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Wang, Haohao; Posey, Lisa – Online Submission, 2011
Linear algebra is a standard undergraduate mathematics course. This paper presents an overview of the design and implementation of an inquiry-based teaching material for the linear algebra course which emphasizes discovery learning, analytical thinking and individual creativity. The inquiry-based teaching material is designed to fit the needs of a…
Descriptors: Mathematics Education, Discovery Learning, Instructional Materials, Algebra
Roth, Wolff-Michael; Van Eijck, Michiel – Science Education, 2010
Challenged by a National Science Foundation-funded conference, 2020 Vision: The Next Generation of STEM Learning Research, in which participants were asked to recognize science, technology, engineering, and mathematics (STEM) learning as lifelong, life-wide, and life-deep, we draw upon 20 years of research across the lifespan to propose a new way…
Descriptors: Reflective Teaching, Literature Reviews, Science Education, Technology Education
de Silva, Eugene, Ed. – IGI Global, 2015
While the great scientists of the past recognized a need for a multidisciplinary approach, today's schools often treat math and science as subjects separate from the rest. This not only creates a disinterest among students, but also a potential learning gap once students reach college and then graduate into the workforce. "Cases on…
Descriptors: Teaching Methods, Science Education, Hands on Science, Elementary Secondary Education
Hiler, Edward A. – Journal of Engineering Education, 1972
A new required course for freshmen including participating seniors and industrial consultants in presenting and evaluating actual creative design problems facing their industry is put together with a creative engineering design project. Student responses were positive and enthusiastic. (DF)
Descriptors: Agricultural Engineering, College Science, Course Descriptions, Creativity
Nevill, Gale E., Jr.; O'Connor, John A. – Engineering Education, 1972
Describes an experimental design course for engineering and art students based on the concepts of creativity and innovation. Class involvement was encouraged and groups of three people worked best with mixing of engineering and non-engineering students. Students expressed interest and enthusiasm for the course. (DF)
Descriptors: Art, College Science, Creativity, Design
Schrader, Charles R. – Journal of Engineering Education, 1972
Discusses the need for a different educational system and emphasis to promote creativity in engineering. Distinguishes between science and engineering and the requirements for education in each of these fields. (TS)
Descriptors: College Science, Creativity, Educational Improvement, Educational Responsibility
Feldhusen, John F. – Journal of Engineering Education, 1972
Descriptors: College Science, Course Evaluation, Creativity, Educational Strategies
Chemecology, 1991
The drawn ideas of inventors Edison and Bell are analyzed in a systematic way to help understand the inventive process and how inventors think. By storing sketches on a computer the researchers have been able to recreate the probable lines of reasoning used by the inventors. (KR)
Descriptors: College Science, Computers, Creativity, Engineering Education
Tribus, Myron – Engineering Education, 1971
The author feels the student should be asked to creatively solve realistic problems beginning in the freshman and sophomore years. The professor becomes a coach" to help the student develop his abilities rather than teach" skills that someone else has developed. (TS)
Descriptors: College Science, Course Descriptions, Creativity, Engineering Education

Felder, Richard M. – Chemical Engineering Education, 1988
Suggests methods for achieving creativity, including divergent and convergent thinking, in engineering education. Discusses creativity exercises, creating an atmosphere hospitable to creativity, and identifying the creatively gifted. (YP)
Descriptors: College Science, Convergent Thinking, Creativity, Creativity Tests
Wilczynski, V.; And Others – 1993
One definition of creativity is the conviction that each and every existing idea can be improved. It is proposed that creativity in an engineering design process can be encouraged by the adoption of Total Quality Management (TQM) methods based on a commitment to continuous improvement. This paper addresses the introduction and application of TQM…
Descriptors: College Science, Computer Assisted Design, Course Descriptions, Creativity

Christensen, James J. – Chemical Engineering Education, 1988
Considered is the importance of teaching creativity in the field of chemical engineering. Lists major concepts in teaching creativity. Suggests ways of bringing creativity into chemistry instruction. (MVL)
Descriptors: Chemical Engineering, College Science, Creative Activities, Creative Development