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Executive Office of the President, 2022
While much work has been done to promote and advance convergence education over the past decade, a distinct and common framework is beneficial to the concept of convergence education being adopted and universally recognized. Therefore, based on extensive literature review and stakeholder engagement, the IWGC developed a definition and overarching…
Descriptors: Interdisciplinary Approach, STEM Education, Educational Practices, Science and Society
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Pittman, Jason – Science and Children, 2016
Learning celebrations are increasingly common in schools looking to put more emphasis on community and efficacy in place formulaic science fair projects. The celebration aspect is in the community's participation and interaction with the learners. Students are the main event, performing as they would in a school play or applying acquired knowledge…
Descriptors: Science Course Improvement Projects, Science Fairs, Exhibits, Science Activities
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LaBanca, Frank; Ritchie, Krista C. – Science Teacher, 2011
Problem solving is a valuable skill in the science classroom. Students often use a variety of inquiry strategies to identify problems and their implications; develop action plans; locate relevant sources, information, and data; and formulate solutions. Problem solving is a logical, analytical, and sometimes creative process. The less tangible,…
Descriptors: Creativity, Learning Strategies, Problem Solving, Science Fairs
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Bernard, Warren – Science Teacher, 2011
There are many types of inquiry activities out there: Demonstrations, guided or scaffolded inquiry labs, open- or free-inquiry labs, and problem-based or project-based learning activities are all staples in science education. The importance of inquiry is highlighted in such documents as the National Science Education Standards (NRC 1996) and the…
Descriptors: Student Projects, Active Learning, Scientific Literacy, Science Education
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Seeman, Jeffrey I.; Lawrence, Tom – Science Teacher, 2011
One goal of 21st-century education is to develop mature citizens who can identify issues, solve problems, and communicate solutions. What better way for students to learn these skills than by participating in a science and engineering fair? Fair participants face the same challenges as professional scientists and engineers, even Nobel laureates.…
Descriptors: Video Technology, Science Fairs, Learning Experience, Peer Influence
Young, Terrence E., Jr. – School Library Monthly, 2011
From the time they are born, children have a natural curiosity toward the world around them. Even though they can't speak, one can still observe that they are skilled at discovery. Science fair projects can nurture this natural curiosity and give elementary students the opportunity to explore their interests in a rewarding way. Participation in a…
Descriptors: Personality Traits, Science Projects, Student Interests, Science Interests
Kuehner, Trudy – Foreign Policy Research Institute, 2009
This essay summarizes the discussion on how to engage students in the history of innovation that took place at the Wachman Center's two-day history institute for teachers on this subject held October 18-19, 2008. It was observed that hero innovators generally fail multiple times, and suggested that innovation may be fostered by providing a…
Descriptors: Innovation, History Instruction, Learner Engagement, Failure
Morales, Hector – Techniques: Connecting Education and Careers (J1), 2010
Incorporating business skills such as problem-solving, public presentations, collaboration, and self-direction into STEM (science, technology, engineering and mathematics) subjects is an excellent way to build students' enthusiasm for these disciplines. When educators add workplace internships to the learning experience, they are well on their way…
Descriptors: Careers, Experiential Learning, Engineering, High School Seniors
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Mettas, Alexandros C.; Constantinou, Constantinos C. – International Journal of Technology and Design Education, 2008
This paper presents an innovative way in which university education can help pre-service teachers become better problem-solvers. The central idea is to use the "Technology Fair" as a means for promoting pre-service teachers pedagogical content knowledge about technological problem solving skills. This innovation is supported with results from a…
Descriptors: Student Projects, Active Learning, Problem Solving, Pedagogical Content Knowledge
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Sumrall, William; Schillinger, Don – Science Scope, 2004
Science fairs offer students the opportunity to develop skills in inquiry, writing research proposals, working with peers, verifying results, and sharing experimental findings. However, the science fair itself does not necessarily translate into a student's attainment of such skills. Project quality and a student's successful achievement of good…
Descriptors: Learning Activities, Class Activities, Transfer of Training, Science Education
Dashefsky, H. Steven – 1995
This book of more than 160 environmental science activities is designed to help students understand environmental issues, ask questions, and find solutions to the problems. Introductory sections address: (1) the nature of major global problems and a history of environmental concern; (2) basic environmental science terminology and scientific study…
Descriptors: Environmental Education, Intermediate Grades, Junior High Schools, Middle Schools
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Mettas, Alexandros; Constantinou, Constantinos – Technology Teacher, 2006
The purpose of the technology fair is to enhance technological problem-solving skills. This article discusses a technology fair centered on a university/school partnership, which raised the level of complexity both with administrative and scientific issues. The end result of such partnerships is that schools have the opportunity to demonstrate an…
Descriptors: Science Fairs, Problem Solving, Decision Making, Teacher Student Relationship
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Stedman, Carlton H. – Science and Children, 1975
Offers guidelines for setting up a science fair, establishes criteria for project evaluation and discusses judging and awards. (BR)
Descriptors: Elementary School Science, Evaluation Criteria, Instruction, Objectives
Culp, Katie McMillan; Keane, Julie Thompson; Meade, Terri; Nudell, Hannah – Education Development Center, Inc., 2004
Between May 2003 and January 2004, Education Development Center's Center for Children and Technology (CCT) undertook a formative evaluation of Design and Discovery, a hands-on, project-based design and engineering curriculum being disseminated as part of the Intel Innovation in Education initiatives. The Design and Discovery curriculum invites 11-…
Descriptors: Educational Innovation, Formative Evaluation, Engineering, Educational Technology
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Keller, J. David; Holden, Pamela – Science and Children, 1994
Describes a consumer science fair to help students develop problem-solving skills and become savvy consumers. (MKR)
Descriptors: Consumer Education, Elementary Education, Elementary School Science, Grade 4
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