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Kopelevich, Dmitry I.; Ziegler, Kirk J.; Lindner, Angela S.; Bonzongo, Jean-Claude J. – Chemical Engineering Education, 2012
Because rapid growth of nanotechnology is expected to lead to intentional and non-intentional releases, future engineers will need to minimize negative environmental and health impacts of nanomaterials. We developed two upper-level undergraduate courses centered on life-cycle assessment of nanomaterials. The first part of the course sequence…
Descriptors: Curriculum Design, Engineering Education, Higher Education, Science Education
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Tomlinson, Mike – School Science Review, 2014
Arguments about the content and structure of the curriculum for 14- to 18-year-old students in England continue apace, not least as a consequence of the National Curriculum review and proposed changes to qualifications. However, the majority of initiatives aimed at providing high-quality and rigorous technical pathways from age 14 onwards have…
Descriptors: Educational Philosophy, Curriculum Design, Curriculum Development, Course Organization
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DiLavore, Philip – Physics Teacher, 1973
Discusses the development of a basic physics course in which the technological device or system is used as a motivational factor or a focus for teaching of fundamental concepts. Included are a list of module titles and examples of textual materials derived from pressure cookers, toasters, and ionization chambers. (CC)
Descriptors: College Science, Course Content, Curriculum Design, Curriculum Development
Ackermans, S. T. M.; Trum, H. M. G. J. – Engineering Education, 1988
Discusses a two-year masters program; one year of lecture and practical training, and a second year on a supervised design task in an industry or development laboratory. Reviews the emphases of the curriculum. Describes the two paths to engineering careers in the Netherlands. (MVL)
Descriptors: College Science, Course Content, Curriculum Design, Curriculum Development
Frye, Bill J. – 1980
A nontraditional student can be defined as a student other than the new high school graduate. A 1980 profile by the American Association of Community and Junior Colleges shows that the typical nontraditional student is 36 years old, female (57 percent), has an income of $20,300, has attended two years of college, goes to school for career and/or…
Descriptors: Adjustment (to Environment), Adult Students, Cognitive Style, Course Content
Lowenstein, Michael Z.; Orsak, Charles – 1979
Phase 1 of a project in curriculum design and course development identified and is now developing a two-year solar engineering curriculum in response to the immediate need for trained solar manpower as indicated by research. The student-centered curriculum involves courses flowing from device to theory, intermixing of support and technical courses…
Descriptors: Associate Degrees, Community Colleges, Core Curriculum, Course Content
Wisconsin State Dept. of Public Instruction, Madison. – 1984
This operational level implementation guide is intended for the local or state curriculum designer of industrial arts/technology education curricula. A rationale and mission statement for industry and technology education appear first. The assumptions upon which program structures were developed are listed, and the three model program structures…
Descriptors: Communications, Construction (Process), Course Content, Course Descriptions
Broderick, John S. – 1982
A study examined curriculum policies and practices within technical and further education (TAFE) in Australia. To isolate and explain differences in patterns of curriculum development (CD) within the TAFE sector, researchers administered a set of three-tiered questionnaire information-gathering sheets to curriculum developers and project managers…
Descriptors: Administrator Attitudes, Adult Education, Case Studies, Comparative Analysis