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Upegui, David; Coiro, Julie; Battle, Stefan; Kraus, Rudolf; Fastovsky, David – Science & Education, 2022
Systemic oppression includes inequitable education that historically does not fully prepare students for comprehensive participation in society. The tools of science education, however, uniquely enable students to explore social inequities as well as the natural world. Thus, a role of education can be to embed social justice in science curricula.…
Descriptors: Social Justice, Biology, Science Instruction, Science Curriculum
Ferreira, Silvia; Morais, Ana M.; Neves, Isabel P. – International Studies in Sociology of Education, 2011
The study analyses the extent to which the sociological message transmitted by the Official Pedagogic Discourse of the curriculum for Portuguese middle schools contains the ideological and pedagogical principles of its authors. The research is epistemologically and sociologically grounded, placing particular emphasis on Bernstein theory of…
Descriptors: Middle Schools, Interviews, Educational Sociology, Epistemology
Bautista, Nazan Uludag; Schussler, Elisabeth E. – Journal of College Science Teaching, 2010
Students need to reflect on the practice of science to fully understand the nature of science (NOS), which is an important component of scientific literacy. In this paper, the authors describe how to implement an explicit and reflective pedagogy in college science laboratories and share examples from their implementation in a multiple-section…
Descriptors: Biology, Science Laboratories, Scientific Principles, College Science
Tytler, Russell; Symington, David; Kirkwood, Valda; Malcolm, Cliff – Teaching Science, 2008
There is an increase in school-community linked initiatives in school science. A substantial proportion of these involve rural schools. This article asks the question: In what ways do these initiatives offer possibilities for better engaging rural students with school science? The paper draws on information from a number of school-community linked…
Descriptors: Rural Schools, Innovation, Rural Areas, Rural Education

Barnes, Donald G. – Journal of College Science Teaching, 1976
Describes an introductory college science course for science majors and nonmajors. The course, team taught and interdisciplinary, stresses broad applications and topics of current interest. Presentations and instructors are changed regularly. The laboratory experiences include computer programming, are varied regularly, and allow student selection…
Descriptors: Biological Sciences, College Science, Higher Education, Instruction

Brehm, Shirley A. – School Science and Mathematics, 1972
Descriptors: Curriculum, Earth Science, Instruction, Program Descriptions

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

Bank, Evelyn – Journal of Chemical Education, 1977
Reviews chemistry taught at Westminster High School, Denver, Colorado, and theoretical aspects of hydrolysis. (SL)
Descriptors: Chemical Reactions, Chemistry, Instruction, Science Curriculum

Brouwer, W. – American Journal of Physics, 1975
Questions as tentative and not universally acceptable some of the assumptions put forth by Romer, namely, that a scientific theory: is a deductive exercise; must accord with the facts; ought to be inflexible; is an explanation. (GH)
Descriptors: College Science, Higher Education, Instruction, Natural Sciences

Arons, A. B. – American Journal of Physics, 1976
Describes special factors and procedures which are utilized in an introductory physical science course for nonscience majors. It is designed to enable students who are at a concrete or transitional stage to attain the formal operational level of development. (Author/SL)
Descriptors: Cognitive Development, College Science, Higher Education, Instruction
South Australian Science Teachers Journal, 1975
Outlines the science courses taught in year 11 at Sacred Heart College in Australia. A feature of these classes is that all periods in all classes may be taken in laboratories designed and equipped for the particular subject. (MLH)
Descriptors: Curriculum, Instruction, Instructional Programs, Science Curriculum

Calame, Gerald P. – American Journal of Physics, 1973
A course based on the science used in science fiction stories is described wherein the students read the stories and discuss the physics content. A partial list of the books read is included along with the background theme and appropriate references. (DF)
Descriptors: College Science, Course Descriptions, Instruction, Physics

Weinstock, H. R.; De Primo, M. J. – School Science and Mathematics, 1972
Descriptors: Chemistry, Instruction, Program Descriptions, Science Curriculum

Munn, R. W.; Pratt, A. C. – Education in Chemistry, 1975
Feeling that projects in chemistry could be used effectively to enhance appreciation of chemistry, a project-based course for the first-year sixth formers was developed in 1973 and because of its success another was organized. Projects from both courses are described. (EB)
Descriptors: Chemistry, Curriculum Development, Instruction, Laboratory Experiments

Hough, Michael, Ed. – Australian Science Teachers Journal, 1977
Reviews various activities, interests, procedures, innovations, and courses in science education being conducted in the different Australian states. (SL)
Descriptors: Curriculum, Educational Innovation, Educational Programs, Instruction