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Cruickshank, Brandon J.; Olander, Julie – Journal of College Science Teaching, 2002
Presents an instrumental analysis laboratory section of a problem-based format that includes elements of authentic, investigative, and cooperative learning. Discusses students' attitudes, achievement, and effects of the problem-based instruction on the learning process and higher order thinking in laboratory students. (KHR)
Descriptors: Chemistry, Cooperative Learning, Higher Education, Inquiry
Dunlap, Joanna C.; Grabinger, Scott – Performance Improvement Quarterly, 2003
Several instructional features facilitate the development of metacognitive and self-directed learning skills, and disposition to lifelong learning: student autonomy, responsibility, and intentionality; intrinsically motivating activities; enculturation; discourse and collaboration among learners; and reflection. Describes and presents examples of…
Descriptors: Cognitive Processes, Cooperative Learning, Instructional Design, Intentional Learning
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Rosing, Jan – Biochemical Education, 1997
Highlights the differences between classical teaching methods and problem-based learning. Describes the curriculum and problem-based approach of the Faculty of Medicine at the Maastricht University and gives an overview of the implementation of biochemistry in the medical curriculum. Discusses the procedure for student assessment and presents…
Descriptors: Biochemistry, Educational Strategies, Evaluation, Foreign Countries
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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
Samson, Donald C., Jr. – Technical Writing Teacher, 1990
Proposes 10 hypothetical "mini-cases," and calls upon upperclass technical writing students either to select from 1 of 4 given responses or to devise their own. Explains that, after choosing answers, students collaborate to devise the best answers, then talk about their solutions in open class discussion. Provides suggested answers. (SG)
Descriptors: Class Activities, Conflict Resolution, Group Discussion, Higher Education
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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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Wieseman, Katherine C.; Cadwell, Doni – Social Studies and the Young Learner, 2005
The combination of students, local history, researching, and problem-based learning creates a powerful opportunity for learning to all involved. This article provides one example of how an elementary teacher and a teacher educator have used local resources and problem-based learning to teach a fourth grade unit about human communities and the…
Descriptors: Local History, Grade 4, Teaching Methods, Internet
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Beaton, M.J. – Science Scope, 2004
Reading Harry Potter aloud to the class one autumn sparked the students imaginations and also the authors'. As a result, that semester the author designed and taught a thematic unit based on Harry Potter. The students were able to identify with the 11-year old wizard and his adventures in a strange new world. In mathematics, language arts, and…
Descriptors: Physical Sciences, Biological Sciences, Fantasy, Childrens Literature
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Ryan, David Patrick; Marlow, Bernard – Journal of Continuing Education in the Health Professions, 2004
An observation at a problem-based learning, case-building meeting prompted the realization that building cases might itself be an effective educational intervention. We developed a process for a new continuing medical education technique that is peculiarly familiar that we call "build-a-case." Build-a-case has now been used for teaching and…
Descriptors: Teaching Methods, Health Personnel, Continuing Education, Clinics
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Chin, Christine; Chia, Li-Gek – Science Education, 2006
This case study involved year 9 students carrying out project work in biology via problem-based learning. The purpose of the study was to (a) find out how students approach and work through ill-structured problems, (b) identify some issues and challenges related to the use of such problems, and (c) offer some practical suggestions on the…
Descriptors: Teaching Methods, Investigations, Biology, Problem Based Learning
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Elton, Lewis – New Directions for Teaching and Learning, 2006
We now have pedagogical methods that can be successful--that is, effective--with most students at the undergraduate stage; one very promising method is problem-based or inquiry-based learning. (Contains 4 notes.)
Descriptors: Teaching Methods, Problem Based Learning, Research and Development, Theory Practice Relationship
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Kolodner, Janet L.; Camp, Paul J.; Crismond, David; Fasse, Barbara; Gray, Jackie; Holbrook, Jennifer; Puntambekar, Sadhana; Ryan, Mike – Journal of the Learning Sciences, 2003
This article tells the story of the design of Learning by Design(tm) (LBD), a project-based inquiry approach to science learning with roots in case-based reasoning and problem-based learning, pointing out the theoretical contributions of both, classroom issues that arose upon piloting a first attempt, ways we addressed those challenges, lessons…
Descriptors: Teaching Methods, Problem Based Learning, Communication Skills, Concept Formation
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Segers, Mien; Nijhuis, Jan; Gijselaers, Wim – Studies in Educational Evaluation, 2006
The study aimed to determine if students in a redesigned course, firstly, hold different perceptions of the assessment demands and, secondly, adjusted their learning strategies towards deeper learning. Contrary to expectations, the students in the original assignment-based (ABL) course (n = 406 students) adopted more deep- learning strategies and…
Descriptors: Educational Environment, Learning Strategies, Problem Based Learning, College Students
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Jones-Wilson, T. Michelle – Journal of College Science Teaching, 2005
In traditional science teaching, teachers expect the average student to implicitly learn and apply subtle concepts and to connect seemingly disjointed information. Teachers expect them to actively assemble the building blocks of critical thinking, often without example (Meyers 1986). The critical analysis of issues and problems is second nature to…
Descriptors: Course Content, Problem Solving, Teaching Methods, Science Instruction
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Boyd, Aimee M.; Jackson, Melinda L. – Journal of Educational Computing Research, 2004
This article discusses the effectiveness of a theoretical-based integrated learning environment (ILE) for training non-traditional learners to perform the skills required to be successful in entry-level jobs. The ILE places instruction in a real-world, workplace context with realistic settings, characters, and storylines. The multimedia interface…
Descriptors: Work Environment, Problem Based Learning, Teaching Methods, Computer Assisted Instruction
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