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Roy, Ken – Science Education International, 2002
Explains how to maintain biosafety in high school level biotechnology and microbiology courses. Focuses on laboratory skills, biohazard containment, and defense perimeters. (YDS)
Descriptors: Biotechnology, High Schools, Laboratory Safety, Microbiology
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Lewis, Jennifer R.; Kotur, Mark S.; Butt, Omar; Kulcarni, Sumant; Riley, Alyssa A.; Ferrell, Nick; Sullivan, Kathryn D.; Ferrari, Mauro – Cell Biology Education, 2002
Discusses small-group apprenticeships (SGAs) as a method for introducing cell culture techniques to high school participants. Teaches cell culture practices and introduces advance imaging techniques to solve various biomedical engineering problems. Clarifies and illuminates the value of small-group laboratory apprenticeships. (Author/KHR)
Descriptors: Biotechnology, Cytology, Group Activities, Learning Strategies
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Ramme, Goran – Physics Education, 1996
Soap bubbles excited using a vibration generator can be used to model the formation of a diatomic molecule because of their analogous properties to atomic orbitals. (Author)
Descriptors: Biotechnology, Chemistry, Demonstrations (Science), Higher Education
Hassanein, Neva – Journal of Pesticide Reform, 1993
Describes strategies used by the Biotechnology Working Group during their efforts to influence state and local policy concerning biotechnology issues. Strategies address methods for framing the issue, educating self and others, recruiting allies, and developing citizen pressure. (MDH)
Descriptors: Activism, Biotechnology, Community Action, Community Education
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Titchener-Hooker, Nigel; Zhou, Yu-Hong – European Journal of Engineering Education, 2000
Presents a case study for use in the teaching of bioprocess design. Taking the production and isolation of the intracellular protein s. cerevisae, demonstrates how undergraduates can use a range of data to construct and then investigate the range of processes flowsheet options available for a process duty. (Author/SAH)
Descriptors: Biology, Biotechnology, Data Analysis, Engineering Education
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Reed, Eileen – American Biology Teacher, 2001
Discusses the impact of biotechnology (i.e., the use of DNA profiling in the courtroom) on today's society. Presents a hands-on activity for DNA profiling simulation that actively involves students. (YDS)
Descriptors: Active Learning, Biotechnology, Hands on Science, High Schools
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Crosthwaite, Jan – Science and Education, 2001
Discusses the question, How much understanding of ethics and of what kind is needed to enable useful engagement with practical issues? Discusses this question in the context of a university-level class in the area of ethical issues in biotechnology. (SAH)
Descriptors: Biotechnology, Ethics, Higher Education, Nonmajors
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Leydesdorff, Loet; Heimeriks, Gaston – Journal of the American Society for Information Science and Technology, 2001
Analyzes biotechnology at different levels of aggregation to better understand the possible emergence of a specific European dimension. Uses multivariate analysis with title words from scientific journals of biotechnology to distinguish between the intellectual organization in terms of title words and the institutional network in terms of…
Descriptors: Biotechnology, Foreign Countries, Intellectual Disciplines, Multivariate Analysis
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Russo, Michael T.; Sunal, Cynthia Szymanski; Sunal, Dennis W. – Science Activities: Classroom Projects and Curriculum Ideas, 2004
All citizens will make bioethics decisions as a result of today's biotechnology revolution. The decisions made require citizens to find possible acceptable solutions to dilemmas that have become public issues. In this activity, students practice making decisions in ethical dilemmas after evaluating the influences of their own ethical beliefs and…
Descriptors: Biology, Ethics, Science Instruction, Science Activities
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Eden, Peter – Journal of College Science Teaching, 2005
Genomics profoundly affects society, because genome sequence information is widely used in such areas as genetic testing, genomic medicine/vaccine development, and so forth. Therefore, a responsibility to modernize science curricula exists for "post-genome era" educators. At my university, we developed a BS biotechnology program within a…
Descriptors: Liberal Arts, Science Education, Biotechnology, Curriculum Development
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Anderson, Daun Robin – Journal of Career Development, 2005
Mentoring programs provide benefits to mentors, proteges, and organizations, but not all organizations have such programs in place. In those that do, women's exclusion from informal networks limits their visibility and, in turn, their chances of acquiring a mentor. This poses a barrier to women's career advancement, as does the absence of female…
Descriptors: Mentors, Females, Sex Role, Biotechnology
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Falk, Hedda; Brill, Gilat; Yarden, Anat – International Journal of Science Education, 2008
Adapted primary literature (APL) refers to an educational genre specifically designed to enable the use of research articles for learning biology in high school. The present investigation focuses on the pedagogical content knowledge (PCK) of four high-school biology teachers who enacted an APL-based curriculum in biotechnology. Using a…
Descriptors: Pedagogical Content Knowledge, Biology, Science Instruction, Secondary School Teachers
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Pham, Daphne Q. -D.; Higgs, David C.; Statham, Anne; Schleiter, Mary Kay – Biochemistry and Molecular Biology Education, 2008
The Department of Biological Sciences at the University of Wisconsin-Parkside has developed and implemented an innovative, multidisciplinary undergraduate curriculum in Molecular Biology and Bioinformatics (MBB). The objective of the MBB program is to give students a hands-on facility with molecular biology theories and laboratory techniques, an…
Descriptors: Majors (Students), Undergraduate Study, Science Laboratories, Program Effectiveness
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Dawson, Vaille – Research in Science Education, 2007
The products of modern biotechnology processes such as genetic engineering, DNA testing and cloning will increasingly impact on society. It is essential that young people have a well-developed scientific understanding of biotechnology and associated processes so that they are able to contribute to public debate and make informed personal…
Descriptors: Student Attitudes, Genetics, Engineering, Biotechnology
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Mosto, Patricia; Savelski, Mariano; Farrell, Stephanie H.; Hecht, Gregory B. – Chemical Engineering Education, 2007
Integrating biology in the chemical engineering curriculum seems to be the future for chemical engineering programs nation and worldwide. Rowan University's efforts to address this need include a unique chemical engineering curriculum with an intensive biology component integrated throughout from freshman to senior years. Freshman and Sophomore…
Descriptors: Elective Courses, Biotechnology, Biology, Chemical Engineering
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