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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 121 to 135 of 827 results
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Le Roux, G. A. C.; Reis, G. B.; de Jesus, C. D. F.; Giordano, R. C.; Cruz, A. J. G.; Moreira, P. F., Jr.; Nascimento, C. A. O.; Loureiro, L. V. – Chemical Engineering Education, 2010
This paper describes the use of weblabs--web based experiments--for cooperative learning by students working together from two different locations to conduct experiments and write reports.
Descriptors: Cooperative Learning, Chemical Engineering, Teaching Methods, Educational Technology
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Elliott, J. Richard – Chemical Engineering Education, 2010
The topics of solution thermodynamics, activity coefficients, and complex formation are introduced through computational exercises and sample applications. The presentation is designed to be accessible to freshmen in a chemical engineering computations course. The MOSCED model is simplified to explain complex formation in terms of hydrogen…
Descriptors: Thermodynamics, Chemistry, Chemical Engineering, Scientific Concepts
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Rossiter, Diane; Petrulis, Robert; Biggs, Catherine A. – Chemical Engineering Education, 2010
This paper describes the development of a first-year chemical engineering course over 5 years through action research based on evidence from student feedback. As a result of this research, the course has evolved into a blended approach which incorporates problem based learning (PBL) and online learning tools. Through the use of PBL, the students…
Descriptors: Electronic Learning, Feedback (Response), Action Research, Problem Based Learning
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Smith, Tamara Floyd; Baah, David; Bradley, James; Sidler, Michelle; Hall, Rosine; Daughtrey, Terrell; Curtis, Christine – Chemical Engineering Education, 2010
A Synchronous Distance Education (SDE) course, jointly offered by Auburn University, Tuskegee University and Auburn University at Montgomery, introduced non-science majors to the concepts of nanoscience. Lectures originated from each of the three campuses during the semester, and video conferencing equipment allowed students at all three campuses…
Descriptors: Distance Education, Synchronous Communication, Course Descriptions, Lecture Method
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Ahlstrom, Peter; Aim, Karel; Dohrn, Ralf; Elliott, J. Richard; Jackson, George; Jaubert, Jean-Noel; Macedo, Eugenia A.; Pokki, Juha-Pekka; Reczey, Kati; Victorov, Alexey; Zilnik, Ljudmila Fele; Economou, Ioannis G. – Chemical Engineering Education, 2010
A survey on the teaching of thermodynamics and transport phenomena in chemical engineering curricula in European and US Universities was performed and results are presented here. Overall, 136 universities and colleges responded to the survey, out of which 81 from Europe and 55 from the USA. In most of the institutions responding at least two…
Descriptors: Thermodynamics, Chemistry, Chemical Engineering, Foreign Countries
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Ko, Edmond I.; Chau, Ying – Chemical Engineering Education, 2010
An academic and professional development course has been introduced to help first-year chemical engineering students to deal proactively with the transition from secondary school to university and to develop professional skills. The course uses the Myers-Briggs Type Indicator (MBTI) as a personality model to facilitate skills development and many…
Descriptors: Mentors, Chemical Engineering, Foreign Countries, Science Instruction
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Savelski, Mariano J.; Slater, C. Stewart; Del Vecchio, Christopher A.; Kosteleski, Adrian J.; Wilson, Sarah A. – Chemical Engineering Education, 2010
Educational problem sets have been developed on structured organic particulate systems (SOPS) used in pharmaceutical technology. The sets present topics such as particle properties and powder flow and can be integrated into K-12 and college-level curricula. The materials educate students in specific areas of pharmaceutical particulate processing,…
Descriptors: Problem Sets, Chemical Engineering, Engineering Education, Pharmaceutical Education
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Lombardo, Stephen J. – Chemical Engineering Education, 2010
Techniques are presented for improving the technical writing of chemical engineering students enrolled in an undergraduate laboratory course. The principles of writing covered are adopted from the book, Style: Lessons in Clarity and Grace, by Joseph M. Williams: General examples of writing are taken from this book and then are recast into examples…
Descriptors: Technical Writing, Chemical Engineering, Chemistry, College Science
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Soroush, Masoud; Weinberger, Charles B. – Chemical Engineering Education, 2010
This manuscript presents a successful application of inductive learning in process modeling. It describes two process modeling courses that use inductive learning methods such as inquiry learning and problem-based learning, among others. The courses include a novel collection of multi-disciplinary complementary process modeling examples. They were…
Descriptors: Undergraduate Study, Courses, Logical Thinking, Problem Based Learning
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Mandela, Ravi Kumar; Sridhar, L. N.; Rengaswamy, Raghunathan – Chemical Engineering Education, 2010
Models play an important role in understanding chemical engineering systems. While differential equation models are taught in standard modeling and control courses, Differential Algebraic Equation (DAE) system models are not usually introduced. These models appear naturally in several chemical engineering problems. In this paper, the introduction…
Descriptors: Chemical Engineering, Engineering Education, Mathematical Models, Calculus
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Jablonski, Erin L.; Vogel, Brandon M.; Cavanagh, Daniel P.; Beers, Kathryn L. – Chemical Engineering Education, 2010
A method to fabricate microfluidic devices and an experimental protocol to model intravascular gas embolism for undergraduate laboratories are presented. The fabrication process details how to produce masters on glass slides; these masters serve as molds to pattern channels in an elastomeric polymer that can be adhered to a substrate, resulting in…
Descriptors: Chemical Engineering, Science Equipment, Undergraduate Study, Engineering Education
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Kimmel, Howard; Hirsch, Linda S.; Simon, Laurent; Burr-Alexander, Levelle; Dave, Rajesh – Chemical Engineering Education, 2009
The Research Experience for Teachers was designed to help high school science teachers develop skills and knowledge in research, science and engineering with a focus on the area of pharmaceutical particulate and composite systems. The experience included time for the development of instructional modules for classroom teaching. Results of the…
Descriptors: Engineering, Science Teachers, Science Instruction, Secondary School Science
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Hadley, Kevin R.; Debelak, Kenneth A. – Chemical Engineering Education, 2009
Technology is a key component to the net generation's social, study, and professional skills. It is prudent to investigate the applications of new technology in education. In this study, a wiki was incorporated into a senior design course, and its utility was investigated with respect to process design. The results of the study indicate wikis…
Descriptors: Student Projects, Educational Technology, Technology Integration, Technology Uses in Education
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Mitsos, Alexander – Chemical Engineering Education, 2009
A project-based design course is developed for man-portable power generation via microfabricated fuel cell systems. Targeted audience are undergraduate chemical/process engineering students in their final year. The course covers 6 weeks, with three hours of lectures per week. Two alternative projects are developed, one focusing on selection of…
Descriptors: Engineering Education, Design, Instructional Design, Science Course Improvement Projects
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Keith, Jason M.; Silverstein, David L.; Visco, Donald P., Jr. – Chemical Engineering Education, 2009
Chemical engineering faculty members are often asked to teach a core course that they have not taught before. The immediate thought is to come up with some new ideas to revolutionize that core course in ways that will engage students and maximize learning. This paper summarizes the authors' selection of the most effective, innovative approaches…
Descriptors: Core Curriculum, Chemical Engineering, Classroom Techniques, Best Practices
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