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Showing 1 to 15 of 25 results Save | Export
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Pratt-Williams, Jaunelle; Harris, Julie; Saucedo, Daniela; Mislevy, Jessica – Regional Educational Laboratory Appalachia, 2021
Regional Educational Laboratory Appalachia researchers developed the Cost-Feasibility Analysis (CFA) Toolkit to help education leaders estimate whether implementing supplemental online programs is affordable given a school or district's available resources. The CFA Toolkit guides users through a four-stage process that yields cost information that…
Descriptors: Cost Effectiveness, Feasibility Studies, Supplementary Education, Online Courses
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Lockwood, Elise; Erickson, Sarah – International Journal of Mathematical Education in Science and Technology, 2017
Counting problems offer rich opportunities for students to engage in mathematical thinking, but they can be difficult for students to solve. In this paper, we present a study that examines student thinking about one concept within counting, factorials, which are a key aspect of many combinatorial ideas. In an effort to better understand students'…
Descriptors: Undergraduate Students, Mathematical Concepts, Computation, Semi Structured Interviews
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Pei, Christina; Weintrop, David; Wilensky, Uri – Mathematical Thinking and Learning: An International Journal, 2018
There is a great deal of overlap between the set of practices collected under the term "computational thinking" and the mathematical habits of mind that are the focus of much mathematics instruction. Despite this overlap, the links between these two desirable educational outcomes are rarely made explicit, either in classrooms or in the…
Descriptors: Problem Solving, Thinking Skills, Mathematics Instruction, Mathematical Logic
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Noda, Aurelia; Bruno, Alicia – Qualitative Research in Education, 2017
This paper presents an assessment of the understanding of the decimal numeral system in students with Down Syndrome (DS). We followed a methodology based on a descriptive case study involving six students with DS. We used a framework of four constructs (counting, grouping, partitioning and numerical relationships) and five levels of thinking for…
Descriptors: Knowledge Level, Down Syndrome, Numbers, Case Studies
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Yilmaz, Zuhal – International Electronic Journal of Elementary Education, 2017
Children start to develop number sense even well before they start the school. Developing number sense serves as an intermediate tool for learning conventional mathematics taught in schools. This number sense has three key areas: number knowledge, counting and arithmetic operations. As a result, the aim of this study was to examine aged related…
Descriptors: Numbers, Young Children, Mathematics, Mathematics Instruction
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Lockwood, Elise; DeJarnette, Anna F.; Asay, Autumn; Thomas, Matthew – North American Chapter of the International Group for the Psychology of Mathematics Education, 2016
Computer scientists have reported on "computational thinking," which Aho (2012) defines as "the thought process involved in formulating problems so their solutions can be represented as computational steps and algorithms" (p. 832). We wanted to investigate such thinking in mathematics. To study this, we interviewed five…
Descriptors: Thinking Skills, Mathematics Skills, Computation, Mathematics
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Leak, Anne E.; Santos, Zackary; Reiter, Erik; Zwickl, Benjamin M.; Martin, Kelly Norris – Physical Review Physics Education Research, 2018
To prepare physics students for future careers, educators need to understand the skills and other factors necessary for entry and success on the job. Often these insights are based on CEOs, HR personnel, and managers, who provide broad perspectives regarding successful attributes of new hires. However, such insights are often more general and…
Descriptors: Optics, Success, Performance Factors, Influences
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Bollen, Laurens; van Kampen, Paul; Baily, Charles; De Cock, Mieke – Physical Review Physics Education Research, 2016
Many students struggle with the use of mathematics in physics courses. Although typically well trained in rote mathematical calculation, they often lack the ability to apply their acquired skills to physical contexts. Such student difficulties are particularly apparent in undergraduate electrodynamics, which relies heavily on the use of vector…
Descriptors: Science Instruction, Magnets, Energy, Semi Structured Interviews
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Hawthorne, Casey; Rasmussen, Chris – International Journal of Mathematical Education in Science and Technology, 2015
While a significant amount of research has been devoted to exploring why university students struggle applying logic, limited work can be found on how students actually make sense of the notational and structural components used in association with logic. We adapt the theoretical framework of unitizing and reification, which have been effectively…
Descriptors: College Students, Logical Thinking, Mathematical Logic, Abstract Reasoning
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Waite, Jane Lisa; Curzon, Paul; Marsh, William; Sentance, Sue; Hadwen-Bennett, Alex – Online Submission, 2018
Research indicates that understanding levels of abstraction (LOA) and being able to move between the levels is essential to programming success. For K-5 contexts we rename the LOA levels: problem, design, code and running the code. In our qualitative exploratory study, we interviewed five K-5 teachers on their uses of LOA, particularly the design…
Descriptors: Elementary School Teachers, Computer Science Education, Programming, Abstract Reasoning
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Wernet, Jamie L; Nurnberger-Haag, Julie – Contemporary Issues in Early Childhood, 2015
Little research exists on young children's beliefs about mathematics, and current research perspectives on early mathematical activity may overlook a great deal of young children's sophisticated mathematical thinking. We argue this is attributable, in part, to a need for a broader view of what mathematics is, including cultural practices that are…
Descriptors: Case Studies, Beliefs, Mathematics, Mathematics Skills
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Lee, Victor R.; Fields, Deborah A. – International Journal of Information and Learning Technology, 2017
Purpose: In light of growing interest in the maker movement and electronic textiles (e-textiles) as an educational technology, the purpose of this paper is to characterize competence change in undergraduate students who participated in a semester-length course that used e-textiles. Design/methodology/approach: This qualitative and exploratory…
Descriptors: Scoring Rubrics, Educational Technology, Minimum Competency Testing, Undergraduate Students
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Raveh, Ira; Koichu, Boris; Peled, Irit; Zaslavsky, Orit – Research in Mathematics Education, 2016
In this article we present an integrative framework of knowledge for teaching the standard algorithms of the four basic arithmetic operations. The framework is based on a mathematical analysis of the algorithms, a connectionist perspective on teaching mathematics and an analogy with previous frameworks of knowledge for teaching arithmetic…
Descriptors: Mathematics Instruction, Arithmetic, Knowledge Level, Knowledge Base for Teaching
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Galbraith, Craig S.; Merrill, Gregory B. – Journal of College Student Development, 2012
We examined the interaction between academic burnout and work-related burnout for a sample of working undergraduate university students. Using a longitudinal design we found that the factors of burnout (Exhaustion, Cynicism, and Efficacy) change significantly over the semester. In addition, the study suggests there are distinct differences in how…
Descriptors: Semi Structured Interviews, Structured Interviews, Educational Experience, Burnout
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Cukurbasi, Baris; Kiyici, Mubin – Educational Technology & Society, 2018
The purpose of this study was to investigate the high school students' views on instructions based on Flipped Classroom Model (FC) and LEGO applications. The case study, which is one of the qualitative research methods, was used within the scope of the study, the duration of which was 7 weeks. In order to choose the research group of the study,…
Descriptors: High School Students, Student Attitudes, Grade 10, Problem Based Learning
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