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Miriam Herrero-Martín; Cristina Aldavero; Alfonso Lahuerta; Luis Carro; Azael J. Herrero – International Journal of Game-Based Learning, 2025
This study explores the potential of modern board games to foster key competences in primary education. A total of 238 students and 17 teachers from Spain, Romania, and Greece implemented 29 board games targeting Linguistic Communication, Mathematical Competence, and Learning to Learn. The intervention included teacher training, pedagogical…
Descriptors: Foreign Countries, Game Based Learning, Elementary School Students, Elementary School Teachers
Bertolone-Smith, Claudia M.; Gillette-Koyen, Linda – Teaching Children Mathematics, 2019
The first author's initial attempts at a whole-class mathematics discussion were woefully dysfunctional. Ten second graders showing their answers to a missing addend question about the number of children left riding a school bus did not result in the mathematical epiphany that the textbook promised. She did not give up on using mathematical…
Descriptors: Mathematics Education, Mathematics Instruction, Teaching Methods, Classroom Communication
Xu, Binyan, Ed.; Zhu, Yan, Ed.; Lu, Xiaoli, Ed. – Research in Mathematics Education, 2021
This book seeks to illustrate the research on mathematics competencies and disposition in China according to the conceptual development and empirical investigation perspective. Mathematics education in China has a distinguishing feature a focus of attention to mathematical competency. Paradoxically, there has not been an explicit, refined, and…
Descriptors: Mathematics Skills, Mathematics Achievement, Mathematics Education, Evaluation Methods
Trisnawati; Pratiwi, Rani; Waziana, Winia – Malikussaleh Journal of Mathematics Learning, 2018
This study aims to obtain a description of the application of Realistic Mathematic Education (RME) that can improve students' mathematical communication ability. The type of research used is a classroom action research that refers to the design of Kemmis and Mc.Taggart research they are planning, action, observation, and reflection. The results…
Descriptors: Mathematics Education, Mathematics Skills, Communication Skills, Action Research
Zhao, Manqian; Lapuk, Karen – Mathematics Teacher, 2019
According to the National Center for Education Statistics (2016), the number of public school students in the United States who were English learners (ELs) was estimated at 4.5 million. However, in 2005, the national standardized testing scores (Fry 2007) show that about 51 percent of eighth-grade EL students were behind other students in reading…
Descriptors: Mathematics Education, Mathematics Instruction, English Language Learners, Mathematics Teachers
Hassi, Marja-Liisa; Laursen, Sandra L. – Journal of Transformative Education, 2015
This article introduces the concept of personal empowerment as a form of transformative learning. It focuses on commonly ignored but enhancing elements of mathematics learning and argues that crucial personal resources can be essentially promoted by high engagement in mathematical problem solving, inquiry, and collaboration. This personal…
Descriptors: Transformative Learning, Student Empowerment, Mathematics Education, Semi Structured Interviews
Stephens, Max; Keqiang, Richard Xu – Journal of Mathematics Education at Teachers College, 2014
In the Western developed world, the language of 21st century competencies, also referred to as 21st century skills or competences, is a powerful means of drawing attention to links between the secondary school curriculum, post-secondary education, and the social and economic imperatives of the developed economies. This paper will analyze different…
Descriptors: Mathematics Instruction, Mathematics Education, Mathematics Curriculum, Foreign Countries
Jang, Hyewon – Journal of Science Education and Technology, 2016
Gaps between science, technology, engineering, and mathematics (STEM) education and required workplace skills have been identified in industry, academia, and government. Educators acknowledge the need to reform STEM education to better prepare students for their future careers. We pursue this growing interest in the skills needed for STEM…
Descriptors: STEM Education, Work Environment, Interrater Reliability, Engineering Education
Kim, Min Kyeong; Cho, Mi Kyung – EURASIA Journal of Mathematics, Science & Technology Education, 2015
Recently, many countries have considered various assessment methods in order to measure multiple ways of students' thinking skills and problem solving ability. Recently, the Ministry of Education, Science and Technology [MOEST] (2009) in Korea revised the mathematics curriculum, which now more focuses on enabling students to explain mathematically…
Descriptors: Mathematics Education, Thinking Skills, Asians, Problem Solving
Toews, Carl – PRIMUS, 2012
Mathematical modeling occupies an unusual space in the undergraduate mathematics curriculum: typically an "advanced" course, it nonetheless has little to do with formal proof, the usual hallmark of advanced mathematics. Mathematics departments are thus forced to decide what role they want the modeling course to play, both as a component of the…
Descriptors: Majors (Students), Mathematics Curriculum, Undergraduate Students, Communication Skills
Lynch, Sararose D.; Bolyard, Johnna J. – Mathematics Teaching in the Middle School, 2012
This article describes an action research project in which a sixth-grade teacher engaged students in writing about their problem-solving efforts. The written mathematical work provided new artifacts for examining students' metacognitive and mathematical communication skills, prompting the teacher to make instructional changes to address students'…
Descriptors: Mathematics Education, Action Research, Problem Solving, Communication Skills
Arizona Department of Education, 2009
Every student should understand and use all concepts and skills from the previous grade levels. The standard is designed so that new learning builds on preceding skills. Communications, Problem-solving, Reasoning & Proof, Connections, and Representation are the process standards that are embedded throughout the teaching and learning of all…
Descriptors: Numeracy, Number Concepts, Grade 3, Mathematics Education
Arizona Department of Education, 2009
Every student should understand and use all concepts and skills from the previous grade levels. The standard is designed so that new learning builds on preceding skills. Communications, Problem-solving, Reasoning & Proof, Connections, and Representation are the process standards that are embedded throughout the teaching and learning of all…
Descriptors: Numeracy, Number Concepts, Grade 5, Mathematics Education
Taylor, J. A.; McDonald, C. – International Journal of Mathematical Education in Science and Technology, 2007
Development of mathematical problem solving skills is an age old problem in mathematics. This paper details the design of a component of a first year university mathematics course in which group work and mathematical communication skills, especially writing skills, are used as a tool to develop non-routine problem solving skills. In this design…
Descriptors: Writing Skills, Student Attitudes, Problem Solving, Communication Skills
Peer reviewedHolmes, P. – Mathematics in School, 1973
The organization of a project on the topic of communications is detailed, and examples of some of the workcards used with the project are provided. Two open'' problems along with some student responses are also included. For the first article in this series, see Volume 1 Number 7 pp9-10, November 1972. (DT)
Descriptors: Communication Skills, Instruction, Instructional Materials, Laboratory Procedures
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