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Hohn, Keith L. – Chemical Engineering Education, 2007
A hands-on project was developed to educate new chemical engineering students about the types of problems chemical engineers solve and to improve student enthusiasm for studying chemical engineering. In this project, students studied the phenomenon of carbonated beverages going flat. The project was implemented in 2003 and 2004 at Kansas State…
Descriptors: Student Surveys, Chemical Engineering, Science Experiments, Science Instruction
Binous, Housam – Chemical Engineering Education, 2006
We show a new approach, based on the utilization of Mathematica, to solve gas permeation problems using membranes. We start with the design of a membrane unit for the separation of a multicomponent mixture. The built-in Mathematica function, FindRoot, allows one to solve seven simultaneous equations instead of using the iterative approach of…
Descriptors: Chemical Engineering, Mathematics, Computation, Problem Solving
Ayers, Caroline L. – 1981
Presented is a descriptive account of guided design, an educational strategy in which students work together in small groups to solve open-ended problems designed to provide experience in applying the subject matter content of a course. The essential elements of this instructional strategy are described, and the instructor's role clarified as…
Descriptors: Biology, Chemistry, College Science, Course Content
Sharp, J. J. – Engineering Education, 1975
Presents the view that formal assignments such as problem sheets to be solved at home within a given amount of time are detrimental to the development of a mature outlook in college students. Presents an alternative to this approach. (GS)
Descriptors: Assignments, Engineering Education, Group Activities, Higher Education
Sandor, George N. – Engineering Education, 1975
Outlines the academic responsibilities connected with the nation's transition to the metric system and indicates how these responsibilities relate to the general task of problem solving. (GS)
Descriptors: Engineering Education, Higher Education, Instruction, Mathematics Education
Buras, Nathan – 1972
Oriented for higher education students, researchers, practicing engineers and planners, this book surveys the state of the art of water resources engineering. A broad spectrum of issues is embraced in the treatment of water resources: quantity aspects as well as quality aspects within a systems approach. Using a rational mode for water resources…
Descriptors: Engineering, Environment, Higher Education, Instructional Materials
Peer reviewedDennien, R. T.; And Others – Journal of Curriculum Studies, 1973
Tests developed for the evaluation of Control Technology, a basic engineering course of study in Great Britain, prove useful for the formative evaluation, but reflect the difficulty of assessing ability to solve technological problems. (Author/KM)
Descriptors: Ability Identification, Curriculum Evaluation, Engineering, Evaluation Methods
Hoelscher, H. E. – Journal of Engineering Education, 1972
Descriptors: College Science, Engineering Education, Problem Solving, Program Development
Lighthill, M. J. – Mathematical Gazette, 1971
This article (the 1971 Presidential Address to the Mathematical Association of U. K.) makes a plea that college teachers of mathematics should be better aware of the applications of mathematics in other subjects. As an example, the author describes the use of differential equations to solve certain vibrational problems in mechanical engineering.…
Descriptors: Calculus, College Mathematics, Engineering, Instruction
Peer reviewedWesterberg, Arthur W. – Chemical Engineering Education, 1980
By providing an example problem in solving sets of nonlinear algebraic equations, the advantages and disadvantages of two methods for its solution, the tearing approach v the Newton-Raphson approach, are elucidated. (CS)
Descriptors: Algebra, Chemistry, College Science, Engineering Education
Peer reviewedKharab, Abdelwahab – Computer Applications in Engineering Education, 1997
Spreadsheet programs are used increasingly by engineering students to solve problems, especially problems requiring repetitive calculations, as they provide rapid and simple numerical solutions. This article shows how advanced spreadsheet programs are used in the learning of numerical solutions of two-dimensional diffusion equation using the…
Descriptors: Computation, Computer Software, Differential Equations, Diffusion (Physics)
Peer reviewedGarmire, Elsa – Technology Teacher, 2003
Describes an engineering design course that is taught at the postsecondary level but can be adapted for secondary education. It presents the steps in the design process and illustrates, using a matrix, the tradeoffs necessary in design. (JOW)
Descriptors: Design, Engineering, Postsecondary Education, Problem Solving
Akin, Omer – Performance Improvement Quarterly, 1994
The ability to develop new problem descriptions, called problem restructuring in architectural design, has been related to creativity. Looking at human creativity through problem restructuring is likely to offer more research results and questions and can benefit understanding of the role of creativity in professional practice and related decision…
Descriptors: Architecture, Creative Thinking, Creativity, Decision Making
Peer reviewedNorman, Rose; Frederick, Robert A. – Technical Communication Quarterly, 2000
Presents a three-year experiment in integrating technical editing students into a multidisciplinary engineering design project that developed several way of helping students apply classroom learning to practical problems. Discusses how engineering students formed Integrated Product Teams and the technical editing students provided editorial…
Descriptors: Cooperative Learning, Editing, Educational Strategies, Engineering
Peer reviewedRamaswamy, Shri; Harris, Ilene; Tschirner, Ulrike – Journal of Science Education and Technology, 2001
Reports the results of a pilot study in a senior paper science and engineering class of an innovative instructional method designed to foster student problem solving and in-depth learning of material, namely student peer teaching. Reviews literature focusing on active learning methods and describes the method for student peer teaching. (Author/SAH)
Descriptors: Cooperative Learning, Educational Innovation, Engineering Education, Higher Education

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