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Laksmiwati, Pasttita Ayu; Hidayah, Miftahul; Schmidthaler, Eva; Prahmana, Rully Charitas Indra; Sabitzer, Barbara; Lavicza, Zsolt – Journal on Mathematics Education, 2023
Nowadays, digital technologies are crucial in supporting students in geometry in secondary mathematics classrooms. However, in some cases, the role of visual function in technology was only utilized for seeing and conjecturing, not for experimenting, while to develop a relational understanding of geometry concepts, students should actively…
Descriptors: Student Diversity, Geometry, Mathematics Instruction, Teaching Methods
Kellems, Ryan O.; Eichelberger, Carrie; Cacciatore, Giulia; Jensen, Mikaela; Frazier, Brynn; Simons, Kalee; Zaru, Mai – Journal of Learning Disabilities, 2020
The purpose of this study was to examine the effectiveness of video-based mathematics instruction for seven middle school students with specific learning disability (SLD), using an augmented reality-based training package. The dependent variable was the percentage of steps students performed correctly to solve each type of mathematics problem. The…
Descriptors: Video Technology, Computer Assisted Instruction, Computer Simulation, Mathematics Instruction
Saunders, Alicia F.; Spooner, Fred; Ley Davis, Luann – Remedial and Special Education, 2018
Mathematical problem solving is necessary in many facets of everyday life, yet little research exists on how to teach students with more severe disabilities higher order mathematics like problem solving. Using a multiple probe across participants design, three middle school students with moderate intellectual disability (ID) were taught to solve…
Descriptors: Mathematics Instruction, Video Technology, Prompting, Simulation
Bottge, Brian A.; Rueda, Enrique; Grant, Timothy S.; Stephens, Ana C.; Laroque, Perry T. – Exceptional Children, 2010
Middle school students with learning disabilities in math (MLD) used two versions of Enhanced Anchored Instruction (EAI). In one condition, students learned how to compute with fractions on an as-needed basis while they worked to solve the EAI problems. In the other condition, teachers used a computer-based instructional module in place of one of…
Descriptors: Learning Disabilities, Problem Solving, Computation, Teaching Methods
Lewis, Katherine E. – Learning Disabilities: A Contemporary Journal, 2010
When solving basic number fact problems (e.g., 4x5=20), students with mathematical learning disabilities (MLDs) make qualitatively different kinds of errors than both typically achieving and low-achieving students. This study explores the origin of these qualitative differences through a detailed analysis of one student with an MLD. Data were…
Descriptors: Learning Disabilities, Problem Solving, Grade 12, Multiplication
Binterová, Helena; Komínková, Olga – Acta Didactica Napocensia, 2013
The main purpose of the work is to present a successful implementation of CLIL method in Mathematics lessons in elementary schools. Nowadays at all types of schools (elementary schools, high schools and universities) all over the world every school subject tends to be taught in a foreign language. In 2003, a document called Action plan for…
Descriptors: Computer Uses in Education, Elementary School Science, Elementary School Mathematics, Curriculum Implementation
Eskrootchi, Rogheyeh; Oskrochi, G. Reza – Educational Technology & Society, 2010
Incorporating computer-simulation modelling into project-based learning may be effective but requires careful planning and implementation. Teachers, especially, need pedagogical content knowledge which refers to knowledge about how students learn from materials infused with technology. This study suggests that students learn best by actively…
Descriptors: Males, Females, Science Projects, Student Projects
Gao, Hong; Shen, E.; Losh, Susan; Turner, Jeannine – Journal of Interactive Learning Research, 2007
Collaborative concept mapping engages two or more students in coordinated and sustained efforts in the creation of one or more concept maps in order to learn and construct knowledge. It is a potentially powerful instructional strategy in that it fosters meaningful learning and group knowledge construction and helps the building of common ground…
Descriptors: Investigations, Educational Strategies, Concept Mapping, Virtual Classrooms
What Works Clearinghouse, 2007
The What Works Clearinghouse (WWC) reviewed interventions to promote middle school students' math knowledge and skills. Because there is some variation in how school districts organize middle school, we considered curricula aimed at students in grades 6 through 9, covering one or more of the following content areas: numbers and operations,…
Descriptors: Probability, Intervention, Data Analysis, Computer Software
Lee, Hollylynne Stohl; Hollebrands, Karen F. – Journal of Mathematical Behavior, 2006
The design of technology tools has the potential to dramatically influence how students interact with tools, and these interactions, in turn, may influence students' mathematical problem solving. To better understand these interactions, we analyzed eighth grade students' problem solving as they used a java applet designed to specifically accompany…
Descriptors: Feedback (Response), Problem Solving, Grade 8, Educational Technology
What Works Clearinghouse, 2007
"Saxon Math" curricula and materials are available for grades K through 12, with the content and skills designed to meet National Council of Teachers of Mathematics (NCTM) standards and various state standards. This WWC report focuses on middle school math curricula, defined as all Saxon Math curricula for grades 6 through 9. The…
Descriptors: Intervention, State Standards, Word Problems (Mathematics), Mathematics Teachers
Sinclair, Nathalie – International Group for the Psychology of Mathematics Education, 2003
Much has been said on matter of aesthetics and mathematics--perhaps most commonly articulated in relation to properties such as "beauty" and "elegance," which are used to distinguish good from not-so-good mathematical products. Despite its importance in the work of mathematicians, it has been argued that aesthetics cannot be incorporated into…
Descriptors: Epistemology, Aesthetics, Mathematics Instruction, Values
What Works Clearinghouse, 2004
The "I CAN Learn[R] Mathematics Curriculum" is designed to help ethnically diverse, inner-city students in grades 7 through 10 achieve parity in mathematics and problem-solving skills. It uses an interactive software program to teach pre-algebra and algebra. The "I CAN Learn[R] Algebra 1" course, which was used in all of the…
Descriptors: Urban Youth, Mathematics Curriculum, Algebra, Mathematics Instruction
Issakova, Marina; Lepp, Dmitri; Prank, Rein – International Journal for Technology in Mathematics Education, 2006
T-algebra is a project for creating an interactive learning environment for expression manipulation tasks of elementary algebra. Our main didactical principle has been that all the necessary decisions and calculations at each solution step should be made by the student, and the program should be able to understand the mistakes. This paper…
Descriptors: Algebra, Mathematics Instruction, Problem Solving, Equations (Mathematics)
Bakker, Arthur – Statistics Education Research Journal, 2004
This paper examines ways in which coherent reasoning about key concepts such as variability, sampling, data, and distribution can be developed as part of statistics education. Instructional activities that could support such reasoning were developed through design research conducted with students in grades 7 and 8. Results are reported from a…
Descriptors: Middle Schools, Grade 8, Cognitive Development, Sampling
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