Descriptor
Source
| Chemical Engineering Education | 6 |
Author
| Armstrong, Robert C. | 1 |
| Riggs, James B. | 1 |
| Siirola, J. J. | 1 |
| Stephanopoulos, George | 1 |
| Venkatasubramanian, V. | 1 |
| Waller, Kurt V. | 1 |
Publication Type
| Journal Articles | 6 |
| Reports - Descriptive | 6 |
| Opinion Papers | 1 |
Education Level
| Higher Education | 1 |
| Postsecondary Education | 1 |
Audience
| Practitioners | 3 |
| Researchers | 1 |
Location
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Peer reviewedWaller, Kurt V. – Chemical Engineering Education, 1981
Summarizes the state of the art and speculates about future trends in chemical process control research and education in the United States. Most chemical engineering departments will continue to offer only basic courses, while the industry is likely to go its own way. (WB)
Descriptors: Chemical Industry, Chemistry, Educational Trends, Engineering Education
Peer reviewedSiirola, J. J. – Chemical Engineering Education, 1982
Process synthesis is the specification of chemical and physical operations and the selection and interconnection of equipment to implement these operations to effect desired chemical processing transformations. Optimization and evolutionary and systematic generation process synthesis approaches are described. (Author/SK)
Descriptors: Chemical Analysis, Chemical Industry, Chemical Reactions, Chemistry
Peer reviewedRiggs, James B. – Chemical Engineering Education, 1988
Presents a framework for model development that, when used, will help the student (or professor) avoid the major pitfalls associated with modeling. Includes not properly identifying the controlling factors, lack of model validation and developing a model that is incompatible with its end use. (CW)
Descriptors: Chemical Engineering, Chemistry, College Science, Engineering Education
Armstrong, Robert C. – Chemical Engineering Education, 2006
A dramatic shift in chemical engineering undergraduate education is envisioned, based on discipline-wide workshop discussions that have taken place over the last two years. Faculty from more than 53 universities and industry representatives from 19 companies participated. Through this process broad consensus has been developed regarding basic…
Descriptors: Chemical Engineering, Undergraduate Study, Educational Change, Futures (of Society)
Peer reviewedStephanopoulos, George – Chemical Engineering Education, 1986
Discusses the use of artificial intelligence systems in process engineering. Describes a new program at the Massachusetts Institute of Technology which attempts to advance process engineering through technological advances in the areas of artificial intelligence and computers. Identifies the program's hardware facilities, software support,…
Descriptors: Artificial Intelligence, College Science, Computer Uses in Education, Courseware
Peer reviewedVenkatasubramanian, V. – Chemical Engineering Education, 1986
Describes a course on artificial intelligence (AI) in process engineering taught at Columbia University to chemical engineering students, using an AI methodology known as Knowledge-Based Expert Systems (KBES). Provides a description of the course, the lecture topics, and a synopsis of some of the student projects. (TW)
Descriptors: Artificial Intelligence, Chemical Engineering, College Science, Computer Uses in Education

Direct link
