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Wares, Arsalan – International Journal of Mathematical Education in Science and Technology, 2011
The purpose of this classroom note is to provide an example of how a simple origami box can be used to explore important concepts of geometry and calculus. This article describes how an origami box can be folded, then it goes on to describe how its volume and surface area can be calculated. Finally, it describes how the box could be folded to…
Descriptors: Geometric Concepts, Geometry, Calculus, Mathematics Instruction
Guzman, Karen; Bartlett, John – Biochemistry and Molecular Biology Education, 2012
Biological systems and living processes involve a complex interplay of biochemicals and macromolecular structures that can be challenging for undergraduate students to comprehend and, thus, misconceptions abound. Protein synthesis, or translation, is an example of a biological process for which students often hold many misconceptions. This article…
Descriptors: Biology, Misconceptions, Undergraduate Students, Laboratory Experiments
Arici, Sevil; Aslan-Tutak, Fatma – International Journal of Science and Mathematics Education, 2015
This research study examined the effect of origami-based geometry instruction on spatial visualization, geometry achievement, and geometric reasoning of tenth-grade students in Turkey. The sample ("n" = 184) was chosen from a tenth-grade population of a public high school in Turkey. It was a quasi-experimental pretest/posttest design. A…
Descriptors: Foreign Countries, Geometry, Geometric Concepts, Spatial Ability
Dobbins, Angela; Gagnon, Joseph Calvin; Ulrich, Tracy – Preventing School Failure, 2014
Geometry is a course that is increasingly required for students to graduate from high school. However, geometric concepts can pose a great challenge to high school youth with math difficulties. Although research on teaching geometry to students with mathematics difficulties is limited, teachers are challenged daily with providing support for youth…
Descriptors: Geometric Concepts, Geometry, Mathematics Instruction, Intervention
Altiparmak, Kemal – International Journal of Research in Education and Science, 2016
Soroban abacus training is called as mental arithmetic training in our country. It is known for mental arithmetic to increase the ability of four mode operations. Besides this, how is the situation for the students which are having Soroban abacus training in the terms of problem solving abilities, creativity, development of concepts, attraction…
Descriptors: Foreign Countries, Arithmetic, Mathematics Instruction, Mathematics Teachers
Hansen, Alice; Mavrikis, Manolis; Geraniou, Eirini – Journal of Mathematics Teacher Education, 2016
This study explores the impact that co-designing a virtual manipulative, Fractions Lab, had on teachers' professional development. Tapping into an existing community of practice of mathematics specialist teachers, the study identifies how a cooperative enquiry approach utilising workshops and school-based visits challenged 23 competent primary…
Descriptors: Pedagogical Content Knowledge, Mathematics, Mathematics Instruction, Fractions
Assiti, Saliza Safta; Zulkardi; Darmawijoyo – Indonesian Mathematical Society Journal on Mathematics Education, 2013
The intention of the present study is to know how the pupils can learn to make a group of ten to understand the idea of unitizing. The pupils were given a contextual problem "Counting the Beads" in order to promote their understanding about the idea of unitizing. The process of designing the problem was based on the 5 tenets of…
Descriptors: Computation, Mathematical Concepts, Concept Formation, Teaching Methods
Wroughton, Jacqueline; Cole, Tarah – Journal of Statistics Education, 2013
Recognizing the differences between three discrete distributions (Binomial, Hypergeometric and Negative Binomial) can be challenging for students. We present an activity designed to help students differentiate among these distributions. In addition, we present assessment results in the form of pre- and post-tests that were designed to assess the…
Descriptors: Statistics, Mathematics Instruction, Active Learning, Mathematical Concepts
Pan, Edward A. – ProQuest LLC, 2013
Science, technology, engineering, and mathematics (STEM) education is a national focus. Engineering education, as part of STEM education, needs to adapt to meet the needs of the nation in a rapidly changing world. Using computer-based visualization tools and corresponding 3D printed physical objects may help nontraditional students succeed in…
Descriptors: Undergraduate Students, Engineering Education, STEM Education, Manipulative Materials
Moyer-Packenham, Patricia S.; Shumway, Jessica F.; Bullock, Emma; Tucker, Stephen I.; Anderson-Pence, Katie L.; Westenskow, Arla; Boyer-Thurgood, Jennifer; Maahs-Fladung, Cathy; Symanzik, Juergen; Mahamane, Salif; MacDonald, Beth; Jordan, Kerry – Journal of Computers in Mathematics and Science Teaching, 2015
Part of a larger initiation mixed methods study (Greene, Caracelli, & Graham, 1989), this paper discusses the changes in young children's learning performance and efficiency (one element of the quantitative portion of the larger study) during clinical interviews in which each child interacted with a variety of virtual manipulative…
Descriptors: Young Children, Learning Processes, Efficiency, Numeracy
Wong, Mona; Castro-Alonso, Juan C.; Ayres, Paul; Paas, Fred – Educational Technology & Society, 2015
Humans have an evolved embodied cognition that equips them to deal easily with the natural movements of object manipulations. Hence, learning a manipulative task is generally more effective when watching animations that show natural motions of the task, rather than equivalent static pictures. The present study was completed to explore this…
Descriptors: Gender Differences, Teaching Methods, Animation, Educational Technology
Hensberry, Karina K. R.; Moore, Emily B.; Perkins, Katherine K. – Journal of Computers in Mathematics and Science Teaching, 2015
Computer technology, when coupled with reform-based teaching practices, has been shown to be an effective way to support student learning of mathematics. The quality of the technology itself, as well as how it is used, impacts how much students learn. Interactive simulations are dynamic virtual environments similar to virtual manipulatives that…
Descriptors: Computer Simulation, Mathematics Instruction, Technology Uses in Education, Educational Technology
Cote, Debra L.; Jones, Vita L.; Barnett, Crystal; Pavelek, Karin; Nguyen, Hoang; Sparks, Shannon L. – Education and Training in Autism and Developmental Disabilities, 2014
Students with disabilities need problem-solving skills to promote their success in solving the problems of daily life. The research into problem-solving instruction has been limited for students with autism. Using a problem-solving intervention and the Self Determined Learning Model of Instruction, three elementary age students with autism were…
Descriptors: Problem Solving, Elementary School Students, Skill Development, Autism
McGee, Daniel, Jr.; Moore-Russo, Deborah; Ebersole, Dennis; Lomen, David O.; Quintero, Maider Marin – PRIMUS, 2012
With the help of the National Science Foundation, the Department of Mathematics at the University of Puerto Rico in Mayaguez has developed a set of manipulatives to help students of science and engineering visualize concepts relating to points, surfaces, curves, contours, and vectors in three dimensions. This article will present the manipulatives…
Descriptors: Foreign Countries, Calculus, Higher Education, Manipulative Materials
Pakulski, Lori A.; Kaderavek, Joan N. – Volta Review, 2012
This study examined the effects of a reading intervention on narrative production, narrative comprehension, and reading motivation interest in children with hearing loss. Seven school children between the ages of 9 and 11 were paired with younger "reading buddies" (without hearing loss). The children with hearing loss read storybooks to…
Descriptors: Intervention, Hearing Impairments, Reading Motivation, Preadolescents

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