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Peer reviewedMellichamp, D. A. – Chemical Engineering Education, 1980
Describes the process dynamics and control program developed by the chemical engineering department at the University of California, Santa Barbara. Undergraduate and graduate control courses and real-time computing courses are included. (HM)
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Computer Oriented Programs
Peer reviewedBarnes, Francis; And Others – Physics Education, 1980
Discusses three research topics which are concerned with eminently practical problems and deal at the same time with fundamental fluid dynamical problems. These research topics come from the general areas of chemical and biological engineering, geophysics, and pure mathematics. (HM)
Descriptors: Biological Sciences, Chemistry, College Science, Engineering
Peer reviewedHaight, G. P., Jr. – Journal of Chemical Education, 1979
Presents the Award Address for the 1979 American Chemical Society Award in Chemical Education. Discusses teachers and learning situations which made a difference in the recipients' schooling and the significant attributes of teachers and techniques of teaching that stand out as lessons for would-be teachers. (BT)
Descriptors: Awards, Chemistry, College Science, Higher Education
Peer reviewedDriscoll, D. R. – Journal of Chemical Education, 1979
Describes a laboratory demonstration in chemical equilibrium using ferric chloride and ammonium thiocyanate that would serve as a useful basis for an inquiry investigation. (BT)
Descriptors: Chemical Equilibrium, Chemical Reactions, Chemistry, Demonstrations (Educational)
Peer reviewedRunquist, Olaf – Journal of Chemical Education, 1979
Describes a programed, independent study, college level, general chemistry course designed to develop good technical laboratory skills with no attempt made to relate laboratory experiments and classroom topics. A list of experiments used and a sample laboratory examination are included. (BT)
Descriptors: Chemistry, College Science, Evaluation, Higher Education
Peer reviewedCoombes, S. D. – School Science Review, 1979
Discusses the process of developing the Science Lessons from Industrial Processes (SLIP) kits by 16 British science teachers. The content, applicability, and components of these kits (based upon local industries) are also included. (HM)
Descriptors: Chemistry, Educational Media, Environmental Education, Industry
Peer reviewedHerron, J. Dudley, Ed.; Driscoll, D. R. – Journal of Chemical Education, 1979
Describes a high school chemistry experiment which involves the reaction between calcite and hydrochloric and sulfuric acids. This reaction can be carried out as a projected demonstration and on an individual basis. (HM)
Descriptors: Audiovisual Aids, Chemical Reactions, Chemistry, Demonstrations (Educational)
Peer reviewedFix, William T.; Renner, John W. – Journal of Chemical Education, 1979
A course is described that is designed to encourage exploration, conceptual invention, and expansion of an idea. Results are given that relate to curricular experimentation with chemistry. (SA)
Descriptors: Chemistry, Cognitive Development, Course Content, Course Descriptions
Peer reviewedAllchin, Douglas – Science and Education, 1997
Demonstrates how to use the concept of phlogiston to teach oxidation and reduction reactions. Discusses the project as an exemplar for integrating the history, philosophy, and sociology of science to teach basic scientific concepts. Contains 70 references. (DDR)
Descriptors: Case Studies, Chemistry, Constructivism (Learning), Epistemology
Peer reviewedSterling, Donna R.; Davidson, Anne B. – Science Teacher, 1997
Explores the issue of how to make chemistry more personally meaningful to students who have no interest in continuing the study of science. Describes two projects that each have an interview, research, and presentation format. (DDR)
Descriptors: Chemistry, Educational Strategies, Hands on Science, Inquiry
Peer reviewedKelter, Paul B.; Grundman, Julie; Hage, David S.; Carr, James D.; Castro-Acuna, Carlos Mauricio – Journal of Chemical Education, 1997
Presents discussions on sources, health impacts, methods of analysis as well as lengthy discussions of lead, nitrates, and atrazine as related to water pollution and the interdisciplinary nature of the modern chemistry curriculum. (DKM)
Descriptors: Chemical Analysis, Chemistry, Environmental Education, Hazardous Materials
Peer reviewedTrigwell, Keith; Prosser, Michael – Studies in Higher Education, 1996
Examined the conceptions of teaching and learning of a group of 24 lecturers in first-year college physics and chemistry in Australia, and how those conceptions related to their approaches to teaching. Strong relations were found between conceptions of teaching and approaches to teaching, though relations between conceptions of teaching and…
Descriptors: Chemistry, College Faculty, College Instruction, College Science
Peer reviewedCalderhead, Veronica; And Others – Science & Technology Libraries, 1996
Three articles describe the relocation of the chemistry branch library to the main academic library at Rutgers University (Newark, New Jersey) as part of a trend toward centralization. Highlights include user support for the move, including faculty and students; and the operations research methodology used for planning and implementing the move.…
Descriptors: Academic Libraries, Branch Libraries, Centralization, Chemistry
Peer reviewedSmith, Stanley; Stovall, Iris – Journal of Chemical Education, 1996
Outlines the components of a technology center that supports over 5,000 students per semester. Discusses instructional computing environment and consistent student interface, management system, gradebook, classroom, networking, and application software. Concludes that the integration of computer-based instruction, multimedia presentations,…
Descriptors: Chemistry, Classroom Techniques, Computer Networks, Computer Uses in Education
Peer reviewedKelter, Paul B.; And Others – Journal of Chemical Education, 1996
Describes a course, Chemistry for Elementary Education Majors, collaboratively planned and taught by chemistry and teacher education faculty. Discusses the instructional bases of the course, the audience, themes and activities in the course, course expenses, student learning, and challenges for the future. Lists the course schedule with lab and…
Descriptors: Chemistry, Cooperation, Course Descriptions, Elementary Education


