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Cunningham, Christine M.; Kelly, Gregory J.; Meyer, Natacha – Science Education, 2021
In this position paper, we draw from previous research and theoretical developments in the field to propose a set of affordances of engineering with English learners (ELs). Students learning both the language of instruction (e.g., English) and academic subject matter (e.g., engineering, mathematics, science) face the challenge of making sense of…
Descriptors: English Language Learners, Affordances, Engineering Education, STEM Education
Dodo Seriki, Vanessa; McDonald, Scott – Science Education, 2022
Addressing equity issues in science education requires a reorientation to how science students are advised and how science, technology, engineering, and mathematics (STEM) education, particularly science, is viewed. STEM education is often figuratively described as a pipeline containing students who "leak" out before reaching the nexus…
Descriptors: STEM Education, Interpersonal Relationship, Minority Group Students, Science Education
Balgopal, Meena M. – Science Education, 2020
Most science curricular reform efforts are designed by administrators or science education experts. It is less common for teachers to work collaboratively across disciplines to create, implement, and disseminate an integrated STEM curriculum developed for noncollege-bound students that ended up being popular across student populations at the…
Descriptors: STEM Education, Teacher Empowerment, Case Studies, Educational Change
Murphy, P. Karen; Greene, Jeffrey A.; Allen, Elizabeth; Baszczewski, Sara; Swearingen, Amanda; Wei, Liwei; Butler, Ana M. – Science Education, 2018
Flourishing in today's global society requires citizens that are both intelligent consumers and producers of scientific understanding. Indeed, the modern world is facing ever-more complex problems that require innovative ways of thinking about, around, and with science. As numerous educational stakeholders have suggested, such skills and abilities…
Descriptors: High School Students, Concept Formation, Persuasive Discourse, Discussion (Teaching Technique)
Polman, Joseph L.; Newman, Alan; Saul, Ellen Wendy; Farrar, Cathy – Science Education, 2014
In this paper, the authors describe how the practices of expert science journalists enable them to act as "competent outsiders" to science. We assert that selected science journalism practices can be used to design reform-based science instruction; these practices not only foster science literacy that is useful in daily life, but also…
Descriptors: Scientific Literacy, Science Instruction, Educational Change, Science Activities
Bevan, Bronwyn; Gutwill, Joshua P.; Petrich, Mike; Wilkinson, Karen – Science Education, 2015
The Maker Movement has taken the educational field by storm due to its perceived potential as a driver of creativity, excitement, and innovation (Honey & Kanter, [Honey, M., 2013]; Martinez & Stager, [Martin, L., 2013]). Making is promoted as advancing entrepreneurship, developing science, technology, engineering, and mathematics (STEM)…
Descriptors: STEM Education, Creative Thinking, Inquiry, Teaching Methods
Finley, Fred N.; Nam, Younkeyong; Oughton, John – Science Education, 2011
Earth Systems Science (ESS) is emerging rapidly as a discipline and is being used to replace the older earth science education that has been taught as unrelated disciplines--geology, meteorology, astronomy, and oceanography. ESS is complex and is based on the idea that the earth can be understood as a set of interacting natural and social systems.…
Descriptors: Social Systems, Earth Science, Intellectual Disciplines, Concept Teaching
Bradbury, Leslie Upson – Science Education, 2010
Educative mentoring is an idea developed by Feiman-Nemser [Feiman-Nemser, S. (1998). Teachers as teacher educators. "European Journal of Teacher Education," 21(1), 63-74; (2001). Helping novices learn to teach: Lessons from an exemplary support teacher. "Journal of Teacher Education," 52(1), 17-30] to reflect current conceptions of mentoring that…
Descriptors: Mentors, Educational Change, Science Teachers, Beginning Teachers
Bang, Megan; Medin, Douglas – Science Education, 2010
Although there has been considerable focus on the underrepresentation of minorities in science, technology, engineering, and mathematics (STEM) disciplines and the need for science instruction that fosters diversity, much of the associated effort has focused on the goal of diversity and tended to assume that science and science learning are…
Descriptors: American Indians, Disproportionate Representation, Science Instruction, Science Education
Parsons, Eileen R. Carlton – Science Education, 2008
This essay addresses a call for research involving African Americans to interpret data from the historical, contemporary, and cultural experiences of African Americans. The essay argues for a science education research approach that explicitly considers the positionality of African Americans in the United States. This positionality involves the…
Descriptors: African Americans, African American Culture, Individual Development, Science Education

Dekkers, John; Treagust, David F. – Science Education, 1983
Provides the status (as of February 1982) of institutions active in curriculum development and/or science education research in Australia, Fiji, Hong Kong, Indonesia, Paupau New Guinea, Philippines, Malaysia, New Zealand, Singapore, Solomon Islands, and Thailand. Includes institutional title/address and name of contact person. (JN)
Descriptors: Curriculum Development, Development, Educational Research, Foreign Countries

Chisman, Dennis G. – Science Education, 1984
Discusses the contribution of education to national development and science education's role in creating a climate of public opinion for the better use of science and technology in industrial development. Also explores science education's contribution to the better understanding of the relationship between science (and technology) and…
Descriptors: Conferences, Curriculum Development, Developing Nations, Development

Davidson, Robert – Science Education, 1983
Explains changes in programs, policies, and procedures in the Science Education Directorate. Considers administration, effects of reorganization of institutional support and curriculum development programs (including changes in peer/staff review procedures), and new administration's conception of its mission, relationship to groups making demands…
Descriptors: Administrative Change, Advisory Committees, Curriculum Development, Federal Programs

Hodson, Derek – Science Education, 1988
Argues that the failure of modern courses to achieve their declared goals in relation to children's understanding of science has two causes, namely teachers views about the nature of science, and a degree of confusion in the philosophical stance implicit in many science curricula. Presents a philosophical model for curricula. (CW)
Descriptors: Cognitive Development, Cognitive Processes, Curriculum Development, Educational Philosophy

Zubrowski, Bernie – Science Education, 2002
Presents an alternative paradigm of curriculum development based on the theory of situated cognition. This approach starts with context rather than concept, gives greater weight to students' interpretative frameworks, and provides for a more holistic development. Presents a grade 1-8 framework that uses archetypal phenomena and technologies as the…
Descriptors: Curriculum Development, Elementary Secondary Education, Instructional Innovation, Science Education