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Peer reviewedRallo, Joseph C. – International Studies Notes, 1991
Urges the internationalization of the engineering curriculum to prepare students for the rigors of global competition in the international marketplace. Lists accreditation pressures and market incentives as barriers to needed diversity. Discusses engineering programs at several schools. Concludes that interdisciplinary inquiry is needed to provide…
Descriptors: Competition, Curriculum Development, Economic Opportunities, Educational Objectives
Peer reviewedFoss, Alan S; Goodeve, Peter J. – Chemical Engineering Education, 1991
The development of a computer program, called UC SIGNAL, that permits a student to develop a diagram of a control system configuration using an IBM AT or a PS/2 computer is described. The features of UC SIGNAL and its contribution to process control instruction are discussed. (KR)
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Computer Graphics
Peer reviewedMartinez Sancho, Maria Eugenie; And Others – Chemical Engineering Education, 1991
An activity in which students obtain a growth curve for algae, identify the exponential and linear growth phases, and calculate the parameters which characterize both phases is described. The procedure, a list of required materials, experimental conditions, analytical technique, and a discussion of the interpretations of individual results are…
Descriptors: Calculus, Chemistry, College Science, Computation
Zhang, Shixun; Liang, Yongxim – Chinese Education: A Journal of Translations, 1991
Describes reform of a Chinese vocational teaching program. Emphasizes a teaching structure combining theoretical and practical teaching. Lists prerequisites for an independent teaching system as suitable instructors (usually engineers), equipment for practice, and a transformation of the students' views toward study. Urges revision of teaching…
Descriptors: Educational Change, Electronic Technicians, Engineering Education, Experiential Learning
Computing in Engineering Education: From There, to Here, to Where? Part 2: Education and the Future.
Peer reviewedCarnahan, Brice – Chemical Engineering Education, 1992
Addresses the impact of computing on engineering education and the gradual infusion of computing work into the engineering curriculum since the early 1960s. This lecture discusses the academic computing environment in terms of initial developments, what students should know, how to build a network infrastructure, the "first" computing course, the…
Descriptors: Computer Assisted Instruction, Computer Uses in Education, Course Content, Curriculum Development
Peer reviewedRoberge, P. R. – Chemical Engineering Education, 1990
Discussed are expert systems development and teaching, the representation and processing of knowledge, knowledge representation in chemical engineering, and expert systems in chemical engineering. The seven phases of expert system development are illustrated. (CW)
Descriptors: Artificial Intelligence, Chemical Engineering, Chemistry, Cognitive Development
Peer reviewedHestekin, Jamie A; Sarkari, Marazban; Summers, Melissa A.; Ziemer, Katherine S.; Zuba, Leonard P. – Chemical Engineering Education (CEE), 1998
Describes the organization of a regional symposium to provide a learning environment that promotes professional development of graduate engineering students and the interactive exchange of ideas among regional industries and universities. Includes a brief history of the event, goals and guidelines for hosting such a symposium, and an illustration…
Descriptors: Chemical Engineering, Collegiality, Communication Skills, Conferences
Peer reviewedCoyle, Edward J.; Jamieson, Leah H.; Sommers, Larry S. – Michigan Journal of Community Service Learning, 1997
Engineering Projects in Community Service (EPICS) was created by Purdue University (Indiana) School of Electrical and Computer Engineering to broaden the education of engineering students by the use of an extended service-learning experience integrated into the engineering curriculum. EPICS provides local community service organizations with…
Descriptors: Curriculum Development, Engineering Education, Higher Education, Outreach Programs
Peer reviewedHaksever, A. Mehmet; Manisali, Ekrem – European Journal of Engineering Education, 2000
Proposes a framework to evaluate Ph.D. supervision requirements from a student's perspective. The evaluation documents perceived shortfalls between expected and provided supervision for personal, indirect research-related, and direct research-related help. Finds that the biggest discrepancy between expected and provided supervision was in direct…
Descriptors: Doctoral Degrees, Doctoral Programs, Engineering Education, Foreign Countries
Peer reviewedCasar, Jose – European Journal of Engineering Education, 2000
Defends the existence of a synergy between research and education, which requires the acceptance of two principles: (1) education of engineers as the creation of a pro-innovation attitude; and (2) research as an open-minded compromising attitude with progress of valuable knowledge. Argues that research-oriented centers are better-prepared to boost…
Descriptors: Educational Change, Educational Innovation, Engineering Education, Engineers
Peer reviewedTornkvist, Soren – European Journal of Engineering Education, 1998
Discusses creativity in higher education and argues that it is analyzed as an intentional act related to ideas from cognitive psychology. States that the culture of engineering education holds a narrow view of creativity and is based on outdated learning theories. Deeper philosophical implications of creativity, i.e., the quest for meaning, must…
Descriptors: Cognitive Psychology, Constructivism (Learning), Creativity, Educational Anthropology
Peer reviewedYoshioka, Takayoshi; Nishizawa, Hitoshi; Tsukamoto Takehiko – Community College Journal of Research and Practice, 2001
Describes a method used to provide mathematics students in Japanese colleges of engineering with supplementary exercises to aid their learning. Outlines the online operation of individualized exercises that help the students to understand mathematical methods used to solve problems and also mathematical ideas or concepts upon which methods are…
Descriptors: Computer Assisted Instruction, Distance Education, Engineering Education, Foreign Countries
Peer reviewedIler, Elisabeth; Slater, Morton – Academic Medicine, 1998
Gateway to Higher Education program provides selected minority students from New York City public high schools with rigorous preparation for college and careers in medicine, science, engineering, technology. The program is described and students' graduation rates, career plans, other program outcomes are discussed. A correlation has been…
Descriptors: Allied Health Occupations Education, College Preparation, Engineering Education, High Schools
Peer reviewedAcar, B. Serpil – European Journal of Engineering Education, 1998
Presents an overview of a course in systems engineering and creative systems at Loughborough University. Explains the way that creativity is encouraged, the use of systems understanding, and a model for design processes. Includes examples of projects and student work. (DDR)
Descriptors: Course Content, Creativity, Design, Engineering Education
Peer reviewedFerreira, Maria – Equity & Excellence in Education, 2002
Describes an after-school program designed to increase minority girls' interest in science and engineering. The program targeted seventh and eighth grade urban middle school girls and included such pedagogical practices as hands-on science, cooperative learning, mentoring, and role modeling by women engineers. Student surveys indicated that the…
Descriptors: After School Programs, Attitude Change, Cooperative Learning, Engineering Education


