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Eberlein, Thomas; Kampmeier, Jack; Minderhout, Vicky; Moog, Richard S.; Platt, Terry; Varma-Nelson, Pratibha; White, Harold B. – Biochemistry and Molecular Biology Education, 2008
Problem-based learning, process-oriented guided inquiry learning, and peer-led team learning are student-centered, active-learning pedagogies commonly used in science education. The characteristic features of each are compared and contrasted to enable new practitioners to decide which approach or combination of approaches will suit their…
Descriptors: Problem Based Learning, Peer Teaching, Science Instruction, Inquiry
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Cohen, Norman R. – Biochemical Education, 1994
Provides examples to aid in describing the transferable skills gained rather than rote memorization through the use of problem-based learning. Also demonstrates how the distance-learner (student with poor access to libraries and virtually no interaction with other students) can benefit from certain elements of a problem-based approach. (ZWH)
Descriptors: Biology, Cognitive Style, Distance Education, Higher Education
California Integrated Waste Management Board, Sacramento. – 2001
Closing the Loop (CTL) is a science curriculum designed to introduce students to integrated waste management through awareness. This document presents five lesson plans focusing on developing an understanding of natural resources, solid wastes, conservation, and the life of landfills. Contents include: (1) "What Are Natural Resources?"; (2)…
Descriptors: Elementary Education, Environmental Education, Lesson Plans, Problem Based Learning
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Woods, Donald R. – Journal of College Science Teaching, 1985
Presents: (1) a list of ideas for teaching problem-solving; (2) a review of a problem-solving book used in medical education; and (3) a discussion of an approach called problem-based learning. (DH)
Descriptors: Books, College Science, Higher Education, Learning Strategies
Polman, Joseph L. – 2000
This interpretive case study of a teacher aims to provide an account of the difficulties and rewards of putting innovative teaching into practice. Detailed descriptions of classroom life are used to explore one teacher's attempts to make technology-enhanced, open-ended inquiry a successful mode of teaching science in the secondary school…
Descriptors: Change Strategies, Computer Uses in Education, Educational Policy, Problem Based Learning
National Aeronautics and Space Administration, Washington, DC. – 2001
The NASA "Why?" Files is a free annual instructional distance learning program that integrates science, mathematics, and technology. The program targets 3rd through 5th grade students and uses a problem-based teaching approach. This lesson guide includes four segments, each with objectives, vocabulary, video component resources, career ideas, and…
Descriptors: Astronomy, Distance Education, Earth Science, Educational Technology
Bohland, Mark A. – 2003
This guide features a problem-based learning (PBL) unit specifically designed for student-centered learning of new and meaningful content on diseases. Students grapple with a complex and changing problem that requires higher level thinking skills in an environment in which students work both individually and in collaboration with others. Includes…
Descriptors: Biology, Communicable Diseases, Cooperative Learning, Creative Thinking
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Duncan-Hewitt, Wendy C. – American Journal of Pharmaceutical Education, 1992
A University of Toronto pharmaceutics course which organizes information about physical chemistry around real problems, presented as case studies or laboratory projects, is described. Problems were addressed in class discussions or by unsupervised eight-student groups using self- and group evaluation procedures. Results are discussed, and three…
Descriptors: Case Studies, Chemistry, Course Descriptions, Evaluation Methods
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Roth, Wolff-Michael – School Science and Mathematics, 1993
Provides an example of the integration of science and mathematics learning of one high school physics student in a constructivist classroom. Discusses the student's integration of mathematical and nonmathematical representations and of different mathematical representations in a nonuniform acceleration experiment. Describes a model for integrating…
Descriptors: Case Studies, Constructivism (Learning), Graphs, Integrated Activities
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Farnsworth, Wells E.; And Others – Biochemical Education, 1988
Reports on the development of a modified Problem-Based Learning approach to a freshman course. Enables faculty to teach basic biochemical concepts and principles as well as their application to clinical cases. Includes the syllabus and workshop goals based on Bloom's taxonomy. (MVL)
Descriptors: Biochemistry, Clinical Teaching (Health Professions), College Science, Course Descriptions
Stepanek, Jennifer – 1999
This booklet offers teachers a variety of strategies and resources for providing different levels of content and activities that will challenge all students, including gifted learners. It begins by discussing evolving definitions of giftedness and theories of intelligence. Means of identifying gifted students and indicators of mathematical and…
Descriptors: Ability Grouping, Ability Identification, Academically Gifted, Classroom Environment
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Pizzini, Edward L.; Shepardson, Daniel P. – Journal of Research in Science Teaching, 1992
Compares models of the classroom dynamics for a traditional laboratory setting and a problem-solving-centered environment, both at the eighth grade science level. Descriptive data indicate no differences in the models, whereas path analyses suggest that, in the problem-solving model, student behaviors significantly correlate to lesson structure,…
Descriptors: Causal Models, Classroom Research, Classroom Techniques, Cognitive Style
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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