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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1,021 to 1,035 of 12,293 results
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Kendall, K. Denise; Schussler, Elisabeth E. – CBE - Life Sciences Education, 2013
Undergraduate experiences in lower-division science courses are important factors in student retention in science majors. These courses often include a lecture taught by faculty, supplemented by smaller sections, such as discussions and laboratories, taught by graduate teaching assistants (GTAs). Given that portions of these courses are taught by…
Descriptors: Majors (Students), School Holding Power, College Faculty, Student Attitudes
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Barsoum, Mark J.; Sellers, Patrick J.; Campbell, A. Malcolm; Heyer, Laurie J.; Paradise, Christopher J. – CBE - Life Sciences Education, 2013
We redesigned the undergraduate introductory biology course by writing a new textbook ("Integrating Concepts in Biology" ["ICB"]) that follows first principles of learning. Our approach emphasizes primary data interpretation and the utility of mathematics in biology, while de-emphasizing memorization. This redesign divides biology into five big…
Descriptors: Biology, Science Instruction, Data Interpretation, Textbooks
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Woodin, Terry; Vasaly, Helen; McBride, Duncan; White, Gary – CBE - Life Sciences Education, 2013
This is an exciting time to be a biologist. The advances in our field and the many opportunities to expand our horizons through interaction with other disciplines are intellectually stimulating. This is as true for people tasked with helping the field move forward through support of research and education projects that serve the nation's needs as…
Descriptors: Physics, Biology, Undergraduate Study, Higher Education
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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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Singer, Susan R.; Nielsen, Natalie R.; Schweingruber, Heidi A. – CBE - Life Sciences Education, 2013
Biologists have long been concerned about the quality of undergraduate biology education. Over time, however, biology faculty members have begun to study increasingly sophisticated questions about teaching and learning in the discipline. These scholars, often called biology education researchers, are part of a growing field of inquiry called…
Descriptors: Teaching Methods, Biology, Educational Research, Best Practices
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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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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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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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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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Gouvea, Julia Svoboda; Sawtelle, Vashti; Geller, Benjamin D.; Turpen, Chandra – CBE - Life Sciences Education, 2013
The national conversation around undergraduate science instruction is calling for increased interdisciplinarity. As these calls increase, there is a need to consider the learning objectives of interdisciplinary science courses and how to design curricula to support those objectives. We present a framework that can help support interdisciplinary…
Descriptors: Physics, Interdisciplinary Approach, Biological Sciences, Science Instruction
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Manthey, Seth; Brewe, Eric – CBE - Life Sciences Education, 2013
University Modeling Instruction (UMI) is an approach to curriculum and pedagogy that focuses instruction on engaging students in building, validating, and deploying scientific models. Modeling Instruction has been successfully implemented in both high school and university physics courses. Studies within the physics education research (PER)…
Descriptors: Physics, Self Efficacy, Curriculum Design, Biology
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Donovan, D. A.; Atkins, L. J.; Salter, I. Y.; Gallagher, D. J.; Kratz, R. F.; Rousseau, J. V.; Nelson, G. D. – CBE - Life Sciences Education, 2013
We report on the development of a life sciences curriculum, targeted to undergraduate students, which was modeled after a commercially available physics curriculum and based on aspects of how people learn. Our paper describes the collaborative development process and necessary modifications required to apply a physics pedagogical model in a life…
Descriptors: Physics, Botany, Biology, Educational Change
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O'Shea, Brian; Terry, Laura; Benenson, Walter – CBE - Life Sciences Education, 2013
We present outcomes from curricular changes made to an introductory calculus-based physics course whose audience is primarily life sciences majors, the majority of whom plan to pursue postbaccalaureate studies in medical and scientific fields. During the 2011-2012 academic year, we implemented a Physics of the Life Sciences curriculum centered on…
Descriptors: Physics, Majors (Students), Active Learning, Teaching Methods
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Momsen, Jennifer; Offerdahl, Erika; Kryjevskaia, Mila; Montplaisir, Lisa; Anderson, Elizabeth; Grosz, Nate – CBE - Life Sciences Education, 2013
Assessments and student expectations can drive learning: students selectively study and learn the content and skills they believe critical to passing an exam in a given subject. Evaluating the nature of assessments in undergraduate science education can, therefore, provide substantial insight into student learning. We characterized and compared…
Descriptors: Physics, Thinking Skills, Student Attitudes, Biology
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Christensen, Warren; Johnson, James K.; Van Ness, Grace R.; Mylott, Elliot; Dunlap, Justin C.; Anderson, Elizabeth A.; Widenhorn, Ralf – CBE - Life Sciences Education, 2013
Undergraduate educational settings often struggle to provide students with authentic biologically or medically relevant situations and problems that simultaneously improve their understanding of physics. Through exercises and laboratory activities developed in an elective Physics in Biomedicine course for upper-level biology or pre-health majors…
Descriptors: Physics, Majors (Students), Student Attitudes, Surgery
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