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Liargkovas, Georgios; Papadopoulou, Angeliki; Kotti, Zoe; Spinellis, Diomidis – IEEE Transactions on Education, 2022
Contribution: Determine and analyze the gap between software practitioners' education outlined in the 2014 IEEE/ACM software engineering education knowledge (SEEK) and industrial needs pointed by Wikipedia articles referenced in Stack Overflow (SO) posts. Background: Previous work has uncovered deficiencies in the coverage of computer…
Descriptors: Industry, Knowledge Level, Computer Software, Computer Science
Rosenblum, L. Penny; Cheng, Li; Beal, Carole R. – Journal of Visual Impairment & Blindness, 2018
Introduction: Knowing how to gather information from graphics and to use that information to solve mathematics problems is an important skill. Prior research indicates that many students with visual impairments face considerable challenges when attempting to locate information in math graphics. Little is known about how teachers of students with…
Descriptors: Visual Impairments, Mathematics Instruction, Mathematical Concepts, Teaching Methods
Kaneko, Masataka; Yamashita, Satoshi; Kitahara, Kiyoshi; Maeda, Yoshifumi; Nakamura, Yasuyuki; Kortenkamp, Ulrich; Takato, Setsuo – International Journal for Technology in Mathematics Education, 2015
Dynamic Geometry Software (DGS) is a powerful tool which enables students to move geometric objects interactively. Through experimental simulations with DGS, mathematical facts and background mechanisms are accessible to students. However, especially when those facts and mechanisms are complicated, it is not so easy for some students to record and…
Descriptors: Computer Software, Geometry, Technology Uses in Education, Educational Technology
Benacka, Jan – Informatics in Education, 2015
The article presents the results of an experiment in which Excel applications that depict rotatable and sizable orthographic projection of simple 3D figures with face overlapping were developed with thirty gymnasium (high school) students of age 17-19 as an introduction to 3D computer graphics. A questionnaire survey was conducted to find out…
Descriptors: Spreadsheets, High School Students, Secondary School Mathematics, Algebra
Erbas, Ayhan Kursat; Ince, Muge; Kaya, Sukru – Educational Technology & Society, 2015
The purpose of this study was to explore the effect of a technology-supported learning environment utilizing an interactive whiteboard (IWB) and NuCalc graphing software compared to a traditional direct instruction-based environment on student achievement in graphs of quadratic functions and attitudes towards mathematics and technology. Sixty-five…
Descriptors: Mathematics Instruction, Educational Technology, Interactive Video, Technology Uses in Education
Nemirovsky, Ricardo; Kelton, Molly L.; Rhodehamel, Bohdan – Journal for Research in Mathematics Education, 2013
Research in experimental and developmental psychology, cognitive science, and neuroscience suggests that tool fluency depends on the merging of perceptual and motor aspects of its use, an achievement the authors call "perceptuomotor integration." Just as expertise in playing a piano relies on the interanimation of finger movements and…
Descriptors: Mathematics Instruction, Mathematics Skills, Perceptual Motor Coordination, Informal Education
Yavuz, Ilyas – International Journal of Mathematical Education in Science and Technology, 2010
This study examines how students in the early stages of learning about the concept of functions, describe a curve and, in particular, evaluate the appropriateness of their argument about the representation of a function. Students are offered a message game which is related to a curve drawn on a coordinate system, representing an "imaginary…
Descriptors: Mathematics Activities, Knowledge Representation, Mathematical Concepts, Computer Graphics
Rau, M. A.; Aleven, V.; Rummel, N. – Society for Research on Educational Effectiveness, 2011
Graphical representations (GRs) of the learning content are often used for instruction (Ainsworth, 2006). When used in learning technology, GRs can be especially useful since they allow for interactions across representations that are physically impossible, for instance by dragging and dropping symbolic statements into a chart that automatically…
Descriptors: Intelligent Tutoring Systems, Retention (Psychology), Mathematics, Mathematics Instruction
Vaughn, Brandon K.; Wang, Pei-Yu – Journal of Educational Technology, 2009
The emergence of technology has led to numerous changes in mathematical and statistical teaching and learning which has improved the quality of instruction and teacher/student interactions. The teaching of statistics, for example, has shifted from mathematical calculations to higher level cognitive abilities such as reasoning, interpretation, and…
Descriptors: Concept Teaching, Mathematical Concepts, Statistics, Educational Quality
Liang, Hai-Ning; Sedig, Kamran – International Journal of Computers for Mathematical Learning, 2010
Many epistemic activities, such as spatial reasoning, sense-making, problem solving, and learning, are information-based. In the context of epistemic activities involving mathematical information, learners often use interactive 3D mathematical visualizations (MVs). However, performing such activities is not always easy. Although it is generally…
Descriptors: Experimental Groups, Control Groups, Visualization, Interaction
Smirnov, Eugeny; Bogun, Vitali – Online Submission, 2011
New methodologies in science (or mathematics) learning process and scientific thinking in the classroom activity of engineer students with ICT (information and communication technology), including graphic calculator are presented: visual modelling with ICT, action research with graphic calculator, insight in classroom and communications and…
Descriptors: Foreign Countries, High School Students, Program Effectiveness, Computer System Design
Wong, Wing-Kwong; Yin, Sheng-Kai; Yang, Hsi-Hsun; Cheng, Ying-Hao – Educational Technology & Society, 2011
Geometry theorem proving involves skills that are difficult to learn. Instead of working with abstract and complicated representations, students might start with concrete, graphical representations. A proof tree is a graphical representation of a formal proof, with each node representing a proposition or given conditions. A computer-assisted…
Descriptors: Foreign Countries, Geometry, Mathematical Logic, Validity
Psycharis, Giorgos; Latsi, Maria; Kynigos, Chronis – International Journal for Technology in Mathematics Education, 2009
This paper reports on a case-study design experiment in the domain of fraction as number-measure. We designed and implemented a set of exploratory tasks concerning comparison and ordering of fractions as well as operations with fractions. Two groups of 12-year-old students worked collaboratively using paper and pencil as well as a specially…
Descriptors: Elementary School Mathematics, Mathematics Instruction, Mathematical Concepts, Mathematics Activities
Manches, Andrew; O'Malley, Claire; Benford, Steve – Computers & Education, 2010
This research aims to explore the role of physical representations in young children's numerical learning then identify the benefits of using a graphical interface in order to understand the potential for developing interactive technologies in this domain. Three studies are reported that examined the effect of using physical representations…
Descriptors: Young Children, Computer Interfaces, Problem Solving, Mathematics Instruction

Simmons, Malcolm; Cope, Peter – Educational Studies in Mathematics, 1990
Described is an investigation into how the use of LOGO programing language affects children's basic knowledge of an angle. Findings indicate that children make erroneous adjustments to their conceptual knowledge of angle to accommodate the results of acquired procedural interaction with the computer. (Author/CW)
Descriptors: Computer Graphics, Computer Uses in Education, Elementary Education, Elementary School Mathematics
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