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Showing 1 to 15 of 18 results Save | Export
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Pedretti, Erminia; Nazir, Joanne – Science Education, 2011
It has been 40 years since science, technology, society, and environment (STSE) education first appeared in science education research and practice. Although supported among many educators worldwide, there is much confusion surrounding the STSE slogan. Widely differing discourses on STSE education and diverse ways of practicing, have led to an…
Descriptors: Science Education, Social Sciences, Technology Education, Environmental Education
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Van Eijck, Michiel; Claxton, Nicholas Xumthoult – Science Education, 2009
Educators repeatedly underscore the intimate relationship between science and technology. This is problematic because technology, far from being "applied science," presupposes a unique epistemology (techno-epistemology). A focus on the role of science in technology overshadows this unique way of knowing and hence limits technology…
Descriptors: World Views, Technology Education, Epistemology, Technology Uses in Education
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Schwartz, Joni – Science Education, 2012
This article is based on the findings of a 2-year study that examined the nature of effective faculty/student undergraduate research (UR) science, technology, engineering, and mathematics (STEM) relationships. The study site was a large urban public college where three fourths of all incoming freshmen receive need-based aid; and although not a…
Descriptors: School Holding Power, Teacher Persistence, Black Colleges, Mentors
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Roth, Wolff-Michael; Van Eijck, Michiel – Science Education, 2010
Challenged by a National Science Foundation-funded conference, 2020 Vision: The Next Generation of STEM Learning Research, in which participants were asked to recognize science, technology, engineering, and mathematics (STEM) learning as lifelong, life-wide, and life-deep, we draw upon 20 years of research across the lifespan to propose a new way…
Descriptors: Reflective Teaching, Literature Reviews, Science Education, Technology Education
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Malone, Kareen Ror; Barabino, Gilda – Science Education, 2009
This paper discusses conceptions of identity in relation to science education and presents material from a series of interviews and focus groups with graduate students in science and technology. Given difficulties in retention and levels of significant participation by minority students indicated by aggregate data, the issue of race, as it informs…
Descriptors: Minority Groups, Graduate Students, Disproportionate Representation, Science Education
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McDonald, Scott; Songer, Nancy Butler – Science Education, 2008
Translating written curricular materials into rich, complex, learning environments is an undertheorized area in science education. This study examines two critical cases of teachers enacting a technology-rich curriculum focused on the development of complex reasoning around biodiversity for fifth graders. Two elements emerged that significantly…
Descriptors: Biodiversity, Science Teachers, Science Education, Curriculum
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Ogunniyi, M. B. – Science Education, 2000
Provides a synopsis of the UNITWIN/United Nations Educational, Scientific and Cultural Organization (UNESCO) Chairs scheme in science and mathematics education in southern Africa. Examines the possible impact of the brain-drain phenomenon. Discusses the successes and failures that have attended efforts directed at capacity building in science and…
Descriptors: Educational Practices, Educational Strategies, Higher Education, Mathematics Education
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Hall, Robin L.; Schaverien, Lynette – Science Education, 2001
Explores families' engagement with their children's science and technology learning at home over a 6-month period, and illuminates both the nature and the educational significance of what families do. Indicates that families are engaged with children's inquiries at home in many ways such as providing resources, conversing, and investigating…
Descriptors: Elementary Secondary Education, Parent Participation, Parents as Teachers, Science Education
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Kass, Heidi; MacDonald, A. Leo – Science Education, 1999
Presents four examples of students engaged in self-directed building projects. Uses the enactivist ideas of enaction, coemergence, mutual specification, and adequate conduct to describe and interpret the four cases. Describes the ways in which personally significant meanings and personal competency emerge within the context of self-directed…
Descriptors: Cognitive Processes, Constructivism (Learning), Design, Epistemology
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Gaskell, P. James; Hepburn, Gary – Science Education, 1997
Analyzes current examples of the integration of academic and occupational curriculum in science and technology education in light of issues developed in two historical failures. Discusses the differential status of academic and applied science, the importance of support from groups such as industry and postsecondary institutions, and the lack of…
Descriptors: Foreign Countries, Industry, Integrated Curriculum, Science Curriculum
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Korpan, Connie A.; Bisanz, Gay L.; Bisanz, Jeffrey; Boehme, Conrad; Lynch, Mervyn A. – Science Education, 1997
Children's activities related to science, nature, and technology were studied via structured interviews of parents and students in pre-school through upper-elementary grades. Interviews can be used to construct profiles of students to be used as a platform upon which to build instruction. Describes how interviews were developed, what type of…
Descriptors: Elementary Education, Extracurricular Activities, Informal Education, Interviews
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Yager, Robert E.; Tamir, Pinchas – Science Education, 1993
Describes the Iowa science-technology-society (STS) models and goals. Characterizes and gives examples of using the STS approach in classrooms. Reports the results of four studies that have assessed the outcomes of learning with STS instruction. Identifies some problems concerning the future use of STS in schools. (PR)
Descriptors: Classroom Research, Elementary Secondary Education, Science and Society, Science Curriculum
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Seymour, Elaine – Science Education, 2002
Describes some features in the changing landscape of activities intended to improve both quality and access in science, mathematics, engineering, and technology (SMET) undergraduate education. Offers a framework for discussion of historical change endeavors as an aid in considering next steps. (Author/MM)
Descriptors: Curriculum, Educational Change, Educational History, Engineering Education
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Ramsey, John – Science Education, 1993
The premise of this report is that only the science-technology-society (STS) effort offers the potential for meeting the challenge of science for a general education. Presents the goals of STS issue-based instruction. (PR)
Descriptors: Educational Change, Elementary Secondary Education, Program Descriptions, Science and Society
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Martin, Laura M. W. – Science Education, 2004
In recognition of the fact that science centers and other informal educational institutions can play a role in the reform of science, technology, engineering, and mathematics (STEM) education, several major research and professional programs are currently underway. This article discusses one such effort, the Center for Informal Learning and…
Descriptors: Schools, Science Education, Developmental Psychology, Museums
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