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Panagiotis Lazos; Constantina Stefanidou; Constantine Skordoulis – European Journal of Science and Mathematics Education, 2024
The objectives of the present study are to investigate both the history of the collection of scientific instruments from the Maraslean Teaching Center (MTC) and the potential for the collection's use in STEM education programs. Although MTC went by a number of different names during its long history, its institutional goal remained the same:…
Descriptors: Foreign Countries, Science Education, Science Education History, Laboratory Equipment
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Heldt, Caryn L.; Bank, Alex; Turpeinen, Dylan; King, Julia A. – Chemical Engineering Education, 2016
The need to increase science, technology, engineering, and mathematics (STEM) graduates is great. To interest more students into STEM degrees, we made our graphene biosensor research portable, inexpensive, and safe to demonstrate technology development to high school students. The students increased their knowledge of biosensors and proteins, and…
Descriptors: High Schools, Secondary School Science, Laboratory Experiments, STEM Education
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Stevenson, E.; McArthur, J. – International Journal for Academic Development, 2015
In this Reflection on Practice we propose a triple nexus of research, public engagement and teaching that could provide a new pathway for academic developers to enable greater engagement in learning and teaching issues from science, technology, engineering, and mathematics (STEM) academics. We argue that the public engagement activities demanded…
Descriptors: STEM Education, Instructional Innovation, Teaching Methods, Science Instruction
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Wheeler, Lindsay B.; Whitworth, Brooke A.; Gonczi, Amanda L. – Science Teacher, 2014
The number of students majoring in science, technology, engineering, and math (STEM) is declining due in part to a lack of student interest (Fairweather 2008; NRC 2012; PCAST 2010). One reason may be the difference between how science is done in school and how it is done in the field (Osborne, Simon, and Collins 2003). An interdisciplinary…
Descriptors: Engineering Technology, Student Interests, Science Interests, STEM Education
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Lega, Joceline C.; Buxner, Sanlyn; Blonder, Benjamin; Tama, Florence – Journal of College Science Teaching, 2014
We describe a third-year undergraduate course that focuses on multiscale modeling and protein folding and has as its primary goal the encouragement of students to integrate thinking across and beyond disciplinary boundaries. The ability to perform innovative and successful research work in STEM (science, technology, engineering, and mathematics)…
Descriptors: Integrated Activities, Science Activities, Science Education, Undergraduate Students
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Wynn, Toni; Harris, Juliette – Art Education, 2012
The acronym STEM--the teaching of science, technology, engineering, and math--now a familiar term in education, is evolving into STEAM--STEM plus "A" for art. Educational researcher Martin Storksdieck's studies have shown that infusing art into STEM allows for "a different way of perceiving and knowing and dealing with the world, as a means to…
Descriptors: Innovation, Art Education, Science Instruction, STEM Education
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Stearns, Linda M.; Morgan, Jim; Capraro, Mary Margaret; Capraro, Robert M. – Journal of STEM Education: Innovations and Research, 2012
Teaching is a complex activity that requires making ongoing multiple decisions and sporadic, responsive actions all while performing preplanned prescribed tasks. Evidence of certain aspects of teaching can be best assessed with a well-designed observation instrument. This instrument was designed to assess the enactment of the essential elements of…
Descriptors: Evidence, Active Learning, Observation, Student Projects
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Bliss, Angela; Bell, Elizabeth; Spence, Lundie – Science and Children, 2013
Oranges, flying disks, pool noodles, and polyvinyl chloride (PVC) pipe may seem like items discarded after a Rube Goldberg experiment, but in fact, these objects were used in teaching science, technology, engineering, and math (STEM). This article describes a project in which The Center of Ocean Sciences Education Excellence SouthEast (COSEE SE)…
Descriptors: Inquiry, Science Activities, Teaching Methods, Educational Practices
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Moon, Nathan W.; Utschig, Tristan T.; Todd, Robert L.; Bozzorg, Ariyana – Journal of Postsecondary Education and Disability, 2011
This article discusses the evaluation of programmatic interventions to enhance postsecondary STEM education for students with disabilities. SciTrain University, a federally funded project to provide instructor training on accessible teaching according to universal design principles, is presented here as a case study on evaluation for similar…
Descriptors: Disabilities, Teaching Methods, Accessibility (for Disabled), Intervention
Priem, Freddy; De Craemer, Renaat; Calu, Johan; Pedreschi, Fran; Zimmer, Thomas; Saighi, Sylvain; Lilja, Jarmo – European Journal of Open, Distance and E-Learning, 2011
This three-year Virtual Measurements Environment curriculum development project for higher education within the Lifelong Learning Programme of the European Union is the result of intense collaboration among four institutions, teaching applied sciences and technology. It aims to apply the principles and possibilities of evolved distance and…
Descriptors: Electronic Learning, Curriculum Development, Problem Based Learning, Lifelong Learning
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Verma, Alok K.; Dickerson, Daniel; McKinney, Sue – Technology and Engineering Teacher, 2011
Old Dominion University and Norfolk State University, in collaboration with the marine industry and local school systems, is improving STEM preparation using innovative experiences for students and teachers in the nation's major shipbuilding and repair areas through MarineTech and SBRCD (Shipbuilding Repair and Maritime Career Day) projects. The…
Descriptors: Student Projects, Maintenance, Active Learning, Physical Sciences
Babendure, Jeremy; Thompson, Loren; Peterman, Karen; Teiper, Leanne; Gastil, Heather; Liwanag, Heather; Glenn-Lee, Shelley – Society for Research on Educational Effectiveness, 2011
The BioBridge Professional Development model was created to bring current and relevant science into the high school classroom. The purpose of this intervention was to connect teachers with relevant science and to create innovative, hands-on activities that engage students, with the goal of increasing student interest in STEM careers. To this end,…
Descriptors: Student Interests, Educational Change, Professional Development, Teaching Methods
Householder, Daniel L., Ed. – National Center for Engineering and Technology Education, 2011
Since its initial funding by the National Science Foundation in 2004, the National Center for Engineering and Technology Education (NCETE) has worked to understand the infusion of engineering design experiences into the high school setting. Over the years, an increasing number of educators and professional groups have participated in the expanding…
Descriptors: Engineering, Instructional Design, Technology Education, Science Curriculum
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DeLuca, V. William; Lari, Nasim – Journal of Technology Education, 2011
The purpose of this study was to determine the impact of using renewable energy data, obtained from a comprehensive data acquisition system, on improving students' learning and developing their higher-order learning skills. This study used renewable energy data available through a data acquisition system installed and tested by the Green Research…
Descriptors: Curriculum Development, Social Problems, Energy Conservation, Energy
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Redmond, Adrienne; Thomas, Julie; High, Karen; Scott, Margaret; Jordan, Pat; Dockers, Jean – School Science and Mathematics, 2011
This case study reviewed the collaborative efforts of university engineers, teacher educators, and middle school teachers to advance sixth- and seventh-grade students' learning through a series of project-based engineering activities. This two-year project enriched regular school curricula by introducing real-world applications of science and…
Descriptors: Engineering Education, Mentors, Problem Based Learning, Teaching Methods