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James, Julie; Steimle, Alice – Teaching Children Mathematics, 2014
Persevering in problem solving and constructing and critiquing mathematical arguments are some of the mathematical practices included in the Common Core State Standards for Mathematics (CCSSI 2010). To solve unfamiliar problems, students must make sense of the situation and apply current knowledge. Teachers can present such opportunities by…
Descriptors: Mathematics Instruction, Problem Solving, Academic Standards, Mathematical Concepts
Burgess, Claudia R. – Teaching Children Mathematics, 2014
Designed for a broad audience, including educators, camp directors, afterschool coordinators, and preservice teachers, this investigation aims to help individuals experience mathematics in unconventional and exciting ways by engaging them in the physical activity of building geometric shapes using ropes. Through this engagement, the author…
Descriptors: Geometry, Mathematics Instruction, Teaching Methods, Geometric Concepts
Bose, Arindam – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
Debates on transfer of learning in mathematics are not new. Claims of situatedness of learning within tasks and non-transferability of knowledge between tasks are widely contested. Direct Application (DA) of learning is a common paradigm for characterising transfer which led to many instances of transfer failure (Bransford & Schwartz, 2001).…
Descriptors: Mathematics Instruction, Transfer of Training, Low Income Students, Middle School Students
Charlton, Patricia; Avramides, Katerina – IEEE Transactions on Learning Technologies, 2016
This paper focuses on a design based research study about STEM (Science, Technology, Engineering and Maths) learning by making through collaboration and production. This study examines learning by making by students to explore STEM using a constructionist approach with a particular focus on computer science and engineering. The use of IoT as a…
Descriptors: Computer Science Education, Engineering Education, STEM Education, Constructivism (Learning)
Sahlin, Johannes S.; Tsertsidis, Antony; Islam, M. Sirajul – Interactive Learning Environments, 2017
During recent years, many schools have started to implement information and communication technologies (ICTs)-based learning devices (such as laptops, tablets, mobile phones, and active boards) in the classroom settings in order to increase learning outcomes. The aim of this study is to find which activities and outcomes are evident in the usages…
Descriptors: Foreign Countries, Educational Technology, Technology Uses in Education, Technology Integration
Sánchez-Gómez, Ma. Cruz; Pinto-Llorente, Ana Ma.; García-Peñalvo, Francisco José – Digital Education Review, 2017
In the field of teaching a second language (L2), technology has always occupied a relevant position. The development of new technological tools has allowed the convergence of two learning environments, traditional face-to-face learning and virtual learning. This convergence has fostered the advantages of both types of instructions and the…
Descriptors: Foreign Countries, Preservice Teachers, Second Language Learning, English (Second Language)
Millis, Barbara J. – IDEA Center, Inc., 2012
As numerous research studies suggest, teachers who desire increased student learning should adopt active learning. This article explores the research, defines active learning, discusses its value, offers suggestions for implementing it, and provides six concrete examples of active learning approaches: Thinking-Aloud Pair Problem-Solving;…
Descriptors: Active Learning, Teaching Methods, Teamwork, Problem Solving
White, David W. – Technology and Engineering Teacher, 2015
In 1984, James Buffer and Michael Scott produced the book "Special Needs Guide for Technology Education" (Buffer and Scott, 1984). This was a pivotal offering insofar as it set the stage for technology education educators, at the time, to think about and be provided with information regarding students with special needs in their…
Descriptors: Student Needs, Special Needs Students, Technology Education, Engineering Education
Warli; Fadiana, Mu'jizatin – Higher Education Studies, 2015
The purpose of this research is to develop mathematical learning models that accommodate the cognitive styles reflective vs. impulsive students to build problem-solving skills, quality (valid, practical, and effective). To achieve the target would do research development (development research) and method development that consists of five stages,…
Descriptors: Mathematical Models, Mathematics Instruction, Cognitive Style, Problem Solving
Nasution, Andrea Arifsyah; Lukito, Agung – Journal of Science and Mathematics Education in Southeast Asia, 2015
In teaching proportion, the teachers usually give the students a formal formula, such as cross-multiplication, without providing them the meaning of proportionality. Thus, the students just apply it in order to solve proportional problems. However, it does not connote that they understand what proportionality means. In this paper, the authors…
Descriptors: Teaching Methods, Mathematics Instruction, Thinking Skills, Heuristics
Ye, Cheng; Segedy, James R.; Kinnebrew, John S.; Biswas, Gautam – International Educational Data Mining Society, 2015
This paper discusses Multi-Feature Hierarchical Sequential Pattern Mining, MFH-SPAM, a novel algorithm that efficiently extracts patterns from students' learning activity sequences. This algorithm extends an existing sequential pattern mining algorithm by dynamically selecting the level of specificity for hierarchically-defined features…
Descriptors: Learning Activities, Learning Processes, Data Collection, Student Behavior
Dejonckheere, Peter J. N.; De Wit, Nele; Van de Keere, Kristof; Vervaet, Stephanie – International Electronic Journal of Elementary Education, 2016
This study tested and integrated the effects of an inquiry-based didactic method for preschool science in a real practical classroom setting. Four preschool classrooms participated in the experiment (N= 57) and the children were 4-6 years old. In order to assess children's attention for causal events and their understanding at the level of…
Descriptors: Science Instruction, Early Childhood Education, Inquiry, Teaching Methods
Wasserman, Nicholas H. – Mathematics Teacher, 2014
Today, the Common Core State Standards for Mathematics (CCSSI 2010) expect students in as early as eighth grade to be knowledgeable about irrational numbers. Yet a common tendency in classrooms and on standardized tests is to avoid rational and irrational solutions to problems in favor of integer solutions, which are easier for students to…
Descriptors: Mathematics Instruction, Academic Standards, Number Concepts, Problem Solving
Ziv Feldman – Mathematics Teaching in the Middle School, 2014
This article describes an exciting exploration-based activity in which students develop an alternative definition of factor that can help them solve problems like the one presented above. Students work in groups to collect data, analyze the data to make conjectures, and then spend a significant amount of time debating and justifying their…
Descriptors: Learning Activities, Active Learning, Problem Solving, Data Collection
De Marsico, Maria; Sterbini, Andrea; Temperini, Marco – International Journal of Distance Education Technologies, 2013
The educational concept of "Zone of Proximal Development", introduced by Vygotskij, stems from the identification of a strong need for adaptation of the learning activities, both traditional classroom and modern e-learning ones, to the present state of learner's knowledge and abilities. Furthermore, Vygotskij's educational…
Descriptors: Problem Solving, Ability, Knowledge Level, Web Based Instruction

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