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Showing 3,901 to 3,915 of 12,293 results
Cloud-Hansen, Karen A.; Kuehner, Jason N.; Tong, Lillian; Miller, Sarah; Handelsman, Jo – CBE - Life Sciences Education, 2008
The goal of the work reported here was to help students expand their understanding of antibiotic resistance, the Central Dogma, and evolution. We developed a unit entitled "Ciprofloxacin Resistance in "Neisseria gonorrhoeae,"" which was constructed according to the principles of scientific teaching by a team of graduate students, science faculty,…
Descriptors: Graduate Students, First Year Seminars, Problem Solving, Genetics
Hacisalihoglu, Gokhan; Hilgert, Uwe; Nash, E. Bruce; Micklos, David A. – CBE - Life Sciences Education, 2008
Today's biology educators face the challenge of training their students in modern molecular biology techniques including genomics and bioinformatics. The Dolan DNA Learning Center (DNALC) of Cold Spring Harbor Laboratory has developed and disseminated a bench- and computer-based plant genomics curriculum for biology faculty. In 2007, a five-day…
Descriptors: Genetics, Molecular Biology, Workshops, College Faculty
Metz, Anneke M. – CBE - Life Sciences Education, 2008
There is an increasing need for students in the biological sciences to build a strong foundation in quantitative approaches to data analyses. Although most science, engineering, and math field majors are required to take at least one statistics course, statistical analysis is poorly integrated into undergraduate biology course work, particularly…
Descriptors: Majors (Students), Inquiry, Active Learning, Statistical Analysis
Quitadamo, Ian J.; Faiola, Celia L.; Johnson, James E.; Kurtz, Martha J. – CBE - Life Sciences Education, 2008
National stakeholders are becoming increasingly concerned about the inability of college graduates to think critically. Research shows that, while both faculty and students deem critical thinking essential, only a small fraction of graduates can demonstrate the thinking skills necessary for academic and professional success. Many faculty are…
Descriptors: General Education, College Graduates, Biology, Critical Thinking
Simmons, M. E.; Wu, X. B.; Knight, S. L.; Lopez, R. R. – CBE - Life Sciences Education, 2008
Combining field experience with use of information technology has the potential to create a problem-based learning environment that engages learners in authentic scientific inquiry. This study, conducted over a 2-yr period, determined differences in attitudes and conceptual knowledge between students in a field lab and students with combined field…
Descriptors: Student Attitudes, Problem Based Learning, Ecology, Teaching Methods
Walker, J. D.; Cotner, Sehoya H.; Baepler, Paul M.; Decker, Mark D. – CBE - Life Sciences Education, 2008
A lecture section of introductory biology that historically enrolled more than 500 students was split into two smaller sections of approximately 250 students each. A traditional lecture format was followed in the "traditional" section; lecture time in the "active" section was drastically reduced in favor of a variety of in-class student-centered…
Descriptors: Student Attitudes, Student Surveys, Active Learning, Lecture Method
Crowe, Alison; Dirks, Clarissa; Wenderoth, Mary Pat – CBE - Life Sciences Education, 2008
We developed the Blooming Biology Tool (BBT), an assessment tool based on Bloom's Taxonomy, to assist science faculty in better aligning their assessments with their teaching activities and to help students enhance their study skills and metacognition. The work presented here shows how assessment tools, such as the BBT, can be used to guide and…
Descriptors: Standardized Tests, Metacognition, Instructional Effectiveness, Biology
Knight, Jonathan D.; Fulop, Rebecca M.; Marquez-Magana, Leticia; Tanner, Kimberly D. – CBE - Life Sciences Education, 2008
Active-learning strategies are increasingly being integrated into college-level science courses to make material more accessible to all students and to improve learning outcomes. One active-learning pedagogy, case-based learning (CBL), was developed as a way to both enhance engagement in the material and to accommodate diverse learning styles.…
Descriptors: Learning Strategies, Science Laboratories, Molecular Biology, Cytology
Villarejo, Merna; Barlow, Amy E. L.; Kogan, Deborah; Veazey, Brian D.; Sweeney, Jennifer K. – CBE - Life Sciences Education, 2008
To explore the reasons for the dearth of minorities in Ph.D.-level biomedical research and identify opportunities to increase minority participation, we surveyed high-achieving alumni of an undergraduate biology enrichment program for underrepresented minorities. Respondents were asked to describe their career paths and to reflect on the…
Descriptors: Scientific Research, Science Careers, Enrichment Activities, Career Choice
Brame, Cynthia J.; Pruitt, Wendy M.; Robinson, Lucy C. – CBE - Life Sciences Education, 2008
Research based laboratory courses have been shown to stimulate student interest in science and to improve scientific skills. We describe here a project developed for a semester-long research-based laboratory course that accompanies a genetics lecture course. The project was designed to allow students to become familiar with the use of…
Descriptors: Student Research, Computer Uses in Education, Educational Technology, Student Reaction
Smith, Michelle K.; Wood, William B.; Knight, Jennifer K. – CBE - Life Sciences Education, 2008
We have designed, developed, and validated a 25-question Genetics Concept Assessment (GCA) to test achievement of nine broad learning goals in majors and nonmajors undergraduate genetics courses. Written in everyday language with minimal jargon, the GCA is intended for use as a pre- and posttest to measure student learning gains. The assessment…
Descriptors: Genetics, Majors (Students), Nonmajors, Undergraduate Students
Parhami, Behrooz – Computer Science Education, 2008
We observe that recruitment efforts aimed at alleviating the shortage of skilled workforce in computer engineering must be augmented with strategies for retaining and motivating the students after they have enrolled in our educational programmes. At the University of California, Santa Barbara, we have taken a first step in this direction by…
Descriptors: First Year Seminars, College Freshmen, Internet, Academic Persistence
Zendler, A.; Spannagel, C.; Klaudt, D. – Computer Science Education, 2008
Computer science education should not be based on short-term developments but on content that is observable in multiple domains of computer science, may be taught at every intellectual level, will be relevant in the longer term, and is related to everyday language and/or thinking. Recently, a catalogue of "central concepts" for computer science…
Descriptors: Computer Science Education, Multivariate Analysis, Computer Science, Problem Solving
The Effect of Incorporating Cooperative Learning Principles in Pair Programming for Student Teachers
Mentz, E.; van der Walt, J. L.; Goosen, L. – Computer Science Education, 2008
Based on their quantitative and qualitative investigations, the authors conclude that pair programming as a strategy for teaching student teachers could be made more effective through the incorporation of principles associated with cooperative learning. They substantiate this claim by referring to a literature study about the advantages and…
Descriptors: Preservice Teachers, Learning Strategies, Cooperative Learning, Programming
Moore, Felicia M. – Research in Science Education, 2008
Using multiple theoretical frameworks, reflective writings and interviews, this study explores preservice elementary teachers' emerging identities as science teachers and how this identity is connected to notions of critical agency and a stance toward social justice. The study addresses two central questions pertaining to preservice teachers'…
Descriptors: Social Justice, Preservice Teacher Education, Preservice Teachers, Elementary School Science

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