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Hamilton, Nicholas B.; Remington, Jacob M.; Schneebeli, Severin T.; Li, Jianing – Journal of Chemical Education, 2022
We reported a redesign of a physical chemistry laboratory course (CHEM 166) for our chemistry majors at the University of Vermont carried out during the COVID-19 pandemic. We started to teach this course after a curriculum reform, which split an upper-division undergraduate laboratory course into physical and analytical chemistry laboratories. To…
Descriptors: Outcome Based Education, Chemistry, Science Laboratories, Science Curriculum
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Dark, Marta L.; Hylton, Derrick J. – Journal of College Science Teaching, 2018
This article describes a general education course offering, Physics and the Arts. During the development of this course, physics and arts faculty collaborated closely. We cover the usual physics phenomena for such a course--light, color, and sound--in addition to gravity, equilibrium, and spacetime. Goals of the course are to increase students'…
Descriptors: Physics, Science Education, Art Education, General Education
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Balster, Nicholas; Pfund, Christine; Rediske, Raelyn; Branchaw, Janet – CBE - Life Sciences Education, 2010
Undergraduate research experiences have been shown to enhance the educational experience and retention of college students, especially those from underrepresented populations. However, many challenges still exist relative to building community among students navigating large institutions. We developed a novel course called "Entering…
Descriptors: Control Groups, Experimental Groups, Mentors, Student Attitudes
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DiCecco, J.; Wu, J.; Kuwasawa, K.; Sun, Y. – Advances in Physiology Education, 2007
It is challenging for biomedical engineering programs to incorporate an indepth study of the systemic interdependence of cells, tissues, and organs into the rigorous mathematical curriculum that is the cornerstone of engineering education. To be sure, many biomedical engineering programs require their students to enroll in anatomy and physiology…
Descriptors: Physiology, Science Education, College Students, Engineering Education
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Fitzgerald, John J. – Journal of Chemical Education, 1982
Describes the rationale for and implementation, content, objectives, and format of an undergraduate toxicology course. Includes criteria required to offer such a course. (SK)
Descriptors: Chemistry, College Science, Course Descriptions, Course Objectives
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Romey, William D.; Elberty, William T., Jr. – Journal of Geological Education, 1983
Discusses rationale for, goals/organization of, and problems related to geology minicourse program. The program provides a framework for students to construct a tailor-made, individualized course in which a "walk-through" (poster session) replaces the traditional final examination. Includes results of course evaluations and listing of minicourses…
Descriptors: College Science, Course Descriptions, Course Objectives, Geology
United Nations Educational, Scientific, and Cultural Organization, Paris (France). Div. of Marine Sciences. – 1985
This document reports on a workshop on coral species present in Thailand and on the status of coral taxonomy in central Indo-Pacific countries. The report discusses workshop aims, summarizes field and laboratory studies, provides a tentative checklist of hermatypic coral species from Thailand, assesses the status of coral taxonomy in participating…
Descriptors: Classification, College Science, Course Descriptions, Course Objectives
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Stannard, Carl R. – Journal of College Science Teaching, 1986
Describes general interest courses in physics, discussing enrollment patterns, philosophy and structure of the course, course goals, teaching methods, and student performance. Includes an outline of the laboratory syllabus for the course dealing with physics and the automobile. (JN)
Descriptors: College Science, Course Descriptions, Course Objectives, Higher Education
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Rafert, Bruce; Nicklin, R. C. – American Journal of Physics, 1982
A one-semester hour laboratory course introduced junior and senior physics majors to assembly language programing and to interfacing KIM-1 microcomputer to experiments. A general purpose interface to a standard breadboard was developed. Course details, apparatus, and some interfacing projects are given. (Author/SK)
Descriptors: College Science, Computer Oriented Programs, Course Descriptions, Course Objectives
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Baasel, William D. – Chemical Engineering Education, 1982
Students complete a project at Ohio University to understand the process of plant design. This and other goals of a plant design course are discussed, including student/instructor presentations and typical problems confronted by the instructors of the course. (JN)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions
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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
Weaver of Information and Perspectives on Technological Literacy, 1984
Describes technology-oriented courses or programs at five institutions of higher education. Course/program objectives and format, instructional strategies, and types of learning experiences offered to students are considered. (JN)
Descriptors: College Science, Course Descriptions, Course Objectives, Futures (of Society)
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Lee, William E., III – Chemical Engineering Education, 1989
Develops a course which would give students a chance to think critically, be exposed to recent developments including applications to other fields, and be exposed to the general field of the philosophy of science. Provides a course outline, required and referenced textbooks, and selected journal articles. (YP)
Descriptors: Chemical Engineering, College Science, Course Descriptions, Course Objectives
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Derr, Patrick G.; Andersen, Roy S. – American Journal of Physics, 1981
Describes a course which provides nonscience students with an understanding of methods and nature of natural science. The course is a seminar organized around a detailed examination of the Copernican revolution, in part through Copernicus's original writings, and in part through contemporary historical and philosophical analysis. (Author/SK)
Descriptors: College Science, Course Descriptions, Course Objectives, Course Organization
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Edgar, T. F. – Chemical Engineering Education, 1990
Discusses a "process control" course in undergraduate chemical engineering. Describes current practices and philosophy and an outline for a course to be taught in the future. Appended are summaries of 12 participants' discussion. (YP)
Descriptors: Chemical Engineering, College Science, Course Content, Course Descriptions
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