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Tanino, Yukie; Syed, Amer – Education Sciences, 2019
We designed a hands-on laboratory exercise to demonstrate why injecting an aqueous polymer solution into an oil reservoir (commonly known as "polymer flooding") enhances oil production. Students are split into three groups of two to three. Each group is assigned to a packed Hele-Shaw cell pre-saturated with oil, our laboratory model of…
Descriptors: Physics, Science Instruction, Plastics, Fuels
Hoffman, Adam; Turner, Ken – Journal of Chemical Education, 2015
A multipart laboratory activity introducing microbeads was created to meet engineering and engineering design practices consistent with new Next Generation Science Standards (NGSS). Microbeads are a current topic of concern as they have been found to cause adverse impacts in both marine and freshwater systems resulting in multiple states proposing…
Descriptors: Chemistry, Educational Experiments, Investigations, Engineering Education
Bowen, Alec S.; Reid, Daniel R.; Koretsky, Milo D. – Chemical Engineering Education, 2015
In this project, we explore the use of threshold concept theory as a design basis for development of Interactive Virtual Laboratories in thermodynamics. Thermodynamics is a difficult subject for chemical and biological engineering students to master. One reason for the difficulty is the diverse and challenging set of threshold concepts that they…
Descriptors: Thermodynamics, Science Laboratories, Computer Simulation, Science Process Skills
Ferri, Bonni H.; Ferri, Aldo A.; Majerich, David M.; Madden, Amanda G. – Advances in Engineering Education, 2016
This paper examines the effects of hands-on learning in an undergraduate circuits class that is taught to non-majors; i.e., students outside of electrical and computing engineering. The course, ECE3710, is taught in a blended format facilitated by the video lectures prepared for two Massive Open Online Courses developed for the Coursera Platform.…
Descriptors: Outcomes of Education, Hands on Science, Science Laboratories, Large Group Instruction
Smaill, Chris R. – IEEE Transactions on Education, 2010
In the current climate of shortages of high-quality engineering graduates, exacerbated by reduced high school enrollments in physics and mathematics, engineering faculties are becoming increasingly aware of the importance of K-12 outreach programs. Such programs can result in students being better prepared for and better informed about engineering…
Descriptors: Outreach Programs, Engineering Education, Program Implementation, Program Evaluation
Kaletunc, Gonul; Duemmel, Kevin; Gecik, Christopher – Chemical Engineering Education, 2007
The ice cream laboratory experiment is designed to illustrate and promote discussion of several engineering and science topics including material and energy balances, heat transfer, freezing, mass transfer, mixing, viscosity, and freezing point depression in a sophomore level engineering class. A pre-lab assignment requires the students to develop…
Descriptors: Food, Laboratory Experiments, Engineering Education, Undergraduate Students

Economides, Michael J.; Maloney, J. O. – Chemical Engineering Education, 1978
This article describes two simple undergraduate heat transfer experiments which may reinforce a student's understanding of free convection and radiation. Apparatus, experimental procedure, typical results, and discussion are included. (Author/BB)
Descriptors: Chemistry, Engineering Education, Heat, Higher Education

Yu, F. T. S.; Wang, E. Y. – American Journal of Physics, 1973
Discusses the use of a set of experiments to provide undergraduate electrical engineering students with a knowledge of the state of the art in modern coherent optics from an engineering standpoint. (CC)
Descriptors: College Science, Engineering Education, Instruction, Laboratory Experiments
Beakley, George C.; Chilton, Ernest G. – Journal of Engineering Education, 1972
Descriptors: College Science, Course Descriptions, Engineering Education, Instruction

Skinner, J. W. – Physics Education, 1975
Describes the experimental apparatus and method for the study of magnetic vector potential (MVP). Includes a discussion of inherent errors in the calculations involved, precision of the results, and further applications of MVP. (GS)
Descriptors: College Science, Electricity, Engineering Education, Higher Education
Rodriguez, F. – Engineering Education, 1974
Descriptors: College Science, Demonstrations (Educational), Engineering Education, Equipment

Sungar, N.; Sharpe, J. P.; Moelter, M. J.; Fleishon, N.; Morrison, K.; McDill, J.; Schoonover, R. – American Journal of Physics, 2001
Describes the implementation of a new laboratory-based, interdisciplinary undergraduate course on linear dynamical systems. Focuses on geometrical methods and data visualization techniques. (Contains 20 references.) (Author/YDS)
Descriptors: Computer Uses in Education, Course Descriptions, Educational Technology, Engineering Education
Born, Richard C.; Soper, Jon A. – Engineering Education, 1975
Descriptors: Computer Science Education, Electronics, Engineering Education, Laboratory Experiments
Barquest, James M.; Schmalzel, John L. – 1975
Described are four demonstration/participation laboratories in which students analytically and experimentally evaluated various catheter-transducer blood pressure measurement systems. The activities were included in a graduate level course entitled "Theory and Techniques of Bioinstrumentation," taught by the Department of Electrical Engineering…
Descriptors: Biology, College Science, Course Descriptions, Curriculum Development

Jackson, E. A. – European Journal of Engineering Education, 1987
Discusses the importance of laboratory experiments in which students were given a few guidelines and small groups had to design the experiments. Describes the old and new orders of laboratory projects and the effects of change. (CW)
Descriptors: College Science, Engineering, Engineering Education, Experiential Learning