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Lopez, Mario; Elton, Mario – Studies in Higher Education, 1980
A science course is described in which students worked in moderately self-paced groups in a learning center with all the necessary resources on hand. Course objectives and organization are outlined and an evaluation of the course is presented that includes student reactions, staff opinions, and examination and project results. (Author/JMD)
Descriptors: Course Evaluation, Course Objectives, Course Organization, Foreign Countries
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Moore, John W., Ed. – Journal of Chemical Education, 1980
Described are two interactive computer-assisted-instruction (CAI) programs that were developed for use in quantitative analysis and in general chemistry. The purpose of these modules is to help students learn to calculate the points along a titration curve for the titration of an acid with a strong base. (Author/DS)
Descriptors: Acids, Chemical Analysis, Chemistry, College Science
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Lewis, J. – Education in Chemistry, 1980
Describes aspects of the Understanding British Industry Project which was designed to provide information to teachers regarding the role which industry and commerce play in British society. (CS)
Descriptors: Career Awareness, Chemical Industry, Chemistry, Curriculum Development
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Reid, N. – Education in Chemistry, 1980
Discusses two main problem areas for school/industry cooperation: (1) the need to define the purpose of such cooperation; and (2) the logistical restraints of mass visits to local industries. Also discusses the development of attitudes, and the construction of interactive teaching packages. (CS)
Descriptors: Career Awareness, Chemical Industry, Chemistry, Curriculum Development
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Dawson, L. S. – Education in Chemistry, 1980
Describes a "bridge" model that is used in aiding young people interested in science careers to make the transition from school to working life, covering roughly the ages of 13 to 19 years. (CS)
Descriptors: Career Education, Career Guidance, Chemistry, Curriculum Development
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Chapman, B. R. – Physics Education, 1980
Discusses factors affecting the supply of physics teachers in the United Kingdom into the 1980s. The overall numbers of physics teachers, age distribution of physics teachers, and three possible physics curricula with estimates of the staffing levels required are also discussed. (HM)
Descriptors: Curriculum Development, Educational Trends, Graduate Students, Higher Education
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Stroud, Sharon – Science and Children, 1980
Described is a resource idea developed for the teaching of oceanography to junior high students. Sand is studied to help make the study of beaches more relevant to students who may have never seen an ocean. Sand samples are brought into the classroom from various coastal cities, then analyzed and compared. (Author/DS)
Descriptors: Environmental Education, Instructional Materials, Junior High Schools, Marine Biology
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Gross, Walter E. – Journal of College Science Teaching, 1980
Describes how history of science is taught in these physical science courses: introductory astronomy for nonmajors; physical science for liberal arts and early childhood education majors; an algebra-based physics course for biology and premedical students; history of science emphasizing technology for liberal arts and business majors. (CS)
Descriptors: Astronomy, Business, College Science, Higher Education
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Bratt, Marvin – School Science and Mathematics, 1980
Described are ways in which curriculum in science and mathematics may be shaped to the adolescent. Several examples relate to cognitive development, neurological functioning, physical changes, social evolution, and moral growth of the adolescent. (DS)
Descriptors: Adolescents, Cognitive Development, Curriculum Development, Elementary Secondary Education
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Zeitler, William R., Ed. – Science and Children, 1981
Describes two elementary science curriculum materials. Reading about Science Skills and Concepts is a program containing a series of seven supplementary high-interest low-level science readers for upper elementary and middle school students. Beginning Everyday Science Early outlines why teachers should teach science to young children, teacher…
Descriptors: Curriculum Enrichment, Elementary Education, Elementary School Science, Instructional Materials
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Larson, Lee E. – Journal of College Science Teaching, 1981
Discusses single-board microcomputers which are designed primarily for data acquisition and control. Directed toward individuals with little or no hands-on experience with microcomputers, this article gives references, among others, for reading about and purchasing microcomputers. (SK)
Descriptors: College Science, Computer Oriented Programs, Computer Science Education, Higher Education
Brillhart, Lia V. – Engineering Education, 1981
With less time to spend with individual students, teachers of large classes may need course materials that augment texts and lectures. The author discusses what criteria such materials must meet and gives examples from a course in statics. (Author/DS)
Descriptors: Cognitive Style, College Science, Course Descriptions, Curriculum Development
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Zoller, Uri; Watson, Fletcher G. – European Journal of Science Education, 1980
Discusses the field of evolution of the affective domain in socially oriented innovative science and technology curricula. Procedures for evaluation of affective curricula within the science classroom and a summative evaluation of socio-technological oriented innovative science curricula are also included. (DS)
Descriptors: Affective Measures, Cognitive Processes, Curriculum Evaluation, Educational Innovation
Goodwin, Robert – SASTA Journal, 1980
Presented are a list of topics and references for a course in which scientific theories and concepts are developed to explain the energy crisis. Using the suggested approach, students gain an understanding of scientific theories and concepts as they relate to current human problems. (DS)
Descriptors: Course Content, Course Descriptions, Curriculum Design, Energy
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Moore, John A. – American Biology Teacher, 1979
Discusses the educational establishment and relates its position to the need for introducing controversial issues into elementary and secondary classrooms. The need for reform, beginning with science courses in the university, is suggested. (SA)
Descriptors: Course Content, Current Events, Elementary Secondary Education, Higher Education
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