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Malave, Cesar O.; Watson, Karan L. – 2000
This paper presents implementation details related to the freshman integrated curriculum at Texas A&M University. Specifically, the need for strong integration between physics, calculus, engineering problem solving, engineering design graphics, and English is emphasized. The paper presents a brief summary of the design and pilot implementation…
Descriptors: Calculus, College Freshmen, Curriculum Development, Educational Technology
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Huang, David Wenhao; Aagard, Hans; Diefes-Dux, Heidi – Association for Educational Communications and Technology, 2004
This article describes the purpose, development, and implementation of a cognitive-based instructional intervention and its impact on learning motivation. The study was conducted in a programming-based problemsolving course for first-year engineering students. The results suggest that the instructional intervention developed based on the…
Descriptors: Learning Motivation, Intervention, Engineering Education, Instructional Design
Thomas, Donald H. – Engineering Education, 1974
Discusses the use of varied resources to conduct undergraduate systems design courses at the Drexel University with the support of the Sloan Foundation. The purpose is to provide students with an ability to develop solutions to problems encountered in a real, living, and dynamic situation. (CC)
Descriptors: Course Descriptions, Course Objectives, Educational Programs, Engineering Education
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Larkin, Jill H.; Reif, F. – European Journal of Science Education, 1979
Describes a systematic study of skills for solving problems in basic physics. Also discusses how detailed observations of individuals were used to formulate models for problem-solving processes in mechanics and applications for teaching basic college physics or engineering courses. (HM)
Descriptors: College Science, Engineering Education, Higher Education, Instruction
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Nalence, Eugene E. – Science Teacher, 1980
Describes secondary-school minicourses which provide an opportunity for examination of the interactions between science, technology, society and the investigation of science principles. The need for such minicourses is justified through the demands placed on citizens to rationally evaluate alternate solutions to problems confronting society which…
Descriptors: Case Studies, Curriculum Development, Engineering Education, Minicourses
Parker, Anne – Technical Writing Teacher, 1990
Describes the problem-solving approach implemented in the University of Manitoba's first-year technical communication course. Considers technical writing as a process which can be broken down into steps: classify, analyze, test, and solve. Explains that this process offers students the methodology and flexibility they need to solve either…
Descriptors: Content Area Writing, Engineering Education, Evaluative Thinking, Higher Education
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Slaughter, Joseph M.; And Others – Chemical Engineering Education, 1991
Three mathematics software packages, MathCAD, Point Five, and TK Solver Plus, are described and compared. The packages were rated on the accompanying documentation, ease of learning, ease of use, matrix operations, equation solving capability, versatility, use of units, generation of graphs and tables, readability of output, and overall…
Descriptors: Chemical Engineering, Chemistry, College Science, Computation
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Williams, Donald F.; Glasser, David – Chemical Engineering Education, 1991
An approach that may be used to introduce the fundamental ideas of thermodynamics using a mathematical background with the knowledge of the behavior of matter is described. The physical background, conservation of energy, predicting the behavior of a system, and solving problems are topics of discussion. (KR)
Descriptors: Calculus, Chemistry, College Science, Computation
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Caleb, Linda – Equity & Excellence in Education, 2000
Describes the development of a program for providing young girls at an all-girls school opportunities to problem solve by constructing their solutions using tools and materials unlikely to be part of their home or school experiences. The program combines analytical and problem solving skills with basic engineering concepts. Notes problems…
Descriptors: Elementary Education, Engineering Education, Equal Education, Experiential Learning
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Sadler, Philip M.; Coyle, Harold P.; Schwartz, Marc – Journal of the Learning Sciences, 2000
Experiments with exercises that are distinguished from those employed with elite students by reducing competition and increasing cooperation through the use of tests against nature, large dynamic ranges in performance, initial prototype designs, and alternative methods of recording and presenting results. Finds that formulating easily understood…
Descriptors: Concept Formation, Design, Elementary Secondary Education, Engineering Education
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Harb, John N.; Solen, Kenneth A. – Chemical Engineering Education (CEE), 1998
Discusses the needs of freshmen chemical engineering students in terms of courses related to the field. Describes the nature and content of a course designed to involve freshmen in a chemical engineering curriculum. (DDR)
Descriptors: Chemical Engineering, Course Content, Hands on Science, Higher Education
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Dana-Picard, Thierry; Steiner, Joseph – European Journal of Engineering Education, 2004
When a professional engineer solves a mathematical problem using technology, he/she generally uses a single one-step "high-level" command of a readily available computer package to obtain the solution immediately. This should not happen during his/her learning cursus. In an engineering mathematics course, the educator should decompose the solution…
Descriptors: Computer Uses in Education, Engineering, Technology, Problem Solving
Darabi, A. Aubteen; Nelson, David W.; Paas, Fred – Journal of Research on Technology in Education, 2007
This study presents an application of a measure of learner involvement developed by Paas, Tuovinen, van Merrienboer, and Darabi (2005). These authors combined learners' performance scores with their perceived mental effort invested in instruction and used it to assess learner involvement in instructional conditions. The present study examines the…
Descriptors: Learner Engagement, Educational Strategies, Problem Solving, Instructional Effectiveness
Gray, Wayne D.; And Others – 1985
Intended for use by managers and developers of Army training, this report provides an introduction to "smart technology," which represents the application of cognitive and computer science to Army training problems. Differences between "intelligent tutors"--a major component of smart technology--and conventional…
Descriptors: Cognitive Psychology, Computer Assisted Instruction, Computer Science, Engineering Education
Pestrong, Raymond – 1974
Slope Stability is one in a series of single-topic problem modules intended for use in undergraduate and earth science courses. The module, also appropriate for use in undergraduate civil engineering and engineering geology courses, is a self-standing introduction to studies of slope stability. It has been designed to supplement standard…
Descriptors: Civil Engineering, College Science, Force, Geology
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