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Forster, Michelle; Bestelmeyer, Stephanie; Baez-Rodriguez, Noelia; Berkowitz, Alan; Caplan, Bess; Esposito, Rhea; Grace, Elizabeth; McGee, Steven – Science Teacher, 2018
Thousands of students around the country have participated in activities using the Data Jam model, creating poetry, songs, videos, or sculpture to improve their data literacy, gain knowledge of local science research, and creatively express their findings. This article introduces the Data Jam model and describes how teachers can use it in…
Descriptors: Information Literacy, Scientific Literacy, Science Activities, Science Instruction
Pagano, Todd; Ross, Annemarie; Smith, Susan B. – Education Sciences, 2015
Scientific undergraduate research in higher education often yields positive outcomes for student and faculty member participants alike, with underrepresented students often showing even more substantial gains (academic, professional, and personal) as a result of the experience. Significant success can be realized when involving deaf and…
Descriptors: Undergraduate Students, Student Research, Deafness, Hearing Impairments
Zhan, Wei – Journal of STEM Education: Innovations and Research, 2014
Research experience has been proven to be effective in enhancing the overall educational experience for undergraduate students. In this article, two engineering research projects with undergraduate students involvement are discussed. The projects provided the undergraduate student researchers with motivation for independent research work and…
Descriptors: STEM Education, Undergraduate Students, Student Research, Engineering Education
Anunson, Paige N.; Winkler, Gates R.; Winkler, Jay R.; Parkinson, Bruce A.; Christus, Jennifer D. Schuttlefield – Journal of Chemical Education, 2013
In general, laboratory experiments focus on traditional chemical disciplines. While this approach allows students the ability to learn and explore fundamental concepts in a specific area, it does not always encourage students to explore interdisciplinary science. Often little transfer of knowledge from one area to another is observed, as students…
Descriptors: Chemistry, Laboratory Experiments, Interdisciplinary Approach, Fuels
Clary, Renee; Wandersee, James – Science Teacher, 2014
Some of the most important scientific studies are associated with either incredibly large dimensions (e.g., the universe) or extremely small proportions (e.g., the cell). While a teacher's curriculum may often switch from mega-expanses to minutia, they should question how easily students comprehend the change in sizes. This article addresses…
Descriptors: Science Education, Science Instruction, Inquiry, Scientific Concepts
Davis, Freddie J.; Lockwood-Cooke, Pamela; Hunt, Emily M. – American Journal of Engineering Education, 2011
Over the last few years, WTAMU Mathematics, Engineering and Science faculty has used interdisciplinary projects as the basis for implementation of a linked-class approach to Problem-Based Learning (PBL). A project that has significant relevance to engineering statics, fluid mechanics, and calculus is the Hydrostatic Pressure Project. This project…
Descriptors: Engineering Education, Undergraduate Students, Problem Based Learning, Interdisciplinary Approach
Goodman, Ira S. – Journal of Research Administration, 2011
With some NIH pay lines running at or below the 10th percentile, and funding becoming scarce for large science grants, new approaches are necessary to secure large interdisciplinary grant awards. The UCSD Moores Cancer Center has developed a team approach, starting with the identification of a competitive opportunity and progressing to the…
Descriptors: Expertise, Research Administration, Research Proposals, Grants
Billingsley, Berry; Arias, Andrea Ramos – School Science Review, 2017
The boundaries between subject disciplines in secondary education today make it difficult for students to see their subjects in context. However, examining the secondary curriculum in England shows that there are a wealth of opportunities for making links and helping to develop students' epistemic insight and scholarly thought. This article…
Descriptors: Epistemology, Secondary School Curriculum, Interdisciplinary Approach, Science Course Improvement Projects
Zhe, Jiang; Doverspike, Dennis; Zhao, Julie; Lam, Paul; Menzemer, Craig – Journal of STEM Education: Innovations and Research, 2010
A Science, Technology, Engineering and Math (STEM) summer Bridge Program was developed for high school students. The program was designed to encourage students to consider choosing an engineering major in college and to explore STEM as a future career. This was accomplished through a 10-week program involving multidisciplinary research activities.…
Descriptors: High School Students, Interdisciplinary Approach, STEM Education, Engineering Education
Hoachlander, Gary – Educational Leadership, 2015
In too many K-12 schools, notes Hoachlander, science, math, and technology are still taught in isolation from one another--and engineering is barely taught at all. Even when STEM content and skills are presented in an integrated fashion, they are rarely linked to the rest of the academic subjects or to real-world work in STEM fields. Hoachlander…
Descriptors: Integrated Activities, Integrated Curriculum, STEM Education, State Standards
Feser, Jason; Vasaly, Helen; Herrera, Jose – CBE - Life Sciences Education, 2013
In this paper, the authors describe how two institutions are helping their undergraduate biology students build quantitative competencies. Incorporation of quantitative skills and reasoning in biology are framed through a discussion of two cases that both concern introductory biology courses, but differ in the complexity of the mathematics and the…
Descriptors: Biology, Data Analysis, Mathematical Concepts, Skill Development

Reed, Kelynne E.; Stewart, Betty H.; Redshaw, Peggy A. – Journal of College Science Teaching, 2003
Describes a project using a multidisciplinary approach for the simultaneous integration of a theme into several disciplines in which participating students apply techniques they learned during the semester and report their findings with a poster presentation. (YDS)
Descriptors: Biology, Chemistry, Higher Education, Inquiry
Pellegrini, John J.; Jansen, Elizabeth – Journal of College Science Teaching, 2013
The Mayo Innovation Scholars Program introduces undergraduates to technology transfer in biomedical sciences by having teams of students from multiple disciplines (e.g., biology, chemistry, economics, and business) analyze inventions in development at the Mayo Clinic. Over 6 months, teams consult with inventors, intellectual property experts, and…
Descriptors: Innovation, Technology Transfer, Undergraduate Students, Biological Sciences
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
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