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Godin, Elizabeth A.; Kwiek, Nicole; Sikes, Suzanne S.; Halpin, Myra J.; Weinbaum, Carolyn A.; Burgette, Lane F.; Reiter, Jerome P.; Schwartz-Bloom, Rochelle D. – Journal of Chemical Education, 2014
We developed the Alcohol Pharmacology Education Partnership (APEP), a set of modules designed to integrate a topic of interest (alcohol) with concepts in chemistry and biology for high school students. Chemistry and biology teachers (n = 156) were recruited nationally to field-test APEP in a controlled study. Teachers obtained professional…
Descriptors: Alcohol Education, Pharmacology, Partnerships in Education, Chemistry
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Kim, Kris S.; Rackus, Darius G.; Mabury, Scott A.; Morra, Barbora; Dicks, Andrew P. – Journal of Chemical Education, 2017
The Chemistry Teaching Fellowship Program (CTFP) is offered to graduate students and postdoctoral researchers at the University of Toronto as an opportunity to undertake curriculum development and chemistry education research. Projects are run with faculty supervision and focus on designing new laboratory activities, lectures, tutorials,…
Descriptors: Chemistry, Fellowships, Graduate Students, Curriculum Development
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O'Dwyer, Anne; Childs, Peter – Journal of Chemical Education, 2014
The main areas of difficulty experienced by those teaching and learning organic chemistry at high school and introductory university level in Ireland have been identified, and the findings support previous studies in Ireland and globally. Using these findings and insights from chemistry education research (CER), the Organic Chemistry in Action!…
Descriptors: Organic Chemistry, Intervention, Introductory Courses, Student Attitudes
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Beasley, Warren – Journal of Chemical Education, 1980
Reviews the tradition of teaching and learning of organic chemistry in high school courses. Includes an analysis of present student performance and possible directions of future chemistry programs. Report is based on research of instruction and learning of organic chemistry in 90 high schools. (Author/JN)
Descriptors: Chemistry, Course Objectives, Curriculum Evaluation, Curriculum Problems
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Fuhrman, Marlene; And Others – Journal of Chemical Education, 1982
Laboratory exercises from five chemistry curricula were examined to determine organization (integration of laboratory work with other parts of a course) and tasks required of students (assessed in terms of inquiry skills and behaviors required for the laboratory work). Implications and suggestions for instruction are included. (Author/JN)
Descriptors: Chemistry, Curriculum Design, Curriculum Evaluation, Evaluation Criteria
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Whitmer, John C. – Journal of Chemical Education, 1974
Reviews some efforts in elementary school science made since the early 1960's, including the Elementary Science Study, Science-A Process Approach, and Science Curriculum Improvement Study projects. Suggests scientists from all levels of the educational and scientific community assist the implementation of these programs. (CC)
Descriptors: Course Objectives, Curriculum Design, Curriculum Development, Elementary School Science
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Kieffer, William F. – Journal of Chemical Education, 1980
Presented are the author's impressions of the status of chemical education during the period from the mid-fifties to late sixties. (HM)
Descriptors: Chemistry, College Science, Curriculum Development, Educational Development
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Yong, Wu – Journal of Chemical Education, 1994
Gives an overview of Science-Technology-Society (STS) education, which views scientific and technological progress as social processes. An STS course called Social Organic Chemistry is described as a replacement for Application of Organic Chemistry in a teachers' college. The course addresses the application of the principles and fundamentals of…
Descriptors: Educational Change, Foreign Countries, Futures (of Society), Higher Education
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Wilson, Evelyn H. – Journal of Chemical Education, 1972
Descriptors: Curriculum Development, General Education, Science Course Improvement Projects, Science Education
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Winther, Austin A.; Volk, Trudi L. – Journal of Chemical Education, 1994
Examines the relative effectiveness of two different chemistry curricula. African American students enrolled in an inner-city high school who took ChemCom, a Science-Technology-Society-based science curriculum employing cooperative learning as an integral component, scored significantly higher gains on a standardized measure of chemistry…
Descriptors: Academic Achievement, Black Students, Chemistry, Cooperative Learning
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Davik, John – Journal of Chemical Education, 1980
Presents the author's reasons for supporting the CHEMS program. Also characterizes aspects of his teaching regarded as significant in teaching chemistry, including prompt return of assignments, test retakes, videotaping. inclusion of organic chemistry, ability grouping of students, avoidance of specialization, and departmental testing. (CS)
Descriptors: Chemistry, Science Course Improvement Projects, Science Curriculum, Science Education
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Buzzard, Gene P. – Journal of Chemical Education, 1981
Summarizes the philosophy of team teaching and the use of this method in teaching CHEM Study. Includes discussions of scheduling, class time for study, and the role of this course in the school's total chemistry program. (JN)
Descriptors: Chemistry, Course Descriptions, Flexible Scheduling, Program Evaluation
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Journal of Chemical Education, 1983
Summarizes papers presented during a symposium at the Seventh Biennial Conference on Chemical Education (Stillwater, Oklahoma 1982). Topics addressed included history of summer institutes and high school CHEM Study Program, educational activities of American Chemical Society (ACS), and activities of ACS Committee on Professional Training and…
Descriptors: Chemistry, College Science, Higher Education, Institutes (Training Programs)
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Journal of Chemical Education, 1989
Described is a practical resource that ties the specifics of classroom chemistry content to the specifics of teaching practice. Listed are 135 lessons found on three videodisks which have 700 pages of supporting written materials. Notes that the full gamut of the traditional high school curriculum is covered. (MVL)
Descriptors: Chemical Nomenclature, Chemistry, Computer Interfaces, Computer Oriented Programs