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Riedinger, Kelly; Taylor, Amy – Afterschool Matters, 2016
Out-of-school time (OST) programs like the Coastal Ecology science camp can positively influence science identities, particularly for youth from groups historically underserved and underrepresented in science, technology, engineering, and math (STEM). OST STEM programming gives youth opportunities to learn science outside the formal classroom in…
Descriptors: STEM Education, Science Education, After School Programs, Science Interests
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Potvin, Patrice; Hasni, Abdelkrim – Studies in Science Education, 2014
The relationship that exists between students and science and technology (S&T) is a complex and important one. If it is positive, then social, economic and environmental consequences are to be expected. Yet, many problems of interest/motivation/attitude (I/M/A) towards S&T have been recorded. A lot of research has been conducted on this…
Descriptors: Science Education, Technology Education, Elementary Secondary Education, Educational Research
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Davies-Vollum, Katherine Sian; Greengrove, Cheryl – Journal of College Science Teaching, 2010
In times of economic downturn, college enrollments often increase. Entering students may come from diverse educational backgrounds and bring variable skill sets. In this article, the authors describe a skills-focused course developed to ensure that transfer and nontraditional students returning to education are prepared to succeed in…
Descriptors: Feedback (Response), Nontraditional Students, Science Programs, Academic Achievement
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Lemus, Judith D.; Bishop, Kristina; Walters, Howard – American Secondary Education, 2010
The QuikSCience Challenge science education program combines a cooperative team project emphasizing community service with an academic competition for middle and high school students. The program aims to develop leadership abilities, motivate interest in ocean sciences, engage students in community service and environmental stewardship, and…
Descriptors: School Business Relationship, Partnerships in Education, Science Programs, Science Education
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Ritchie, Stephen M.; Hampson, Brad – Research in Science Education, 1996
This interpretive study of a Year Six classroom in North Queensland, Australia focuses on how two contrasting groups of children designed ill-defined engineering structures. The collaboration processes within the research team are explored. Classroom-related findings are also reported. (AIM)
Descriptors: Cooperative Learning, Elementary Education, Elementary School Science, Engineering
Boss, Suzie – Northwest Education, 2002
Idaho secondary students learn the scientific method through outdoor environmental projects related to water quality monitoring. A program trains teachers to design project-based learning and provides extensive followup support. Five-day summer workshops immerse teachers in the types of projects they will orchestrate with their own students.…
Descriptors: Active Learning, College School Cooperation, Cooperative Learning, Environmental Education
Indiana State Dept. of Education, Indianapolis. Center for School Improvement and Performance. – 1989
These modules were developed to assist teachers at the intermediate level to move away from extensive skill practice and toward more meaningful interdisciplinary learning. This packet, to be used by teachers in the summer Extended Learning Program, provides detailed thematic lesson plans matched to the Indiana Curriculum Proficiency Guide. The…
Descriptors: Aerospace Education, Aerospace Technology, Astronomy, Cooperative Learning