers their power for developing mathematical thinking. In his opinion, these images each contain the essence of a particular topic of mathematics. They are contrasting images in the sense that they deal…
Descriptors: Geometric Concepts, Trigonometry, Mathematics Instruction, Mathematical Concepts
Gough, John – Australian Mathematics Teacher, 2007
This article considers steps towards making a numeracy-across-the-curriculum policy. Numeracy means more than the kind of everyday arithmetic a person (a competent independent adult) needs to handle whole number (and simple decimal) calculations; e.g., money, time, and simple measurement. Importantly, aspects of numeracy arise in any everyday task…
Descriptors: Numbers, Numeracy, School Policy, Integrated Curriculum
Desoete, Annemie – International Electronic Journal of Elementary Education, 2009
A majority of studies on learning disabilities have focused on elementary grades. Although problems with learning disabilities are life-affecting only a few studies focus on deficits in adults. In this study adults with isolated mathematical disabilities (n = 101) and adults with combined mathematical and reading disabilities (n = 130) solved…
Descriptors: Learning Disabilities, Metacognition, Adults, Reading Difficulties
Taylor-Cox, Jennifer – Eye on Education, 2009
Useful for small groups or one-on-one instruction, this book offers successful math interventions and response to intervention (RTI) connections. Teachers will learn to target math instruction to struggling students by: (1) Diagnosing weaknesses; (2) Providing specific, differentiated instruction; (3) Using formative assessments; (4) Offering…
Descriptors: Feedback (Response), Intervention, Number Concepts, Grade 3
Lipton, Jennifer S.; Spelke, Elizabeth S. – Cognition, 2006
Although children take over a year to learn the meanings of the first three number words, they eventually master the logic of counting and the meanings of all the words in their count list. Here, we ask whether children's knowledge applies to number words beyond those they have mastered: Does a child who can only count to 20 infer that number…
Descriptors: Preschool Children, Numbers, Semantics, Emergent Literacy
Duckworth, Frank – Teaching Statistics: An International Journal for Teachers, 2006
This article concludes the serialization of the Royal Statistical Society's Schools Lecture for 2004, on "Lies and statistics".
Descriptors: Statistics, Deception, Probability, Number Concepts
Rinehart, Nicole J.; Bradshaw, John L.; Moss, Simon A.; Brereton, Avril V.; Tonge, Bruce J. – Autism: The International Journal of Research & Practice, 2006
The repetitive, stereotyped and obsessive behaviours, which are core diagnostic features of autism, are thought to be underpinned by executive dysfunction. This study examined executive impairment in individuals with autism and Asperger's disorder using a verbal equivalent of an established pseudo-random number generating task. Different patterns…
Descriptors: Control Groups, Autism, Asperger Syndrome, Numbers
Sarama, Julie; Clements, Douglas H. – Early Childhood Today, 2006
There often seems to be confusion as to when young children should be ready to learn basic math concepts. The truth is, children are born ready to do mathematics. They show amazing competencies very early in life. For example, one can show an infant two objects as one moves them behind a screen. Then one more object is added. When the screen is…
Descriptors: Infants, Learning Readiness, Preschool Children, Mathematics Instruction
Osler, Thomas J.; Stugard, Nicholas – Mathematics and Computer Education, 2006
In some elementary courses, it is shown that square root of 2 is irrational. It is also shown that the roots like square root of 3, cube root of 2, etc., are irrational. Much less often, it is shown that the number "e," the base of the natural logarithm, is irrational, even though a proof is available that uses only elementary calculus. In this…
Descriptors: Geometric Concepts, Transformations (Mathematics), Calculus, Number Concepts
Leviatan, T. – International Journal of Mathematical Education in Science & Technology, 2006
Real numbers are often a missing link in mathematical education. The standard working assumption in calculus courses is that there exists a system of "numbers", extending the rational number system, adequate for measuring continuous quantities. Moreover, that such "numbers" are in one-to-one correspondence with points on a "number line". But…
Descriptors: Geometric Concepts, Number Systems, Mathematics Education, Calculus
Addington, Susan L. – Teaching Children Mathematics, 2006
A mathematics curricula "Have a Heart problem" characteristically expect students to work numerically with formulas and unit conversions, assuming that they have had enough experience measuring lengths and areas physically. However, the problem shows the pitfalls of working numerically without the proper conceptual foundations.
Descriptors: Mathematics Curriculum, Mathematical Concepts, Educational Methods, Numbers
Arkansas State Dept. of Education, Little Rock. – 1988
These item specifications were developed as a part of the Arkansas "Minimum Performance Testing Program" (MPT). There is one item specification for each instructional objective included in the MPT. The purpose of an item specification is to provide an overview of the general content and format of test items used to measure an…
Descriptors: Arithmetic, Educational Objectives, Elementary School Mathematics, Geometry
PDF pending restorationBennett, Ruth, Ed.; And Others – 1986
An introduction to the Hupa number system is provided in this workbook, one in a series of numerous materials developed to promote the use of the Hupa language. The book is written in English with Hupa terms used only for the names of numbers. The opening pages present the numbers from 1-10, giving the numeral, the Hupa word, the English word, and…
Descriptors: Addition, American Indian Education, American Indian Languages, Arithmetic
Cuneo, Diane O. – 1980
Presented are the results of an investigation of stimulus integration capabilities of three- and four-year-old children in judgments of small and large numbers. There is much evidence that suggested young children have a concept of number for small numbers, but not for large ones. A concept of number was hypothesized by Piaget to rest on the…
Descriptors: Classification, Cognitive Development, Evaluation Methods, Experiential Learning

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