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Education Development Center, Inc., Newton, MA. – 1974
This USMES unit challenges students to find the best way to produce in quantity an item that is needed. The teacher resource book for the Manufacturing unit contains five sections. The first section describes the USMES approach to student-initiated investigations of real problems, including a discussion of the nature of the USMES "challenges" and…
Descriptors: Curriculum, Elementary Education, Elementary School Mathematics, Elementary School Science
Education Development Center, Inc., Newton, MA. – 1974
This USMES unit challenges students to find a way to design or make changes in things that they use or wear so that there will be a good fit. The teacher resource book for the Designing For Human Proportions unit contains five sections. The first section describes the USMES approach to student-initiated investigations of real problems, including a…
Descriptors: Curriculum, Design, Elementary Education, Elementary School Mathematics
Education Development Center, Inc., Newton, MA. – 1973
This USMES unit challenges students to recommend and try to have changes made which would improve the design or use of the school's play area. The teacher resource book for the Play Area Design and Use unit contains five sections. The first section describes the USMES approach to student-initiated investigations of real problems, including a…
Descriptors: Curriculum, Design Requirements, Elementary Education, Elementary School Mathematics
Peer reviewedDeVore, T. C.; Gallaher, T. N. – Journal of Chemical Education, 1986
Describes a physical chemistry experiment which uses spectroscopy to measure the heat of formation of Na2SiF6. Discusses the opportunities for students to see the use of a familiar instrument in an unfamiliar application, emphasizing that there are often many ways to attack problems in science. (TW)
Descriptors: Chemistry, College Science, Demonstrations (Educational), Experiential Learning
Peer reviewedDreisbach, Joseph H. – Journal of Chemical Education, 1986
Describes a new biochemistry laboratory course offered at the University of Scranton (Pennsylvania) which is designed to promote scientific curiosity and creativity. Uses a problems-oriented approach which provides students with independent learning experiences. Provides a listing of some of the course's laboratory exercises. (TW)
Descriptors: Biochemistry, College Science, Course Descriptions, Experiential Learning
Peer reviewedMisale, Judi M.; And Others – Teaching of Psychology, 1996
Describes a computer-assisted, interdisciplinary course in decision making developed to promote student participation and critical thinking. Students participate in 20 interactive exercises that utilize and illustrate psychological and economic concepts. Follow-up activities include receiving background information, group discussions, text…
Descriptors: Active Learning, Computer Assisted Instruction, Computer Uses in Education, Critical Thinking
Ritrovato, Louis – Heritage Communicator, 1988
Discusses the development and formal thrust of an environmental education program. Indicates that efforts have resulted in a viable learning process which transcends the traditional nature study program. Describes a learning continuum of activities focusing on concepts, values, and problem solving skills, organization of the system, future…
Descriptors: College Science, Conservation (Environment), Environmental Education, Environmental Interpretation
Peer reviewedHiggins, Les – Higher Education Research and Development, 1994
A graduate nursing course that integrates academic content with students' clinical experiences using problem-based learning is described and evaluated. The approach was found to be effective, stimulating, and relevant for the students. Closer monitoring of student progress and more instruction in learning strategies are recommended. (Author/MSE)
Descriptors: Clinical Experience, Clinical Teaching (Health Professions), Course Descriptions, Course Evaluation
Peer reviewedWoodward, Ernest; And Others – Arithmetic Teacher, 1991
Describes an eight-day graphing unit for grades four through six using data collected from a local cemetery. Provides the activities of each day and excerpts of discussions taking place during the lessons. Concludes that working with real data helps students construct meaningful graphs. (MDH)
Descriptors: Data Analysis, Data Collection, Elementary Education, Enrichment Activities
Peer reviewedBoud, David – Higher Education Research and Development, 1993
A perspective on teaching and learning in higher education that regards the learner's experience as primary is outlined. Some propositions about learning from experience are made, a model of learning from experience is discussed, and implications for instructional design are examined. Major areas for curriculum development are identified.…
Descriptors: College Instruction, Conceptual Tempo, Curriculum Development, Experiential Learning
Peer reviewedShepherd, Anne; Cosgriff, Bryna – Journal of Planning Education and Research, 1998
Details the process of implementing problem-based learning in the classroom, illustrated by a planning course. Problem-based learning is a promising method that helps students acquire the skills and knowledge to be more effective practitioners by tackling real-world problems. The instructor, as cognitive coach, ensures that students are active,…
Descriptors: Active Learning, Administrator Education, Classroom Techniques, College Instruction
Peer reviewedMellor, Robert – Higher Education Research and Development, 1998
The University of Technology, Sydney (Australia) graduate certificate program in local government management grew from a desire for program flexibility and relevance and resulted in a partnership with local government. The one-year program has a variety of delivery modes, with both delivery and content negotiated by participants, employers, and…
Descriptors: Agency Cooperation, Case Studies, Experiential Learning, Field Experience Programs
Peer reviewedMcFaden, Dennis; And Others – NASSP Bulletin, 1996
A Virginia science and technology high school restructured its ninth-grade curriculum by clustering three core courses in an integrated program. Students work with resource managers at Mason Neck National Wildlife Refuge to gather data on species inhabiting the area. They prepare well-researched reports and present them to peers, faculty, and…
Descriptors: Community Services, Context Effect, Cooperative Programs, Curriculum Development
Martin, Jenni – Zip Lines: The Voice for Adventure Education, 1997
Describes the group dynamics, science discovery processes, and activities involved in building a raft at camp. The project used recycled products and required group cooperation; critical thinking about density, buoyancy, and balance; use of familiar resources in creative ways; and application of previously learned facts. (SAS)
Descriptors: Camping, Construction (Process), Cooperative Learning, Elementary Secondary Education
Webster, Joan Parker; Wiles, Peter; Civil, Marta; Clark, Stacy – Journal of American Indian Education, 2005
Math in a Cultural Context (MCC) is based in traditional Yup'ik cultural values and ways of knowing and representing the world, which provide access to math concepts through hands-on exploration and active problem solving. This case illustrates how a novice and outsider teacher successfully implemented MCC in a classroom with predominantly…
Descriptors: Culturally Relevant Education, Mathematics Instruction, Mathematics Curriculum, Alaska Natives

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