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Showing 1 to 15 of 18 results Save | Export
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Margaret K. Meadows – Journal of Chemical Education, 2024
This paper describes the design, implementation, and evaluation of an inquiry-based laboratory for sophomore-level organic chemistry into a mostly cookbook, existing laboratory curriculum. For the laboratory, students were required to generate their own procedures and use their own recorded data from prior laboratory assignments to identify an…
Descriptors: Active Learning, Inquiry, Laboratory Experiments, Chemistry
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Williams, Neil A. – Journal of Chemical Education, 2022
Across the United Kingdom Higher Education system, the percentage of white students attaining a first or upper second-class degree exceeds the that of Black Asian Minority Ethnic (BAME) students. This is known as the BAME degree awarding gap. Awarding gaps are also seen at the module level. The BAME module awarding gap is defined as the difference…
Descriptors: College Science, Inclusion, Achievement Gap, Chemistry
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Bo Chen; Huinan Liu; Yufeng Xu; Qi Yang; Hui Wu; Ziyin Li – Journal of Chemical Education, 2024
The diversity of scientific methods has received widespread recognition in recent years. The purpose of this review is to analyze the changes in the representation of laboratory work in Chinese senior high school chemistry textbooks in the past 30 years from the perspective of the diversity of scientific methods. This study was based on Brandon's…
Descriptors: Textbook Evaluation, High School Seniors, Scientific Methodology, Textbook Content
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Cao Cu Giac; Dang Thi Thuan An; Le Thi Thu Hiep; Ly Huy Hoang; Nguyen Mau Duc – Journal of Education and e-Learning Research, 2024
A comprehensive educational framework is provided by the Conceive-Design-Implement-Operate (CDIO) which is particularly relevant to engineering and applied sciences. This paper investigates the application of the CDIO approach in the field of chemistry pedagogy in Vietnam focusing on its adaptability to the current educational demands and its…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Foreign Countries
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Laredo, Thamara – Journal of Chemical Education, 2013
For students who are not science majors, problem-based (PB) laboratories for first-year chemistry provide a more comprehensive experience than conventional expository ones. Implementing PB labs is reasonably easy, as the lab experiments may not need to change; what changes is the way the lab manual is set up and how the actual session is carried…
Descriptors: Laboratory Manuals, Chemistry, Educational Change, Curriculum Development
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Kandel, Marjorie; Ikan, Raphael – Journal of Chemical Education, 1989
Provides a point of view that the organic lab is a good place for the student to use and learn problem solving skills while performing the cookbook experiments. Notes that an equilibrium between the theoretical and practical aspects of organic chemistry should be established. (MVL)
Descriptors: Chemistry, College Science, Course Content, Curriculum Development
Krubsack, Arnold J. – 1975
As part of an experiment, a three quarter sequence in organic chemistry was designed to be accompanied by laboratory experiments that reinforce the lecture material and encourage independent investigation by minimizing cookbook-style procedures. By having laboratory techniques explained in detail on video casettes, students were exposed to uniform…
Descriptors: Chemistry, College Curriculum, College Students, Curriculum Development
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Pickering, M.; Goldstein, S. L. – Journal of Chemical Education, 1977
Discusses the concept of educational efficiency of instructional methods, and suggests that although lab reports are effective learning tools, they are inefficient as an evaluation method. (MLH)
Descriptors: Chemistry, College Science, Curriculum Development, Efficiency
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Atkinson, G. F. – Education in Chemistry, 1978
This article looks at the problems of revision of laboratory courses. While revision of the syllabus of experiments is expensive, it is necessary to keep it up to date. The nature, causes, and rates of change in practical courses are discussed. (BB)
Descriptors: Chemistry, College Science, Curriculum Development, Curriculum Evaluation
McAda, Harleen W.; Westmeyer, Paul – Sci Educ, 1970
Descriptors: Audiovisual Aids, Chemistry, College Freshmen, College Science
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Deshpande, Pradeep B.; And Others – Chemical Engineering Education, 1980
Describes laboratory experiments of a chemistry course on advanced process control. The equipment for the process around which these experiments were developed by the University of Louisville was constructed from data provided by Exxon Oil Company. (HM)
Descriptors: Chemistry, College Science, Curriculum Development, Engineering Education
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Mulder, T.; Verdonk, A. H. – Journal of Chemical Education, 1984
Reports on a project in which observations of student and teaching assistant behavior were used to redesign a teaching unit on recrystallization. Comments on the instruction manual, starting points for teaching the unit, and list of objectives with related tasks are included. (JN)
Descriptors: Chemistry, College Science, Crystallography, Curriculum Development
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Mellichamp, 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
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Ben-Zvi, Ruth; And Others – Studies in Educational Evaluation, 1976
Attainment of laboratory course objectives was compared for tenth and twelfth grade Israeli students using two chemistry curricula: An Experimental Chemistry Program for Secondary Schools (ECPSS) and the CHEM Study program. ECPSS students more often than non-ECPSS students, and ECPSS girls more often than boys felt they had achieved the…
Descriptors: Chemistry, Comparative Analysis, Curriculum Development, Curriculum Evaluation
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Cole, G. Mattney, Jr.; Waggoner, William H. – Journal of Chemical Education, 1983
To assist in designing/implementing qualitative analysis courses, examines reliability/accuracy of several published separation schemes, notes methods where particular difficulties arise (focusing on Groups II/III), and presents alternative schemes for the separation of these groups. Only cation analyses are reviewed. Figures are presented in…
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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