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Geller, Benjamin D.; Rubien, Jack; Hiebert, Sara M.; Crouch, Catherine H. – Physical Review Physics Education Research, 2022
A goal of introductory physics for life sciences (IPLS) curricula is to prepare students to effectively use physical models and quantitative reasoning in biological and medical settings. To assess whether this goal is being met, we conducted a longitudinal study of the impact of IPLS on student work in later biology and chemistry courses. We…
Descriptors: Physics, Biology, Science Instruction, Capstone Experiences
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Noble, Dorottya B.; Mochrie, Simon G. J.; O'Hern, Corey S.; Pollard, Thomas D.; Regan, Lynne – Biochemistry and Molecular Biology Education, 2016
In 2008, we established the Integrated Graduate Program in Physical and Engineering Biology (IGPPEB) at Yale University. Our goal was to create a comprehensive graduate program to train a new generation of scientists who possess a sophisticated understanding of biology and who are capable of applying physical and quantitative methodologies to…
Descriptors: Integrated Curriculum, Integrated Activities, Graduate Study, Biology
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Hartman, Patricia; Newhouse, Renae; Perry, Valerie – Issues in Science and Technology Librarianship, 2014
The train-the-trainer model has great potential for expanding information literacy programs without placing undue burden on already overextended librarians; it is surprisingly underused in academic libraries. At the University of Kentucky, we employed this model to create a new information literacy program in an introductory biology lab. We…
Descriptors: Biological Sciences, Information Literacy, Sustainability, Trainers
D'Avanzo, Charlene; Anderson, Charles W.; Hartley, Laurel M.; Pelaez, Nancy – BioScience, 2012
The Diagnostic Question Cluster (DQC) project integrates education research and faculty development to articulate a model for the effective transformation of introductory biology and ecology teaching. Over three years, faculty members from a wide range of institutions used active teaching and DQCs, a type of concept inventory, as pre- and…
Descriptors: Communities of Practice, Ecology, Biology, Faculty Development
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Cody, Martin L. – Science, 1974
Discusses the optimality of natural selection, ways of testing for optimum solutions to problems of time - or energy-allocation in nature, optimum patterns in spatial distribution and diet breadth, and how best to travel over a feeding area so that food intake is maximized. (JR)
Descriptors: Biological Sciences, Biology, College Science, Ecology
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Abrams, Eleanor; Wandersee, James H. – Journal of Research in Science Teaching, 1995
Tested Richard Duschl's triadic model of the growth of scientific knowledge against research practices of 10 accomplished life scientists. Reports that the scientists were willing to change their aims, methods, or theories and were both realists and relativists depending on the scientific discourse about the phenomena in question. Discusses…
Descriptors: Biological Sciences, Biology, Higher Education, Models
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Fox, Sidney W. – American Biology Teacher, 1974
Outlines the proteinoid theory of the origin of life and examines competing or alternative concepts in the light of a sequential experimental model. (JR)
Descriptors: Biochemistry, Biological Sciences, Biology, College Science
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Brinner, Bonnie – Science Scope, 1992
Presents an activity in which models help students visualize both the DNA process and transcription. After constructing DNA, RNA messenger, and RNA transfer molecules; students model cells, protein synthesis, codons, and RNA movement. (MDH)
Descriptors: Biological Sciences, Biology, Concept Formation, DNA
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Sigismondi, Linda A. – American Biology Teacher, 1989
A paper model which is designed to give students a hands-on experience during lecture and blackboard instruction on DNA structure is provided. A list of materials, paper patterns, and procedures for using the models to teach DNA structure and replication are given. (CW)
Descriptors: Biochemistry, Biological Sciences, Biology, College Science
National Aquarium in Baltimore, MD. Dept. of Education. – 1997
"Living in Water" is a classroom-based, scientific study of water, aquatic environments, and the plants and animals that live in water. The lessons in this curriculum integrate basic physical, biological, and earth sciences, and mathematics. The integration of language arts is also considered essential to its success. These lessons do not require…
Descriptors: Biological Sciences, Biology, Classification, Earth Science
Eckenrod, James S. – 1975
This paper reports on the progress through February 1975 of the Human Sciences Implementation Project of the Biological Sciences Curriculum Study (BSCS). The project's objectives are to disseminate information about the BSCS Human Science Program (HSP) curriculum and to train the staffs of regional centers in the philosophy, rationale, and…
Descriptors: Biological Sciences, Biology, Change Agents, Change Strategies
Oppenheimer, Steven B. – 1988
The Advances in Biological Sciences program at California State University described in this report has provided 160 high school, junior high, and fifth and sixth grade science teachers with lectures, laboratories, lesson planning, and implementation guidance in forefront biology over the past 3 years. Over 200 program lessons have been…
Descriptors: Biological Sciences, Biology, College School Cooperation, Elementary School Teachers