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Todd, Brandy; Zvoch, Keith – Research in Science Education, 2019
This study examines science interests, efficacy, attitudes, and identity--referred to as affinities, in the context of an informal science outreach program for girls. A mixed methods design was used to explore girls' science affinities before, during, and after participation in a cohort-based summer science camp. Multivariate analysis of survey…
Descriptors: Females, Scientific Attitudes, Science Interests, Self Concept
Cheng, Stephen; Johnston, Susan – Journal of Peer Learning, 2014
Supplemental instruction (SI) has proven highly effective at improving success rates in high-risk first and second-year courses, in part because peerled SI sessions inculcate best-practice study skills in a specific learning context which provides opportunities for skill mastery. A successful SI program in the Faculty of Science at the University…
Descriptors: Peer Teaching, Academic Support Services, College Faculty, Student Participation
Taylor, Gemma – School Science Review, 2014
"Real life" learning has often been suggested as a good method for engaging students in the science curriculum. In this article, an evidence-based rationale for the use of engineering as a context for "real life" science study is explained. This has been achieved through development work undertaken by the National Science…
Descriptors: Science Education, Evidence, Best Practices, Engineering
Tomas, Louisa; Lasen, Michelle; Field, Ellen; Skamp, Keith – Australian Journal of Teacher Education, 2015
At James Cook University, a core first-year subject within the Bachelor of Education, Foundations of Sustainability in Education (FSE), sees students investigate the underlying science and complexity of socioecological challenges through inquiry, place-based learning, experimentation and consideration of classroom practice. Given that this subject…
Descriptors: Online Courses, Experiential Learning, Guidelines, Teaching Methods
Weinstein, Meryle; Whitesell, Emilyn Ruble; Leardo, Michele – Institute for Education and Social Policy, 2014
Informal science education institutions have been identified as critical participants in helping students succeed in science by working in collaboration with school systems across the country. The results of one such collaboration, the Urban Advantage (UA) program found that participation in UA improved student achievement, on average, by 0.6…
Descriptors: Urban Schools, Program Descriptions, Institutional Characteristics, Best Practices
Roberts, Julia Link – Roeper Review, 2010
Ten years of advocacy targeted at establishing a statewide residential school of mathematics and science offers valuable lessons. These lessons learned from one advocacy journey can be applied to other advocacy efforts and generalized beyond this particular example. Therefore, this article provides more than a description of one advocacy story.…
Descriptors: Residential Schools, Advocacy, Science Education, Mathematics Education
McCune, Roger – Education in Science, 2010
In this article, the author describes the ASE Annual Conference 2010 which was held at Nottingham after a gap of 22 years. As always, the main conference was preceded by International Day, an important event for science educators from across the world. There were two strands to the programme: (1) "What works for me?"--sharing new ideas…
Descriptors: Science Education, Conferences (Gatherings), Program Descriptions, Educational Practices
Hue, Gillian; Sales, Jessica; Comeau, Dawn; Lynn, David G.; Eisen, Arri – CBE - Life Sciences Education, 2010
Significant limitations have emerged in America's science training pipeline, including inaccessibility, inflexibility, financial limitations, and lack of diversity. We present three effective programs that collectively address these challenges. The programs are grounded in rigorous science and integrate through diverse disciplines across…
Descriptors: Science Education, Science Course Improvement Projects, Interdisciplinary Approach, College Programs
Walsh, Ed; Edwards, Rebecca – Education in Science, 2009
Models are included in the science National Curriculum because modelling is a key tool for scientists and an integral part of how science works. Modelling is explicitly referred to in the Programmes of Study for Science at Key Stage 3 and 4 (age 11-16) and in Assessing Pupil's Progress (APP). Pupils need to learn how to use models because they are…
Descriptors: National Curriculum, Science Education, Models, Science Process Skills
Cullinane, Jenna – Institute for Higher Education Policy, 2009
In 2006, the National Science Foundation (NSF) began funding the Model Replication Institutions (MRI) program, which sought to improve the quality, availability, and diversity of science, technology, engineering, and mathematics (STEM) education. Faced with pressing national priorities in the STEM fields and chronic gaps in postsecondary…
Descriptors: Science Course Improvement Projects, Science Education, Outreach Programs, Educational Improvement
Bridwell-Bowles, Lillian; Powell, Karen E.; Choplin, Tiffany Walter – Across the Disciplines, 2009
Faculty members at a large state university engaged in discussions of 21st century communication, new media, and the demands for new communication skills as they elected to establish a Communication across the Curriculum (CxC) program in 2005. Faculty leaders reviewed communication theory (e.g., from McLuhan to Kress), best practices from other…
Descriptors: State Universities, College Faculty, Communication Skills, Standards
AhYun, Kimo; Papa, Rosemary; Stoner, Mark – Metropolitan Universities, 2006
Centers for Teaching and Learning (CTLs) are established to promote teaching excellence. While CTLs are effective at fostering teaching excellence in the main, they have provided little attention to addressing potentially unique needs of STEM faculty. This article proffers explanations as to why CTLs do not focus on promoting STEM pedagogies and…
Descriptors: Instructional Improvement, Faculty Development, Science Education, Technology Education

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