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Peer reviewedEngland, Anthony W. – Science Teacher, 1980
Describes reasons why more emphasis should be placed on science education, particularly the technological aspects of science education. States that to make educated decisions about technology, students must first understand science as the basis for technology. Cites examples of technological advances emphasizing the need for increased science…
Descriptors: Aerospace Education, Aerospace Technology, Higher Education, Science Education
Peer reviewedHudson, H. T. – Journal of College Science Teaching, 1981
Large lecture sections of science staffed by a single instructor make it impossible to provide individual student attention and lead to high dropout and failure rates. Daily assignments are used to encourage students to identify areas that need remediation, maintain a steady study pace, receive positive reinforcement, and learn methods of solving…
Descriptors: College Science, Course Descriptions, Higher Education, Pacing
Peer reviewedDeBruin, Jerome E. – School Science and Mathematics, 1980
Discusses the phases in the learning process as described originally by David Hawkins. The aspect of choice is included as each phase is described. The intent of the activities planned according to this approach is a happy, curious, and inquisitive child. (Author/SA)
Descriptors: Elementary Education, Elementary School Science, Learning Activities, Learning Experience
Peer reviewedLa Salle, Donald P. – Science and Children, 1979
Describes science programs for gifted students developed at a learning center in Connecticut. Programs include investigations in astronomy, geology, and climatology. The learning center site is a abandoned NIKE missle base. (MA)
Descriptors: Curriculum Enrichment, Elementary Secondary Education, Gifted, Learning Laboratories
Peer reviewedCameron, Barry; Jones, Richard J. – Journal of Geological Education, 1979
Describes a college geology course that incorporates a coastal segment. Field studies are done on Plum Island and include examining beaches, dune fields, and an adjacent marsh and spit. Topics include sedimentation, coastal geomorphology, botanical effects, and coastal studies methodology. (MA)
Descriptors: College Science, Course Descriptions, Earth Science, Field Studies
Peer reviewedEichinger, David C.; Abell, Sandra K.; Dagher, Zoubeida R. – Science and Education, 1997
Outlines the authors' experiences with designing and teaching a course on the nature of science to science education graduate students. Addresses questions on the creation of a new university course, the design of the course syllabus, and the transformation of the syllabus into instruction. (AIM)
Descriptors: Course Content, Course Organization, Curriculum Guides, Graduate Study
Raddell, William – Momentum, 2002
Explains why Catholics are free to believe in evolution and Catholic educators are free to teach evolution. Catholics do not take a fundamentalist approach to the interpretation of scripture. Argues that science and religion are compatible, and that religion has much to offer science in terms of moral issues. (NB)
Descriptors: Catholic Educators, Catholic Schools, Evolution, Parochial Schools
Nelson, Suzanne – Momentum, 2002
Author discusses ways in which Catholic educators can incorporate science into religious education. Argues that science and religion both seek the truth, and therefore do not contradict each other. Offers suggestions for making connections between the two, and presents Internet resources for the educator. (Contains nine references and resources.)…
Descriptors: Catholic Educators, Catholic Schools, Evolution, Parochial Schools
Peer reviewedRitchie, Stephen M.; Hampson, Brad – Research in Science Education, 1996
This interpretive study of a Year Six classroom in North Queensland, Australia focuses on how two contrasting groups of children designed ill-defined engineering structures. The collaboration processes within the research team are explored. Classroom-related findings are also reported. (AIM)
Descriptors: Cooperative Learning, Elementary Education, Elementary School Science, Engineering
Peer reviewedWorthy, Ward – Chemical and Engineering News, 1988
Describes "Parents and Children for Terrific Science (PACTS)" program sponsored by the American Chemical Society's Education Division for encouraging the development of family science projects at the elementary and intermediate school levels. Discusses some examples and the results of the project. (YP)
Descriptors: Chemistry, Elementary Education, Elementary School Science, Home Instruction
Peer reviewedField, Richard; Siviter, Jon – Education in Science, 1995
Discusses the value of work experience for A-level students and describes some novel student placements. (JRH)
Descriptors: Foreign Countries, Research Opportunities, Science Education, Science Interests
Peer reviewedHolahan, Gail Grigg; And Others – Remedial and Special Education (RASE), 1994
This paper reviews science curriculum issues surrounding the education of students with disabilities. The background of science education for these students is explored, and three curricula designed especially for them are examined, including a curriculum from the Biological Science Curriculum Study, the "Full Option Science System," and…
Descriptors: Comparative Analysis, Curriculum Design, Disabilities, Elementary Education
Peer reviewedHodder, A. Peter W. – Science Teacher, 1994
Describes activities designed to give summer school students an appreciation of the value of an integrated approach to scientific investigation. (JRH)
Descriptors: Integrated Activities, Investigations, Science Activities, Science Education
Peer reviewedRosenzweig, Carl – Physics Teacher, 1994
Describes a successful program at Syracuse University where university physics faculty present their research to the students on a level appropriate for a general audience. Discusses why it was done, how it was done, survey results, and general observations. (MVL)
Descriptors: Course Descriptions, Course Selection (Students), Higher Education, Physics
Peer reviewedKjersdam, Finn – European Journal of Engineering Education, 1994
Evaluates the results of an experiment with comprehensive project-organized and problem-based engineering education at Aalborg University that has lasted for 20 years. Several independent evaluations show that the graduates are more readily adaptable, with strong qualities in the field of problem-solving, cooperation, communication, and…
Descriptors: Engineering Education, Higher Education, Problem Solving, Program Effectiveness


