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Showing 1 to 15 of 25 results Save | Export
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Downs, Nathan; Larsen, Kim; Parisi, Alfio; Schouten, Peter; Brennan, Chris – Teaching Science, 2012
A practical exercise for developing a simple cost-effective solar ultraviolet radiation dosimeter is presented for use by middle school science students. Specifically, this exercise investigates a series of experiments utilising the historical blue print reaction, combining ammonium iron citrate and potassium hexacyanoferrate to develop an…
Descriptors: Chemistry, Foreign Countries, Science Curriculum, Investigations
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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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Robertson, C. T.; Bulman, L. – Education in Chemistry, 1980
Described is the Independent Learning Project for Advanced Chemistry (ILPAC) which is sponsored by the Inter London Education Authority and utilized by 120 A-level students in the London schools. There are 21 written units included which contain explanations, exercises, instructions for practicals, tests, and assignments. (Author/DS)
Descriptors: Chemistry, Independent Study, Science Course Improvement Projects, Science Curriculum
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Martin, Sheila; Turner, Sheila – Journal of Biological Education, 1988
Reports on a survey which was undertaken to provide an overview of the biology content of a selection of General Certificate of Secondary Education science syllabuses. Lists syllabuses examined and the four themes in terms of which they were analyzed. Concludes that each contained a substantial biology component. (RT)
Descriptors: Biology, Chemistry, Instructional Improvement, Physics
Lyon, Betsy – Chemecology, 1997
Discusses a year-long course of study called Chemistry in the Community, or ChemCom, developed by the American Chemical Society (ACS) to improve chemistry studies in high schools and to relate chemistry to the real world of students. Students spend half the time in the laboratory with more discussion on nuclear, organic, and biochemistry than that…
Descriptors: Biochemistry, Chemistry, Laboratory Experiments, Organic Chemistry
Ameduri, Robert Arthur – 1971
This study was initiated based on the premise that it would yield relevant data that could be used in evaluating research to give directions for future studies. The author developed a Role Survey Instrument to measure the degree of impact that certain factors pertinent to the study had on the researchers and on the cooperating chemistry teachers…
Descriptors: Chemistry, Curriculum, Doctoral Dissertations, Educational Research
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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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Bulman, L. – Education in Chemistry, 1980
Described is the Independent Learning Project for Advanced Chemistry (ILPAC) as it is utilized in Hydeburn, a tribe school in London. The teacher describes how she uses the program with her upper and lower A-level chemistry groups. As a result of this program, pupils seem more articulate in educational discussions. (Author/DS)
Descriptors: Chemistry, Independent Study, Science Course Improvement Projects, Science Curriculum
Mason, Diana – 1996
Chemistry in the Community ("ChemCom") is a high-school level chemistry text developed by the American Chemical Society (ACS) designed for the college-bound student. The purpose of this study was to identify students enrolled in a university-level chemistry course designed for the nonscience major who had experienced the ChemCom…
Descriptors: Academic Achievement, Chemistry, College Bound Students, Educational Change
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Coulson, E. H.; And Others – School Science Review, 1977
Reviews the advanced chemistry course of the Nuffield O-Level Chemistry Project being developed in Great Britain. (SL)
Descriptors: Advanced Courses, Chemistry, Instruction, Physical Sciences
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Ingle, Richard B. – Science Education, 1984
Describes the evaluation and revision of the O-level Nuffield chemistry student and teacher curriculum materials. Includes a discussion of the rationale for the evaluation process and the methodology used. (JN)
Descriptors: Chemistry, Curriculum Development, Evaluation Criteria, Evaluation Methods
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Ingle, Richard B. – Science Education, 1984
Describes the development of the Nuffield chemistry curriculum materials by chemistry teachers and how these materials were received and used by a much larger and representative group of the profession. Includes comments on teaching Nuffield chemistry, the Nuffield examination, and on Nuffield chemistry outside of Great Britain. (JN)
Descriptors: Chemistry, Curriculum Development, Science Course Improvement Projects, Science Curriculum
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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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School Science Review, 1979
Presents an evaluative study of the Nuffield A-level organic chemistry course which was conducted in the United Kingdom. Questionnaire surveys were used to compare the course content with the content Nuffield teachers and university lecturers thought should be included in an A-level course. (HM)
Descriptors: Chemistry, Course Evaluation, Curriculum Development, Educational Research
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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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