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Marder, Michael – CBE - Life Sciences Education, 2013
Striking differences between physics and biology have important implications for interdisciplinary science, technology, engineering, and mathematics (STEM) education. The author is a physicist with interdisciplinary connections. The research group in which he works, the Center for Nonlinear Dynamics at the University of Texas at Austin, is…
Descriptors: Interdisciplinary Approach, Scientific Research, Science Teachers, STEM Education
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Liu, Dennis W. C. – CBE - Life Sciences Education, 2013
To understand how life works, it is essential to understand physics and chemistry. Most biologists have a clear notion of where chemistry fits into their life sciences research and teaching. Although we are physical beings, physics does not always find a place in the biology curriculum. Physics informs and enlightens biology in myriad dimensions,…
Descriptors: Physics, Biology, Fused Curriculum, Unified Studies Curriculum
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Nagle, Barbara – CBE - Life Sciences Education, 2013
Fostering interdisciplinary learning in biology will require significant changes in the way one teaches science to K-12 students. The perspective on interdisciplinary biology teaching and learning in this essay is based on the author's experiences as a former research cell biologist, high school science teacher, and developer of secondary science…
Descriptors: Biology, Interdisciplinary Approach, Unified Studies Curriculum, Teaching Methods
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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
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Van Wylen, David G. L.; Abdella, Beth R. J.; Dickinson, Shelly D.; Engbrecht, Jason J.; Vandiver, Rebecca – CBE - Life Sciences Education, 2013
Twenty-first-century biology is inherently interdisciplinary. Every aspect of biology, from molecules to organisms to ecosystems, is richly informed by the physical, mathematical, and computational sciences. It is both an exciting and daunting time for biology educators--exciting because of the vast opportunity for important new discoveries that…
Descriptors: Interdisciplinary Approach, Biology, Unified Studies Curriculum, Case Studies
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de Pillis, Lisette; Adolph, Stephen C. – CBE - Life Sciences Education, 2010
Since 2002 the authors have offered an undergraduate major in Mathematical Biology at Harvey Mudd College. The major was developed and is administered jointly by the mathematics and biology faculty. In this paper the authors describe the major, courses, and faculty and student research and discuss some of the challenges and opportunities they have…
Descriptors: Student Research, Biology, Educational Opportunities, Barriers
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Madlung, Andreas; Bremer, Martina; Himelblau, Edward; Tullis, Alexa – CBE - Life Sciences Education, 2011
There is increasing enthusiasm for teaching approaches that combine mathematics and biology. The call for integrating more quantitative work in biology education has led to new teaching tools that improve quantitative skills. Little is known, however, about whether increasing interdisciplinary work can lead to adverse effects, such as the…
Descriptors: Advanced Students, Learning Modules, Biology, Data Interpretation
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Porter, Jason A.; Wolbach, Kevin C.; Purzycki, Catherine B.; Bowman, Leslie A.; Agbada, Eva; Mostrom, Alison M. – CBE - Life Sciences Education, 2010
The Association of College and Research Libraries recommends incorporating information literacy (IL) skills across university and college curricula, for the goal of developing information literate graduates. Congruent with this goal, the Departments of Biological Sciences and Information Science developed an integrated IL and scientific literacy…
Descriptors: Biology, Information Science, Scientific Literacy, Information Literacy
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Marsteller, Pat; de Pillis, Lisette; Findley, Ann; Joplin, Karl; Pelesko, John; Nelson, Karen; Thompson, Katerina; Usher, David; Watkins, Joseph – CBE - Life Sciences Education, 2010
In response to the call of "BIO2010" for integrating quantitative skills into undergraduate biology education, 30 Howard Hughes Medical Institute (HHMI) Program Directors at the 2006 HHMI Program Directors Meeting established a consortium to investigate, implement, develop, and disseminate best practices resulting from the integration of math and…
Descriptors: Biology, Best Practices, Program Implementation, Barriers
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Caudill, Lester; Hill, April; Hoke, Kathy; Lipan, Ovidiu – CBE - Life Sciences Education, 2010
Funded by innovative programs at the National Science Foundation and the Howard Hughes Medical Institute, University of Richmond faculty in biology, chemistry, mathematics, physics, and computer science teamed up to offer first- and second-year students the opportunity to contribute to vibrant, interdisciplinary research projects. The result was…
Descriptors: Research Projects, Physics, Chemistry, Biology
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Marbach-Ad, Gili; Briken, Volker; Frauwirth, Kenneth; Gao, Lian-Yong; Hutcheson, Steven W.; Joseph, Sam W.; Mosser, David; Parent, Beth; Shields, Patricia; Song, Wenxia; Stein, Daniel C.; Swanson, Karen; Thompson, Katerina V.; Yuan, Robert; Smith, Ann C. – CBE - Life Sciences Education, 2007
As research faculty with expertise in the area of host-pathogen interactions (HPI), we used a research group model to effect our professional development as scientific educators. We have established a working hypothesis: The implementation of a curriculum that forms bridges between our seven HPI courses allows our students to achieve deep and…
Descriptors: Research Universities, Teaching Models, Microbiology, Team Teaching
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Jurkowski, Anne; Reid, Ann H.; Labov, Jay B. – CBE - Life Sciences Education, 2007
This article describes the emerging field of metagenomics, a potent new tool that vastly expands the ability of scientists to study the myriad capabilities of microbial communities and the as yet unrecognized relationships and interactions of microbes with other forms of life and the environment. The birth of this exciting new field provides the…
Descriptors: Biological Sciences, Microbiology, Theory Practice Relationship, Educational Opportunities