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Peer reviewedMorgan, Pamela; And Others – Journal of College Science Teaching, 1994
Presents an interdisciplinary approach to introductory biology using a learning community model that addresses many of the American Association for the Advancement of Science's (AAAS) and Sigma Xi's objectives in the teaching of introductory science courses. (PR)
Descriptors: Biology, College Science, Demonstration Programs, Higher Education
Peer reviewedRosser, Sue V. – Initiatives, 1992
Explores how changing curriculum and teaching techniques may lead to different composition of pool of scientists who hold slightly modified theoretical perspective. Presents seven-stage spiral model for transforming mathematics and science teaching, in which each stage fuels change in next stage, moving toward more accessible, varied, and humane…
Descriptors: Career Choice, College Science, College Students, Females
Peer reviewedMiller, Bruce – American Biology Teacher, 1993
Describes the software HyperCard for the Macintosh computer. Explains how it can be used as an information presenter and information expander. (PR)
Descriptors: Biology, Computer Assisted Instruction, Computer Uses in Education, High Schools
Peer reviewedIsayev, Dmitry A. – Science Scope, 1993
Describes the Russian approach to integrated science education and discusses new ideas that Russians are working on. (PR)
Descriptors: Foreign Countries, Interdisciplinary Approach, Junior High Schools, Learning Activities
Peer reviewedCharron, Elisabeth – Journal of Research in Science Teaching, 1991
There is a need for research that depicts better-differentiated social contexts for science education in their full complexity. Social scientists have developed a promising model for research in context. Three critical conceptual and methodological strands of the model are discussed, along with their implications for science education research.…
Descriptors: Cultural Influences, Educational Research, Educational Trends, Elementary Secondary Education
Peer reviewedHurd, Paul DeHart – Science Education, 1998
Traces the practice of relating academic science with the life world of the student to the 1600s. Focuses on identifying elements of a curriculum framework and cognitive strategies that seek to prepare students to be productive citizens in the world. Contains 37 references. (DDR)
Descriptors: Cultural Influences, Educational Change, Elementary Secondary Education, Learning Strategies
Peer reviewedBevilacqua, Fabio; Bordoni, Stefano – Science and Education, 1998
Describes a physics-curriculum project that utilizes hypermedia and an historical, conceptual approach. Argues that textbooks are often boring and are inadequate tools for student learning. Contains 32 references. (DDR)
Descriptors: Computer Uses in Education, Course Organization, Foreign Countries, Higher Education
Peer reviewedThomsen, Poul V. – Science and Education, 1998
Details an eight-year project designed to reform a physics curriculum using a philosophical, historical perspective and inservice teacher training. Includes information on the development and implementation of the project as well as details about the teacher's guide. (DDR)
Descriptors: Educational Change, Foreign Countries, Guides, Higher Education
Maguire, Robert – PSSI Forum (Past Sixteen Science Issues), 1998
Describes the progress made in Northern Ireland toward the introduction of GCSE science curricula in postprimary schools. Documents the move from separate courses in chemistry, physics, and biology to integrated science courses. (DDR)
Descriptors: Academic Standards, British National Curriculum, Course Content, Educational Change
Peer reviewedRichmond, Gail – Journal of Research in Science Teaching, 1998
Speculates about the experiences that contribute to the overall development and preparation of a scientist and whether educators can recreate this process to support the development of all students. (DDR)
Descriptors: Apprenticeships, Career Education, Educational Experience, General Education
Peer reviewedVanTassel-Baska, Joyce; Bass, George; Ries, Roger; Poland, Donna; Avery, Linda D. – Gifted Child Quarterly, 1998
A study involving 60 fifth-grade classrooms assessed student growth on integrated science process skills after being taught a 20-36 hour science unit based on the Integrated Curriculum Model developed for gifted learners. Results indicate small, but significant, gains for students in skills when compared to students not using the unit. (CR)
Descriptors: Gifted, Grade 5, Instructional Effectiveness, Integrated Curriculum
Peer reviewedFlowers, Jim – Journal of Women and Minorities in Science and Engineering, 1995
Reports the results of an international survey that uncovered barriers to women in technology education and strategies to overcome those barriers. Offers some suggestions for changes in the curriculum and facility to support the interest of females. (DDR)
Descriptors: Career Awareness, Career Choice, Elementary Secondary Education, Equal Education
Peer reviewedSadler, Philip M. – Journal of Research in Science Teaching, 1998
Reports on a study that uses psychometric modeling to rank the appeal of a variety of children's astronomical ideas on a single uniform scale. Findings support the view that alternative conceptions may be markers of progress toward understanding. Contains 82 references. (DDR)
Descriptors: Astronomy, Concept Formation, Data Analysis, Educational Strategies
Peer reviewedTaylor, Neil; Coll, Richard – Australian Science Teachers Journal, 1997
Describes a study of Indian and Fijian pre-service primary teachers that reveals how many hold alternative conceptions of fundamental scientific concepts. Focuses on conservation of matter. (DDR)
Descriptors: Chemistry, Constructivism (Learning), Educational Strategies, Elementary Education
Peer reviewedWagner, Joan – American Biology Teacher, 1998
Describes a course for talented high school students that focuses on DNA science and technology. Employs Cold Spring Harbor's DNA Science laboratory manual. Engages students in performing sickle-cell anemia and thalassemia tests in rabbits. (DDR)
Descriptors: Biology, Course Content, DNA, Genetic Engineering


