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Parra, Karlett J.; Osgood, Marcy P.; Pappas, Donald L., Jr. – Biochemistry and Molecular Biology Education, 2010
We describe a 10-week laboratory course of guided research experiments thematically linked by topic, which had an ultimate goal of strengthening the undergraduate research-teaching nexus. This undergraduate laboratory course is a direct extension of faculty research interests. From DNA isolation, characterization, and mutagenesis, to protein…
Descriptors: Undergraduate Study, Genetics, Molecular Biology, Biochemistry
Knutson, Kristopher; Smith, Jennifer; Nichols, Paul; Wallert, Mark A.; Provost, Joseph J. – Biochemistry and Molecular Biology Education, 2010
Research-based learning in a teaching environment is an effective way to help bring the excitement and experience of independent bench research to a large number of students. The program described here is the second of a two-semester biochemistry laboratory series. Here, students are empowered to design, execute and analyze their own experiments…
Descriptors: Student Research, Molecular Biology, Biochemistry, Learning Laboratories
Baltzis, Konstantinos B.; Koukias, Konstantinos D. – Journal of Science Education and Technology, 2009
Laboratory-based courses play a significant role in engineering education. Given the role of electronics in engineering and technology, laboratory experiments and circuit simulation IT tools are used in their teaching in several academic institutions. This paper discusses the characteristics and benefits of both methods. The content and structure…
Descriptors: Engineering Education, Undergraduate Study, Electronics, Laboratory Experiments
Pierre, J. W.; Tuffner, F. K.; Anderson, J. R.; Whitman, D. L.; Ula, A. H. M. S.; Kubichek, R. F.; Wright, C. H. G.; Barrett, S. F.; Cupal, J. J.; Hamann, J. C. – IEEE Transactions on Education, 2009
This paper describes a one-credit laboratory course for freshmen majoring in electrical and computer engineering (ECE). The course is motivational in nature and exposes the students to a wide range of areas of electrical and computer engineering. The authors believe it is important to give freshmen a broad perspective of what ECE is all about, and…
Descriptors: Introductory Courses, Problem Based Learning, Computer Science, Engineering
Jernigan, S. R.; Fahmy, Y.; Buckner, G. D. – IEEE Transactions on Education, 2009
This paper details a successful and inexpensive implementation of a remote laboratory into a distance control systems course using readily available hardware and software. The physical experiment consists of a beach ball and a dc blower; the control objective is to make the height of the aerodynamically levitated beach ball track a reference…
Descriptors: Distance Education, Laboratory Experiments, Science Laboratories, Online Systems
Boily P.; Rees, B. B.; Williamson, L. A. C. – Advances in Physiology Education, 2007
Here, we describe a laboratory experiment as part of an upper-level vertebrate physiology course for biology majors to investigate the physiological response of vertebrates to osmoregulatory challenges. The experiment involves measuring plasma osmolality and Na[superscript +] -K[superscript +] -ATPase activity in gill tissue of teleost fish…
Descriptors: Majors (Students), Animals, Physiology, Biology

Joseph, Babu; Elliott, David – Chemical Engineering Education, 1984
A laboratory course design to teach the principles of process data acquisition and control using digital computers was developed at Washington University. The structure of the laboratory and course are described. The course outline and list of experiments are included. (JN)
Descriptors: Chemical Engineering, Computer Oriented Programs, Course Descriptions, Engineering Education

Burnett, Louis E. – Advances in Physiology Education, 1991
The development of a curriculum that integrates laboratory, field, and nonlaboratory experiences in an undergraduate biology department is described. Some of the laboratory experiences provided students in a Principles of Biology course and how other parts of the upper division curriculum are structured around these key experiments are discussed.…
Descriptors: Biology, Course Descriptions, Curriculum Development, Higher Education

Randolph, Alan D. – Chemical Engineering Education, 1989
Provides an overview of a graduate course on particulate processes, especially on crystal size distribution (CSD). Describes the course and includes a list of course topics. Discusses the CSD simulation and manipulation. (YP)
Descriptors: Chemical Engineering, College Science, Course Descriptions, Course Organization

Bienkowski, Paul R.; And Others – Chemical Engineering Education, 1989
Outlines a graduate course, "Microbial Systems Analysis," for students in chemical and environmental engineering or engineering mechanics, as well as microbiology, ecology and biotechnology. Describes the objectives, structure and laboratory experiments for the course. (YP)
Descriptors: Chemical Engineering, College Science, Course Descriptions, Course Objectives
Munn, D. A. – Journal of Natural Resources and Life Sciences Education, 2004
Environmental Sciences Technology T272 is a course with a laboratory addressing problems in soil and water quality and organic wastes utilization to serve students from associate degree programs in laboratory science and environmental resources management at a 2-year technical college. Goals are to build basic lab skills and understand the role…
Descriptors: Associate Degrees, Laboratory Training, Agronomy, Water Quality

England, R.; Field, R. W. – Chemical Engineering Education, 1989
This article focuses on the changes made in the undergraduate laboratory program of the first degree course in chemical engineering at the University of Bath (England). Describes experiments relating to the Engineering Applications 1 (EA1) requirements set by the Engineering Council. (YP)
Descriptors: College Science, Course Content, Course Descriptions, Engineering
Murphy, Diane; And Others – 1982
This curriculum guide to the physical sciences was prepared for use in high schools in Duval County, Jacksonville, Florida. Courses covered for grades 10-12 are chemistry, advanced chemistry, physical science, physics, advanced physics, science survey/physical, and science research. For each course, the following elements are included: notes to…
Descriptors: Behavioral Objectives, Chemistry, Course Descriptions, Curriculum Guides
Lamancusa, John S. – Engineering Education, 1990
Discusses a laboratory course to familiarize mechanical engineering students in the use of electronics and computers. Describes the objectives, laboratory facilities, lecture topics, projects, and laboratory exercises for the course. (YP)
Descriptors: College Science, Computer Interfaces, Course Descriptions, Course Objectives

Davis, Robert H.; Kompala, Dhinakar S. – Chemical Engineering Education, 1989
Describes a course entitled "Biotechnology Laboratory" which introduces a variety of laboratory methods associated with biotechnology. Describes the history, content, and seven experiments of the course. The seven experiments are selected from microbiology and molecular biology, kinetics and fermentation, and downstream…
Descriptors: Chemical Engineering, College Science, Course Content, Course Descriptions
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