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Joseph M. Furner – International Journal of Education in Mathematics, Science and Technology, 2024
This paper will provide several examples of science and mathematics integration: navigation/map-reading, ecology/ecosystems/population growth, and chemistry/molecular structures. This paper underscores integrating STEM subjects with problem-based learning with technology such as video/computer simulations/programming/coding and the dynamic free…
Descriptors: Problem Based Learning, Mathematics Instruction, Educational Technology, Geometry
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Barrett, Brian D. – British Journal of Sociology of Education, 2012
This paper draws on the theory of Basil Bernstein and on more recent applications of it by Rob Moore, John Beck and Michael Young to respond to recent calls for the replacement of discipline-based university faculties and departments with "problem-based" curricula and programmes of study. It considers, particularly, the potential…
Descriptors: Higher Education, Interdisciplinary Approach, Universities, Problem Based Learning
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Martinez, Monica; Schilling, Susan – New Directions for Youth Development, 2010
Given that information age technologies are as natural to the Net generation as breathing, it is time to provide learning experiences that maximize their use in schools. The authors argue that integrating technology into learning is central to creating the meaningful learning opportunities needed to engage and motivate youth today. To achieve this…
Descriptors: Educational Change, Educational Technology, Computer Uses in Education, Technology Integration
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Luke, Carmen – Reading Research Quarterly, 2003
Proposes that collaborative, constructivist, and problem-based learning are powerful conceptual antidotes to pedagogy as transmission and knowledge as parceled facts and objects. Notes that as more texts become available in digital form, users access information in different ways that have profound ramifications for reading and writing. Contends…
Descriptors: Constructivism (Learning), Elementary Secondary Education, Interdisciplinary Approach, Literacy
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Elrick, R. M.; And Others – Journal of Natural Resources and Life Sciences Education, 1996
Explores the myths and realities of university teaching that impede change and offers examples of teaching faculty working together, including the case method, problem-based learning, and interdisciplinary courses. Concludes that when teaching has collegial exchange and review, it becomes possible to develop a curriculum that enhances students'…
Descriptors: College Faculty, Communication Skills, Educational Change, Higher Education
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Hernandez-Encuentra, Eulalia; Sanchez-Carbonell, Javier – Higher Education in Europe, 2005
This article describes the application of Problem-Based Learning (PBL) methodology in the context of a student congress, arguing that such new approaches to learning are best-suited to the goals of the Bologna Process. The Congress in question enabled Spanish graduate students in Psychology, many of them mid-career professionals, to increase their…
Descriptors: Teaching Methods, Learning Experience, Learning Motivation, Educational Change
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Halperin, Edward C.; And Others – Academic Medicine, 1995
From universities' experiences, medical schools can learn innovative techniques of curriculum assessment and teaching, how to handle diversity issues, and ways to expand the definition of scholarship. In turn, medical schools can teach universities the importance of fiscal and regulatory accountability, benefits of interdisciplinary efforts,…
Descriptors: Accountability, College Administration, College Instruction, Coping
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Allen, Deborah E.; And Others – New Directions for Teaching and Learning, 1996
In its use of complex, real-world problems to introduce concepts and motivate learning in an active and cooperative learning environment, problem-based learning is a powerful alternative to the passive lecture in introductory college science. Use of technology and multimedia instruction, focus on large classes, and use of interdisciplinary…
Descriptors: Active Learning, Classroom Techniques, College Instruction, College Science
Kierstead, Fred; Bowman, Jim – 1984
Dichotomies that must be addressed if U.S schools are to succeed in globalizing studies and perspectives are examined and an alternative learning model is presented. The dichotomies are (1) teacher-centered vs. student-centered learning, (2) subject-centered vs. problem-centered learning, (3) disciplinary vs. interdisciplinary learning, (4)…
Descriptors: Change Agents, Computers, Developmental Programs, Early Childhood Education
Putnam, A. R. – 2001
Research on how the brain works has resulted in wider-scale adoption of the principles of problem-based learning (PBL) in many areas of education, including technology education. The PBL approach is attractive to curriculum developers because it is based on interdisciplinary learning, results in multiple outcomes, is integrated and…
Descriptors: Active Learning, Adoption (Ideas), Classroom Techniques, Competency Based Education