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ABEGG, GERALD L.; CRUMB, GLENN H. – 1966
IT WAS THE PURPOSE OF THIS RESEARCH TO ASSESS THE CONTRIBUTION OF CERTAIN SCIENCE COURSES AND OTHER FACTORS THAT MAY INFLUENCE STUDENTS' UNDERSTANDING OF SCIENTISTS, THE AIMS AND METHODS OF SCIENCE AND THE SCIENTIFIC ENTERPRISE. THE SAMPLE CONSISTED OF 1,275 PHYSICS STUDENTS AND 1,009 CHEMISTRY STUDENTS FROM HIGH SCHOOLS IN IOWA, KANSAS, NEBRASKA,…
Descriptors: Chemistry, Physics, Science Curriculum, Science Education
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Ediger, Marlow – Education, 1978
The teacher needs to select relevant objectives for pupils to attain, appropriate learning experiences to achieve these objectives, and effective appraisal techniques to determine pupils progress in ongoing units of study in the science curriculum. (Author)
Descriptors: Achievement, Behavioral Objectives, Educational Needs, Geology
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Goldsmith, Robert H. – Journal of Chemical Education, 1978
Reports results of a survey of topics included in first year college chemistry courses. (SL)
Descriptors: Chemistry, College Science, Curriculum, Higher Education
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Islam, A K M A – Physics Education, 1977
Outlines the first South-East Asian conference on university physics education held in Penang, Malaysia, May 16-21, 1977, to identify, analyze, and compare physics curricula and to improve physics education in developing countries. (SL)
Descriptors: Conferences, Curriculum, Developing Nations, Instruction
Busch, Phyllis S. – Outdoor Communicator, 1986
Explains why earthworms are fascinating and important animals whose study should be expanded. Describes how to collect earthworms and their castings and how to demonstrate their tunneling activity. Stresses animal's uniqueness and how it is interrelated with other animals, plants, and non-living parts of the world. (NEC)
Descriptors: Environmental Education, Experiential Learning, Learning Activities, Outdoor Education
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Phillips, David A., Ed.; Phillips, Prudence, Ed. – Journal of Chemical Education, 1987
Presented are two brief articles related to teaching the history of chemistry in college chemistry, "Utilizing a Historical Perspective in the Teaching of Chemistry" (Joseph W. Kamsar), and "History of Chemistry" (George B. Kauffman). (RH)
Descriptors: Chemistry, College Science, Science and Society, Science Curriculum
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Zuckerman, J. J. – Journal of Chemical Education, 1987
Discussed is the teaching of history related to chemistry in college chemistry courses. Problem areas including naming things and biases (linguistic, geographical, national, religious, ethnic, racial, cultural, sexual, world views, and government) are discussed. Five suggestions for improving instruction are given. (RH)
Descriptors: Chemistry, College Science, Higher Education, History
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Journal of Chemical Education, 1985
Part l (SE 538 305) covered application of classical thermodynamics, polymer crystallinity, and phase diagrams to teaching physical chemistry. This part covers statistical thermodynamics, conformation, molecular weights, rubber elasticity and viscoelasticity, and kinetics of polymerization. Eight polymer-oriented, multiple-choice test questions…
Descriptors: Chemistry, College Science, Higher Education, Kinetics
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Hostettler, John D. – Journal of Chemical Education, 1985
A geochemistry course for chemists is described. Includes: (1) general course information; (2) subject matter covered; and (3) a consideration of the uses of geochemistry in a chemistry curriculum, including geochemical "real world" examples, geochemistry in general chemistry, and geochemistry as an elective. (JN)
Descriptors: Chemistry, College Science, Course Descriptions, Geology
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School Science Review, 1985
Describes the assessment of providing science education for the 16-19 age group. Also discusses the use of computer printers in science teaching and the Nuffield 11 to 13 science scheme. (JN)
Descriptors: Curriculum Development, Higher Education, Science Curriculum, Science Education
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Rolls, I. F. – School Science Review, 1984
Discusses issues related to goals of science education, considering the context of the curriculum during compulsory education and two concepts of curriculum design (balanced and core curricula). Also discusses four themes emerging from the debate on the goals: problem solving; understanding of self; cultural heritage; and moral/ethical issues. (JN)
Descriptors: Curriculum Design, Curriculum Development, Educational Objectives, Science Curriculum
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Yager, Robert E. – Journal of Chemical Education, 1984
Suggests that the new context for school science focuses on the real world, real people, and real issues. Areas considered include current problems in science education, the need for a new context, recommendations for a K-12 science curriculum, the science/technology/society (STS) movement, and STS curricula and programs. (JN)
Descriptors: Educational Trends, Elementary Secondary Education, Science Curriculum, Science Education
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Scriven, Michael – Journal of Research in Science Teaching, 1976
This position paper argues that nothing is as important in science or science education as evaluation. Five crucial ways in which evaluation enters science education are detailed and the legitimacy of evaluative knowledge is established. The specific curricular possibilities of evaluation in science education are outlined. (BT)
Descriptors: Attitudes, Curriculum, Curriculum Evaluation, Evaluation
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Cazeau, Charles J.; Stoiber, George – Journal of Geological Education, 1976
Describes an introductory undergraduate geology course which investigates geology-related, current topics of wide interest, such as the Bermuda Triangle, UFO's, etc. Purpose of the course is to show students how to sift fact from fiction, exercise basic logic, and critically analyze current writings of popular sensationalists. (SL)
Descriptors: College Science, Courses, Geology, Higher Education
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Goninon, Tom W. – Australian Science Teachers Journal, 1976
Described is the program of science education utilized by secondary schools in Tasmania, Australia. Included is a description of the science syllabus currently being adopted by the schools. (SL)
Descriptors: Curriculum, Curriculum Guides, Science Curriculum, Science Education
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