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Laukens, Kris; Eyckmans, Marleen; De Neuter, Nicolas; Naulaerts, Stefan; Meysman, Pieter; Van Ostade, Xaveer – Journal of Biological Education, 2021
While computational biology and bioinformatics became an inherent part of most life science degrees, it remains challenging to encourage students to employ these diverse skills in a practical research context. In this education paper, we present a method to enable students to acquire hands-on skills by the data-driven study of complex biomolecular…
Descriptors: Data Analysis, Communicable Diseases, Molecular Biology, Science Instruction
Carter, Lyn – Cultural Studies of Science Education, 2017
In this paper, I have positioned myself with Kean Birch and explored some of the political-economic actors/actants of policy suites implicated in the biotechnologies and bioeconomy. In particular, I have considered Australia's recent National Innovation and Science Agenda and allied documents and entities (that is, Innovation and Science…
Descriptors: Political Influences, Political Attitudes, Policy Formation, Innovation
Norflus, Fran – American Biology Teacher, 2012
The author used digital photography to supplement learning of biotechnology by students with a variety of learning styles and educational backgrounds. Because one approach would not be sufficient to reach all the students, digital photography was used to explain the techniques and results to the class instead of having to teach each student…
Descriptors: Biotechnology, Science Instruction, College Science, Photography
Leang, K. K.; Zou, Q.; Pannozzo, G. – IEEE Transactions on Education, 2010
Piezoelectric actuators (or piezoactuators) are known for their nanoresolution and high-speed positioning capabilities. Therefore, they are used in scanning probe microscopes and in the design of innovative surgical tools and biomedical devices. The expected growth of engineering jobs in the nano- and bio-related fields, in which piezoactuators…
Descriptors: Engineering Education, Undergraduate Study, Teaching Methods, Hands on Science
Friede, Curtis R.; Irani, Tracy A.; Rhoades, Emily B.; Fuhrman, Nicholas E.; Gallo, Maria – Journal of Agricultural Education, 2008
This study was conducted to examine the statistical relationship between problem solving and critical thinking to guide future teaching and research for agricultural educators using the problem-solving approach. Students enrolled in an undergraduate genetics course in the College of Agricultural and Life Sciences at the University of Florida were…
Descriptors: Protocol Analysis, Problem Solving, Genetics, Biotechnology
Ouyang, Liming; Ou, Ling; Zhang, Yuanxing – Biochemistry and Molecular Biology Education, 2007
The faculty of biochemistry established an integrated teaching strategy for biotechnology specialty students, by intermeshing the case-study method, web-assistant teaching, and improved lecture format with a brief content and multimedia courseware. Teaching practice showed that the integrated teaching strategy could retain the best features of…
Descriptors: Foreign Countries, Biotechnology, Biochemistry, Teaching Methods
Naidu, Shashi – Simulation & Gaming, 2007
This article evaluates the effectiveness of using a simulation in an English for Academic Purposes (EAP) class at a university in the United States and discusses the integration of simulations into the Malaysian curriculum. A new approach is needed in Malaysia wherein language learners are given maximum exposure to the language. The article…
Descriptors: Foreign Countries, English for Academic Purposes, Simulation, English (Second Language)
Baker, Elaine DeLott; Hope, Laura; Karandjeff, Kelley – Academic Senate for California Community Colleges, 2009
This report offers California college faculty a closer look at contextualized teaching and learning (CTL) as a promising set of strategies and practices that can be expanded through the state's Basic Skills Initiative. The report is relevant to a range of instructional and counseling faculty, including academic and career and technical education…
Descriptors: Learning Theories, Community Colleges, College Faculty, Literature Reviews
Rothhaar, Rebecca; Pittendrigh, Barry R.; Orvis, Kathryn S. – Journal of Biological Education, 2006
Research in biotechnology is rapidly advancing; everyday, new and exciting discoveries are made. With this new technology there are also many safety and ethical questions, though, as well as the need for education. Alternative teaching methods may help to increase students' understanding of difficult concepts in all aspects of schooling, including…
Descriptors: Student Attitudes, Genetics, Biotechnology, Educational Technology
Moreland, Judy; Jones, Alister; Cowie, Bronwen – Teaching Education, 2006
Biotechnology is an expanding area of scientific and community interest, one that it is important students understand because of its potential to impact on them and their communities. The issue for teachers and science and technology educators is how to provide learning experiences in this area. This paper draws on classroom-based research to…
Descriptors: Student Interests, Biotechnology, Pedagogical Content Knowledge, Classroom Research
Montgomery, Beronda L. – Bioscience Education e-Journal, 2004
A 2-credit service-learning biotechnology course designed as a general education elective for students of all majors and at all levels was offered as an 8-week, half-semester course. The course met for a total of 3 hours of lecture/discussion and 2 hours of service-learning workshop weekly, during which students participated in discussions about…
Descriptors: Course Evaluation, Undergraduate Students, Experiential Learning, Lecture Method
Bednarski, April E.; Elgin, Sarah C. R.; Pakrasi, Himadri B. – Cell Biology Education, 2005
This inquiry-based lab is designed around genetic diseases with a focus on protein structure and function. To allow students to work on their own investigatory projects, 10 projects on 10 different proteins were developed. Students are grouped in sections of 20 and work in pairs on each of the projects. To begin their investigation, students are…
Descriptors: Inquiry, Science Laboratories, Molecular Structure, Cooperative Learning