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Conrad Borchers; Paulo F. Carvalho; Meng Xia; Pinyang Liu; Kenneth R. Koedinger; Vincent Aleven – Grantee Submission, 2023
In numerous studies, intelligent tutoring systems (ITSs) have proven effective in helping students learn mathematics. Prior work posits that their effectiveness derives from efficiently providing eventually-correct practice opportunities. Yet, there is little empirical evidence on how learning processes with ITSs compare to other forms of…
Descriptors: Problem Solving, Intelligent Tutoring Systems, Mathematics Education, Learning Processes
Nitesh Kumar Jha; Plaban Kumar Bhowmik; Kaushal Kumar Bhagat – Educational Technology Research and Development, 2024
A majority of research in Computational Thinking (CT) mainly focuses on teaching coding to school students. However, CT involves more than just coding and includes other skills like algorithmic thinking. The current study developed an Online Inquiry-based Learning Platform for Computational Thinking (CT-ONLINQ) that follows Inquiry-Based Learning…
Descriptors: Thinking Skills, Computer Science Education, Comparative Analysis, Problem Solving
Mario de la Puente; Carlos de Oro; Jose Torres; Maria Ripoll; Heidy Rico Fontalvo – Mathematics Teaching Research Journal, 2024
Over a sixteen-week term, the study dove into how chess could enhance math skills for eleventh graders at three public schools in Cartagena, Colombia. It assumed that chess would sharpen their minds and problem-solving prowess. Seventy-one pupils took part, trying out a chess-centric way of learning. Researchers used multiple statistical…
Descriptors: Foreign Countries, High School Students, Grade 11, Mathematical Enrichment
Zakirova, Venera G.; Zelenina, Natalia A.; Smirnova, Ludmila M.; Kalugina, Olga A. – EURASIA Journal of Mathematics, Science and Technology Education, 2019
The introduction of new standards of mathematical education requires to stop understanding of the learning process as the transfer of ready-made knowledge and experience. Educational activity built on the principle of self-construction of knowledge by schoolchildren is highly demanded in new environment. Tasks with parameters have high learning,…
Descriptors: Mathematics Instruction, Teaching Methods, Problem Solving, Mathematical Concepts
Satsangi, Rajiv; Billman, Rachel H.; Raines, Alexandra R. – Exceptionality, 2021
Students with a mathematics learning disability face many challenges learning algebraic curricula. To support this population, targeted supplementary instruction beyond what is provided by a classroom teacher may benefit their learning outcomes. In this context, video modeling designed in accordance with an established instructional design…
Descriptors: Video Technology, Multimedia Instruction, Mathematics Instruction, Modeling (Psychology)
Bülbül, Buket Özüm; Güler, Mustafa; Gürsoy, Kadir; Güven, Bülent – International Online Journal of Education and Teaching, 2020
Although numerous studies have investigated how technology affects academic achievement, very few have focused on the purpose of the use of technology in mathematics education. This current study examines how student teachers (STs) benefit from GeoGebra as one of the Dynamic Geometry Software (DGS) while solving continuity problems. In order to…
Descriptors: Student Teachers, Geometry, Problem Solving, Mathematics Education
Rajiv Satsangi; Rachel H. Billman; Alexandra R. Raines; Anna M. Macedonia – Journal of Special Education, 2021
An established research base exists for using video modeling to teach students with severe disabilities. However, the application of this strategy for teaching academic skills to students with a learning disability is less known, particularly in secondary mathematics. Video modeling provides a resource for supplementary instruction using…
Descriptors: Algebra, Mathematics Instruction, Teaching Methods, Video Technology
Usta, Neslihan; Söylemez, Seyma – International Online Journal of Education and Teaching, 2020
The aim of this study was to investigate the effects of teaching the subject of "Functions", utilizing scenarios associated with everyday life, to high school students in terms of their academic achievements. The study was carried out with twenty 10th grade students at a high school in a district of Bartin, Turkey in the 2018-2019 school…
Descriptors: Instructional Effectiveness, Mathematics Instruction, Mathematics Achievement, Vignettes
Duman, Bilal; Yakar, Ali – International Journal of Contemporary Educational Research, 2019
The purpose of the present study is to determine the effects of two multi-modal representations, the use of text and graph for learning, on problem solving, academic achievement and retention when used in a process-based instruction (PBI). The study was designed as quasi-experimental study complying with pretest-posttest control group design. The…
Descriptors: Learning Modalities, Process Education, Preservice Teachers, Problem Solving
Bundock, Kaitlin; Hawken, Leanne S.; Kiuhara, Sharlene A.; O'Keeffe, Breda V.; O'Neill, Robert E.; Cummings, Margarita B. – Learning Disability Quarterly, 2021
Implementing an integrated sequence of concrete-representational-abstract depictions of mathematics concepts (CRA-I) can improve the mathematics achievement of students with disabilities, and explicit instructional strategies involving problem-solving heuristics and student verbalizations can help facilitate students' conceptual understanding of…
Descriptors: High School Students, Students with Disabilities, Problem Solving, Mathematics Instruction
Rau, Martina A.; Aleven, Vincent; Rummel, Nikol – Journal of Educational Psychology, 2015
Research shows that multiple external representations can significantly enhance students' learning. Most of this research has focused on learning with text and 1 additional graphical representation. However, real instructional materials often employ multiple "graphical" representations (MGRs) in addition to text. An important open…
Descriptors: Graphs, Instructional Materials, Instructional Effectiveness, Educational Experiments
Earnest, Darrell Steven – ProQuest LLC, 2012
This dissertation explores fifth and eighth grade students' interpretations of three kinds of mathematical representations: number lines, the Cartesian plane, and graphs of linear functions. Two studies were conducted. In Study 1, I administered the paper-and-pencil Linear Representations Assessment (LRA) to examine students'…
Descriptors: Mathematical Concepts, Graphs, Visual Aids, Grade 5
Zajkov, Oliver; Mitrevski, Boce – European Journal of Physics Education, 2012
Students have problems with understanding, using and interpreting graphs. In order to improve the students' skills for working with graphs, we propose Manual Video Measurement (MVM). In this paper, the MVM method is explained and its accuracy is tested. The comparison with the standardized video data software shows that its accuracy is comparable…
Descriptors: Science Instruction, Video Technology, Computer Software, Physics
Eu, Leong Kwan – Malaysian Online Journal of Educational Technology, 2013
The purpose of this study is to investigate the effect of using the Geometer's Sketchpad software in the teaching and learning of graph functions among Form Six (Grade 12) students in a Malaysian secondary school. This study utilized a quasi-experimental design using intact group of students from two classes in an urban secondary school. Two…
Descriptors: Foreign Countries, Secondary School Students, Quasiexperimental Design, Computer Uses in Education
Ratliff, Bobby Kevin – ProQuest LLC, 2009
The purpose of this study was to determine (1) strategies students use when solving composition problems and the difficulties they encounter; (2) conceptions and/or misconceptions students have with respect to composition of functions; and (3) the effect of using dynamic visualization during instruction on students' understanding of composition of…
Descriptors: Test Items, Visualization, Concept Formation, Calculus
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