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de la Hoz, Marina Casanoves; Solé-Llussà, Anna; Haro, Juan; Gericke, Niklas; Valls, Cristina – Journal of Science Education and Technology, 2022
The speed of development of biotechnology within agriculture, industry, and medicine has changed our lives, and we need a biotechnological literacy to understand it. This implies that teachers in primary schools need to be biotechnologically literate in order to educate future generations. The aim of this study was to investigate Swedish…
Descriptors: Student Teachers, Elementary School Teachers, Student Teacher Attitudes, Knowledge Level
Rutter, Charles; Pancorbo, Jennifer – Chemical Engineering Education, 2020
Fermentation is responsible for the production of myriad products across a variety of industrial sectors. In particular, the biomanufacturing industry requires a labor force proficient in fermentation and its associated technologies to drive the production of recombinant protein therapeutics. This paper describes the development of a course that…
Descriptors: Biotechnology, Manufacturing Industry, Biochemistry, Scientific Concepts
Siegel, Marcelle; Roberts, Tina M.; Freyermuth, Sharyn K.; Witzig, Stephen B.; Izci, Kemal – Journal of College Science Teaching, 2015
The authors describe a collaborative group-testing strategy implemented and studied in undergraduate science classes. This project investigated how the assessment strategy relates to student performance and perceptions about collaboration and focused on two sections of an undergraduate biotechnology course taught in separate semesters.
Descriptors: Science Curriculum, College Science, Higher Education, Alignment (Education)
Edmondston, Joanne; Dawson, Vaille – International Journal of Science Education, Part B: Communication and Public Engagement, 2014
Science communication training for undergraduate science students has been recommended to improve future scientists' ability to constructively engage with the public. This study examined biotechnology lecturers' and science communication lecturers' views of science communication training and its possible inclusion in a biotechnology degree course…
Descriptors: Biotechnology, Undergraduate Students, College Science, College Faculty
Fossey, A. – South African Journal of Higher Education, 2012
Universities of Technology are mandated to provide career-orientated programmes preparing graduates for the workplace, doing research aimed at identifying societal and industrial needs, and finding solutions. Universities of Technology interweave technology with university endeavours; focusing on the know-how for the fabrication of things, and the…
Descriptors: Career Education, Biotechnology, Foreign Countries, Industry
Laux, Chad M.; Mosher, Gretchen A.; Freeman, Steven A. – Journal of Technology Studies, 2010
The use of biotechnology in food and agricultural applications has increased greatly during the past decade and is considered by many to be a controversial topic. Drawing upon a previous national study, a new survey was conducted of U.S. and international college students at a large, land-grant, Research University to determine factors that may…
Descriptors: College Students, Research Universities, Student Attitudes, Safety
Chabalengula, Vivien Mweene; Mumba, Frackson; Chitiyo, Jonathan – Biochemistry and Molecular Biology Education, 2011
This study examined preservice teachers' understanding of biotechnology and its related processes. A sample comprised 88 elementary education preservice teachers at a large university in the Midwest of the USA. A total of 60 and 28 of the participants were enrolled in introductory and advanced science methods courses, respectively. Most…
Descriptors: Preservice Teacher Education, Preservice Teachers, Methods Courses, Definitions
Iyer, Rupa S.; Wales, Melinda E. – Advances in Engineering Education, 2012
The increasingly interdisciplinary nature of today's scientific research is leading to the transformation of undergraduate education. In addressing these needs, the University of Houston's College of Technology has developed a new interdisciplinary research-based biotechnology laboratory curriculum. Using the pesticide degrading bacterium,…
Descriptors: Interdisciplinary Approach, Scientific Research, Biotechnology, Undergraduate Study
Erdogan, Mehmet; Ozel, Murat; Usak, Muhammet; Prokop, Pavol – Journal of Science Education and Technology, 2009
The impact of biotechnologies on peoples' everyday lives continuously increases. Measuring young peoples' attitudes toward biotechnologies is therefore very important and its results are useful not only for science curriculum developers and policy makers, but also for producers and distributors of genetically modified products. Despite of…
Descriptors: Student Attitudes, Biotechnology, Science Curriculum, Science Education
Burns, Kristi L.; Oldham, Charlie D.; May, Sheldon W. – Journal of Chemical Education, 2009
As part of a multidisciplinary course that is cross-listed between five departments, we developed an undergraduate student laboratory experiment for culturing, isolating, and purifying the biopolymer, poly(3-hydroxybutyrate), PHB. This biopolyester accumulates in the cytoplasm of bacterial cells under specific growth conditions, and it has…
Descriptors: Plastics, Undergraduate Students, Chemistry, Biotechnology
Edmondston, Joanne; Dawson, Vaille; Schibeci, Renato – International Journal of Science and Mathematics Education, 2010
Public concerns about biotechnology have resulted in greater attention being paid to the mechanisms by which biotechnology is communicated with non-scientists, including the provision of science communication training. As undergraduate and postgraduate courses form the foundation of the biotechnology sector by providing a pipeline of university…
Descriptors: College Graduates, College Students, Communication Skills, Scientists
Tibell, Lena A. E.; Rundgren, Carl-Johan – CBE - Life Sciences Education, 2010
Molecular life science is one of the fastest-growing fields of scientific and technical innovation, and biotechnology has profound effects on many aspects of daily life--often with deep, ethical dimensions. At the same time, the content is inherently complex, highly abstract, and deeply rooted in diverse disciplines ranging from "pure…
Descriptors: Foreign Countries, Biotechnology, Ethics, Humanities
Edmondston, Joanne Elisabeth; Dawson, Vaille; Schibeci, Renato – International Journal of Science Education, 2010
Despite rapid growth of the biotechnology industry worldwide, a number of public concerns about the application of biotechnology and its regulation remain. In response to these concerns, greater emphasis has been placed on promoting biotechnologists' public engagement. As tertiary science degree programmes form the foundation of the biotechnology…
Descriptors: Biotechnology, Science Curriculum, Undergraduate Students, Student Attitudes
Engaging Undergraduates in an Interdisciplinary Program: Developing a Biomaterial Technology Program
Liang, Jia-chi; Kung, Shieh-shiuh; Sun, Yi-ming – Chemical Engineering Education, 2009
Yuan Ze University targeted Biomaterials Science and developed a curriculum related to Biotechnology, Biochemical Engineering, and Biomaterials for engineering students to cultivate talents for both engineering and biotechnology. After several years of operation, recruiting students has succeeded, and students are satisfied with the course design…
Descriptors: Engineering Education, Biotechnology, Chemical Engineering, Interdisciplinary Approach
O'Connor, Kim C. – Chemical Engineering Education, 2007
Advances in the biological sciences necessitate the training of chemical engineers to translate these fundamental discoveries into applications that will benefit society. Accordingly, Tulane University revised its core chemical engineering curriculum in 2005 to include a new introductory course in bioengineering and biotechnology for sophomores.…
Descriptors: Introductory Courses, Biotechnology, Chemical Engineering, Science Instruction
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