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Showing 1 to 15 of 28 results Save | Export
Grabill, Jeffrey T.; Gretter, Sarah; Skogsberg, Erik – Johns Hopkins University Press, 2022
It's time to design the next iteration of higher education. There is no question that higher education faces significant challenges. Most of today's universities aren't prepared to tackle issues like demographic change, the continued defunding of public education, cost pressures, and the opportunities and challenges of educational technologies.…
Descriptors: Higher Education, Educational Change, Change Strategies, Design
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Frey, Regina F.; Brame, Cynthia J.; Fink, Angela; Lemons, Paula P. – CBE - Life Sciences Education, 2022
Problem solving plays an essential role in all scientific disciplines, and solving problems can reveal essential concepts that underlie those disciplines. Thus, problem solving serves both as a common tool and desired outcome in many science classes. Research on teaching problem solving offers principles for instruction that are guided by learning…
Descriptors: Problem Solving, Intellectual Disciplines, Teaching Methods, Science Education
Texley, Juliana; Ruud, Ruth M. – Redleaf Press, 2018
"Teaching STEM Literacy" is comprised of ready-made, open-ended lessons reviewed and tested by teachers, which help educators integrate STEM learning into the early childhood classroom. Lessons are linked to the Next Generation Science Standards, and encourage creative ideas for three-dimensional STEM learning that are developmentally…
Descriptors: STEM Education, Early Childhood Education, Skill Development, Inquiry
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Buell, Catherine A.; Greenstein, Steven; Wilstein, Zahava – PRIMUS, 2017
It is widely accepted in the mathematics education community that pedagogies oriented toward inquiry are aligned with a constructivist theory of learning, and that these pedagogies effectively support students' learning of mathematics. In order to promote such an orientation, we first separate the idea of inquiry from its conception as a…
Descriptors: Inquiry, Active Learning, Mathematics, Mathematics Instruction
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Nashon, Samson Madera; Anderson, David; Nielsen, Wendy S. – Asia-Pacific Forum on Science Learning and Teaching, 2009
The teaching of science, especially at pre-college and teacher education levels has undergone tremendous transformation over the years: from teacher-centred transmission to student-centred approaches rooted in constructivism. Whereas constructivism has been charged with all manner of shortfalls, it still can be of benefit to the way physics…
Descriptors: Preservice Teacher Education, Constructivism (Learning), Mathematics Education, Prior Learning
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Rutledge, Zachary; Norton, Anderson – Mathematics Educator, 2008
This article provides detailed analysis, from a radical constructivist perspective, of a sequence of letter-writing exchanges between a preservice secondary mathematics teacher and a high school student. This analysis shows the ways in which the preservice teacher gained understanding of the high school student's mathematics and attempted to pose…
Descriptors: Constructivism (Learning), Secondary School Mathematics, Preservice Teachers, Mathematics Teachers
Latterell, Carmen M. – Rowman & Littlefield Education, 2008
Parents are concerned about their children's math learning. Teachers are concerned about math teaching. When parents see what children are bringing home under the new curriculum, it is clear that their children are not working on the same mathematics that parents remember from the time when they were in school. But, the problem goes beyond grades…
Descriptors: Mathematics Education, Elementary Secondary Education, Parents, Teacher Educators
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Warren, Elizabeth; Benson, Samantha; Green, Sandra – Australian Primary Mathematics Classroom, 2007
The concept of a function is fundamental to virtually every aspect of mathematics and every branch of quantitative science. Presently this type of thinking is carolled at the secondary level, and yet it has many benefits for deepening the understanding of early arithmetic. This is particularly so in the way that operations can be considered as…
Descriptors: Constructivism (Learning), Active Learning, Algebra, Mathematics Instruction
Yong, Koay Chen; Saleh, Fatimah – Journal of Science and Mathematics Education in Southeast Asia, 2008
This study explores the mathematical problem-solving process of trainee teachers in a teachers' training institute. This research adopts a constructivist perspective that views learning mathematics as a process of constructing meaningful representation and knowledge as being constructed by the individual. The research methodology employs the case…
Descriptors: Constructivism (Learning), Protocol Analysis, Problem Solving, Trainees
Johnston, Howard – Education Partnerships, Inc., 2005
North Central Regional Educational Laboratory (NCREL) describes constructivism as an approach to teaching and learning based on the premise that cognition (learning) is the result of "mental construction." In other words, students learn by fitting new information together with what they already know. Constructivists believe that learning is…
Descriptors: Learner Engagement, Teaching Methods, Constructivism (Learning), Critical Thinking
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Venables, Anne; Tan, Grace – Journal of Information Technology Education, 2007
Genetic algorithms (GAs) are a problem solving strategy that uses stochastic search. Since their introduction (Holland, 1975), GAs have proven to be particularly useful for solving problems that are "intractable" using classical methods. The language of genetic algorithms (GAs) is heavily laced with biological metaphors from evolutionary…
Descriptors: Feedback (Response), Constructivism (Learning), Genetics, Knowledge Representation
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Loong, David Hung Wei – International Journal of Computers for Mathematical Learning, 1998
Describes the peer-apprenticeship learning situation between two students in distributed computer-mediated co-construction of mathematical meanings. As a result of assimilating the disposition towards playing with ideas, students were able to engage in meaningful idea-based social constructivism. Contains 60 references. (Author/ASK)
Descriptors: Computer Uses in Education, Constructivism (Learning), Cooperative Learning, Epistemology
Anderson, Terry – Learning, 1996
This paper answers several frequently asked questions about constructivism, including how to define it, how to plan the curriculum, how to assess student understanding, what to do with the information, where to begin, how students work in a constructivist classroom, and why constructivism is important. (SM)
Descriptors: Cognitive Development, Constructivism (Learning), Elementary Education, Learning Processes
Walker, Sydney R. – 2001
The approach in this book extends somewhat beyond comprehensive art education to embrace a more interdisciplinary character, through an emphasis on big ideas the overarching notions that reach beyond any particular discipline. Each chapter in the book focuses on one component. Chapters in the book are: (1) "Big Ideas and Artmaking"; (2)…
Descriptors: Art Activities, Art Education, Art Expression, Art Materials
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Honig, Alice Sterling – Early Child Development and Care, 2009
Interpersonal, familial, and situational risk factors that predict young children's aggression and non-compliance are explored. Here examples of specific techniques and provided to help teachers and parents effectively support children's early development of cooperative and prosocial behaviours as well as problem-solving skills in family and…
Descriptors: Aggression, Young Children, Compliance (Psychology), At Risk Students
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