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Xu, Xinhao; Ke, Fengfeng – Technology, Knowledge and Learning, 2023
In this paper, the researchers report an experimental study on conceptual knowledge learning and application through embodied interactions, expecting that bodily movements would facilitate learning in a positive manner. The intervention was enabled by Unity3D and Kinect V2, and taught novice adult learners the concepts of and conversions between…
Descriptors: Number Systems, Learning Processes, Human Body, Interaction
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Basil Conway IV; Marjorie Mitchell – Mathematics Teacher: Learning and Teaching PK-12, 2023
This article describes students learning to build their own numbering system by recognizing and identifying patterns with interlocking cubes in different place values. The students used the Egyptian hieroglyphic numeral system in conjunction with this activity to connect learning in other subjects. Students used prior knowledge of place value to…
Descriptors: Mathematics Instruction, Geometric Concepts, Concept Formation, Number Systems
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Sprute, Lisa; Temple, Elise – Mind, Brain, and Education, 2011
Proficiency with fractions serves as a foundation for later mathematics and is critical for learning algebra, which plays a role in college success and lifetime earnings. Yet children often struggle to learn fractions. Educators have argued that a conceptual understanding of fractions involves learning that a fraction represents a magnitude…
Descriptors: Number Systems, Adults, Reaction Time, Teaching Methods
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LeFevre, Jo-Anne; Berrigan, Lindsay; Vendetti, Corrie; Kamawar, Deepthi; Bisanz, Jeffrey; Skwarchuk, Sheri-Lynn; Smith-Chant, Brenda L. – Journal of Experimental Child Psychology, 2013
We examined the role of executive attention, which encompasses the common aspects of executive function and executive working memory, in children's acquisition of two aspects of mathematical skill: (a) knowledge of the number system (e.g., place value) and of arithmetic procedures (e.g., multi-digit addition) and (b) arithmetic fluency (i.e.,…
Descriptors: Arithmetic, Number Concepts, Number Systems, Executive Function
Latham, Dorothy – Mathematics Teaching Incorporating Micromath, 2007
In the renewed "Primary Framework for Mathematics" for England, great emphasis is given to calculation and its prerequisites (DfES, 2006). Expectations are increased for calculations and the recall of number facts, with mental calculation owning a higher profile, while progression in written calculation is clarified. The greater focus on…
Descriptors: Foreign Countries, Computation, Number Systems, Manipulative Materials
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Watson, Jane – Australian Mathematics Teacher, 1991
It is difficult for students to unlearn misconceptions that have been unknowingly reinforced by teachers. The examples "multiplication makes bigger,""pi equals 22/7," and the use of counter examples to demonstrate the numerical property of closure are discussed as potential areas where misconceptions are fostered. (MDH)
Descriptors: Concept Formation, Division, Educational Diagnosis, Elementary Secondary Education
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Mau, Sue; D'Ambrosio, Beatriz – Mathematics Teacher Education and Development, 2003
This article discusses three solutions to the "Tower of Hanoi" problem offered by students in a mathematics content course for prospective elementary school teachers. The course uses standards-based pedagogy and teaching via problem solving. Within this work, we consider the growth supported by collaboration at both the students' level…
Descriptors: Number Systems, Elementary School Teachers, Middle School Teachers, Mathematics