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Yeliz Çelen; Nurdan Baran – Online Submission, 2023
While in traditional mathematics teaching methods, it is possible to prove concepts while teaching geometry and to reach generalizations that require more complex definitions by using concept findings, while in today's geometry teaching, learning that activates the student's discovery process gains importance. In this context, the aim of this…
Descriptors: Learning Strategies, Geometric Concepts, Geometry, Mathematics Instruction
Kossybayeva, Umitzhan; Shaldykova, Bagit; Akhmanova, Danna; Kulanina, Svetlana – Education and Information Technologies, 2022
The study describes an innovative methodology for teaching natural and mathematical sciences in the context of distance learning using modern technological solutions and based on the concepts of active social learning that involves constructivist, problem-oriented, project and research approaches. The proposed methodology was tested on 80 students…
Descriptors: Instructional Improvement, Natural Sciences, Mathematics Instruction, Science Instruction
Tularam, Gurudeo A.; Machisella, Patrick – International Journal for Mathematics Teaching and Learning, 2018
Traditional teaching approaches are generally teacher-directed, where students are taught in a manner that is conducive to sitting and listening. It is often argued that these approaches may not provide students with valuable learning skills, and rather that non-traditional approaches to teaching and learning might better endow students with such…
Descriptors: Conventional Instruction, Nontraditional Education, Learning Strategies, Foreign Countries
Baron, Lorraine M. – Mathematics Teacher, 2016
Twenty-five years of teaching grades 8-12 mathematics has shown the author that students learn best when they can construct their own knowledge (constructivism) and that students, given appropriate guidance, can and will take on responsibility for their own learning (self-regulation theory). This article describes some classroom tools that she has…
Descriptors: Mathematics Instruction, Secondary School Mathematics, Constructivism (Learning), Learner Engagement
Bonner, Sarah M.; Somers, Jennifer A.; Rivera, Gwendelyn J.; Keiler, Leslie S. – Instructional Science: An International Journal of the Learning Sciences, 2017
We investigated perceptions about learning strategy use and instructional roles among a sample of high needs adolescents (n = 230) who acted as near-peer instructional facilitators. The sample was drawn from science and mathematics classes in nonselective public secondary schools in New York City. Students participated in an inschool intervention…
Descriptors: Learning Strategies, Attitude Measures, Adolescents, Peer Teaching
Daniela, Linda, Ed.; Lytras, Miltiadis, Ed. – IGI Global, 2018
Educational strategies have evolved over the years due to research breakthroughs and the application of technology. By using the latest learning innovations, curriculum and instructional design can be enhanced and strengthened. Also, as learners move away from traditional scholarly media and toward technology-based education, students gain an…
Descriptors: Constructivism (Learning), Teaching Methods, Learning Strategies, Educational Technology
McFeetors, P. Janelle – North American Chapter of the International Group for the Psychology of Mathematics Education, 2013
High school mathematics students often complete homework and study for unit tests without support to consider how these actions could contribute to their mathematical learning. Learning to learn mathematics invites students to bring into view how they learn mathematics. The constructivist grounded theory study reported in this presentation…
Descriptors: Mathematics Instruction, Secondary School Mathematics, High School Students, Constructivism (Learning)
Stephan, Michelle L.; McManus, George E.; Dickey, Ashley L.; Arb, Maxwell S. – Mathematics Teaching in the Middle School, 2012
The process of developing definitions is underemphasized in most mathematics instruction. Investing time in constructing meaning is well worth the return in terms of the knowledge it imparts. In this article, the authors present a third approach to "defining," called "constructive." It involves modifying students' previous understanding of a term…
Descriptors: Mathematics Instruction, Geometric Concepts, Geometry, Teaching Methods
Evans, Michael A.; Wilkins, Jesse L. M. – Journal of Educational Computing Research, 2011
The reported exploratory study consisted primarily of classroom visits, videotaped sessions, and post-treatment interviews whereby second graders (n = 12) worked on problems in planar geometry, individually and in triads, using physical and virtual manipulatives. The goal of the study was to: 1) characterize the nature of geometric thinking found…
Descriptors: Educational Technology, Geometric Concepts, Grade 2, Geometry
Peer reviewedDraper, Roni Jo – Journal of Adolescent & Adult Literacy, 2002
Describes the goals and nature of school mathematics reform and the philosophy and nature of the constructivist classroom. Suggests that math teachers who are interested in creating reformed classrooms can look to constructivist theories of learning and content-area literacy theories and methods to provide the structure needed to make reform…
Descriptors: Constructivism (Learning), Content Area Reading, Educational Change, Learning Strategies
Peer reviewedAnthony, Glenda – Mathematics Education Research Journal, 1996
Examined (n=12) Year-12 students' awareness and application of learning strategies. Identified five possible reasons for students' failure to use appropriate learning strategies in mathematics. Without appropriate strategic learning behaviors students will be ill equipped to cope with the high cognitive demands of a constructivist learning…
Descriptors: Constructivism (Learning), Foreign Countries, High Schools, Interviews
Wessa, Patrick – Electronic Journal of e-Learning, 2009
This paper discusses the implementation of a new e-learning environment that supports non-rote learning of exploratory and inductive statistics within the pedagogical paradigm of social constructivism. The e-learning system is based on a new computational framework that allows us to create an electronic research environment where students are…
Descriptors: Electronic Learning, Feedback (Response), Constructivism (Learning), Learning Strategies
Peer reviewedNakahara, Tadao – Hiroshima Journal of Mathematics Education, 1997
This study aims to establish a theory for planning and practicing mathematics instruction that enables children to actively construct mathematical knowledge. Four types of constructive interactions are recognized on the basis of teaching practice. Processes of the constructive interactions and the requirements for realization of effective…
Descriptors: Cognitive Processes, Concept Formation, Constructivism (Learning), Elementary Education
Peer reviewedWiegel, Heide G. – Journal for Research in Mathematics Education, 1998
Investigates possibilities for and manifestations of collaborative work with pairs of kindergarten students as they worked on tasks designed to promote early number development. Students generated four strategies, and three themes emerged from the analysis of the cooperative solutions. Contains 34 references. (Author/ASK)
Descriptors: Computation, Constructivism (Learning), Cooperative Learning, Kindergarten
Peer reviewedKamii, Constance; Warrington, Mary Ann – Hiroshima Journal of Mathematics Education, 1997
Describes a method for teaching multiplication of fractions based on Piaget's constructivism. Instead of teaching the algorithm of multiplying the numerators and denominators, students are presented with many problems and ask to invent their own ways of solving them. (DDR)
Descriptors: Arithmetic, Cognitive Processes, Concept Formation, Constructivism (Learning)

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