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McCabe, Declan J. – American Biology Teacher, 2014
This exercise demonstrates the principle of parsimony in constructing cladograms. Although it is designed using mammalian cranial characters, the activity could be adapted for characters from any group of organisms. Students score categorical traits on skulls and record the data in a spreadsheet. Using the Mesquite software package, students…
Descriptors: Science Activities, Science Laboratories, Biology, Evolution
Ditty, Jayna L.; Williams, Kayla M.; Keller, Megan M.; Chen, Grischa Y.; Liu, Xianxian; Parales, Rebecca E. – Biochemistry and Molecular Biology Education, 2013
It has become clear in current scientific pedagogy that the emersion of students in the scientific process in terms of designing, implementing, and analyzing experiments is imperative for their education; as such, it has been our goal to model this active learning process in the classroom and laboratory in the context of a genuine scientific…
Descriptors: College Science, Undergraduate Study, Biology, Science Laboratories
Beagley, C. Timothy – Biochemistry and Molecular Biology Education, 2013
The Biology Department at Salt Lake Community College has used the IMG-ACT toolbox to introduce a genome mapping and annotation exercise into the laboratory portion of its Cell Biology course. This project provides students with an authentic inquiry-based learning experience while introducing them to computational biology and contemporary learning…
Descriptors: Documentation, Genetics, Science Instruction, Science Laboratories
Dixon, James; Kuldell, Natalie – Science Teacher, 2012
Genetic engineering is taught in biology--but as a scientific tool and not as a means to explore engineering design. Yet, given the clever behaviors and patterns that can be found when examining living systems, biology classes seem well positioned to teach foundational engineering design principles (Kuldell 2007). This article examines a new,…
Descriptors: Genetics, Biology, Science Instruction, Secondary School Science
Poling, Kirsten; Smit, Julie; Higgs, Dennis – Bioscience Education, 2013
Laptop computers were provided for use in three biology classes with differing formats (a second year lecture course of 100 students, a third/fourth year lecture course of 50 students, and a second year course with greater than 250 students, in groups of 25 during the laboratory portion of the class) to assess their impact on student learning and…
Descriptors: Laptop Computers, Educational Technology, College Science, Undergraduate Study
Musante, Susan – BioScience, 2010
This article describes how DNA barcoding investigations bring biology to life. Biologists recognize the power of DNA barcoding not just to teach biology through connections to the real world but also to immerse students in the exciting process of science. As an investigator in the Program for the Human Environment at Rockefeller University in New…
Descriptors: Science Projects, Genetics, Biology, Science Instruction
Chan, Yan Mei; Hom, Wendy; Montclare, Jin Kim – Journal of Chemical Education, 2011
Chemistry has become increasingly multidisciplinary. Starting in middle school and high school, however, the different disciplines are taught as distinct subjects and little effort is made to emphasize overlapping concepts. Development of innovative approaches to teaching science through the integration of technology is needed to provide students…
Descriptors: Mentors, Science Interests, Chemistry, Grade 7
Goldenberg, Lauren B. – Science Teacher, 2011
Nowadays, there are lots of digital resources available to teachers. Tools such as Teachers' Domain, an online digital library (see "On the web"); interactive whiteboards; computer projection devices; laptop carts; and robust wireless internet services make it easy for teachers to use technology in the classroom. In fact, in one…
Descriptors: Electronic Libraries, Biology, Educational Technology, Internet
Incorporating a Collaborative Web-Based Virtual Laboratory in an Undergraduate Bioinformatics Course
Weisman, David – Biochemistry and Molecular Biology Education, 2010
Face-to-face bioinformatics courses commonly include a weekly, in-person computer lab to facilitate active learning, reinforce conceptual material, and teach practical skills. Similarly, fully-online bioinformatics courses employ hands-on exercises to achieve these outcomes, although students typically perform this work offsite. Combining a…
Descriptors: Technical Support, Active Learning, Science Laboratories, Internet
Shultz, Jeffry – Journal of Science Education and Technology, 2009
I present a laboratory procedure for illustrating transcription, post-transcriptional modification, gene conservation, and comparative genetics for use in undergraduate biology education. Students are individually assigned genes in a targeted biochemical pathway, for which they design and test polymerase chain reaction (PCR) primers. In this…
Descriptors: Laboratory Procedures, Genetics, Biology, Science Instruction
Swan, Aubrie E.; O'Donnell, Angela M. – Innovations in Education and Teaching International, 2009
The virtual laboratories developed by a life sciences department at a public university in the US were designed for use by college students enrolled in an introductory biology course. The results analyses conducted to examine their effectiveness indicated that self-selected users of the virtual laboratories outperformed non-users on laboratory…
Descriptors: College Students, Science Laboratories, Biology, Science Instruction
Harris, Michelle A.; Peck, Ronald F.; Colton, Shannon; Morris, Jennifer; Neto, Elias Chaibub; Kallio, Julie – CBE - Life Sciences Education, 2009
We conducted a controlled investigation to examine whether a combination of computer imagery and tactile tools helps introductory cell biology laboratory undergraduate students better learn about protein structure/function relationships as compared with computer imagery alone. In all five laboratory sections, students used the molecular imaging…
Descriptors: Experimental Groups, Control Groups, Research Papers (Students), Undergraduate Students
Pryor, Gregory; Bauer, Vernon – Journal of College Science Teaching, 2008
Tablet PC technology can enliven the classroom environment because it is dynamic, interactive, and "organic," relative to the rigidity of chalkboards, whiteboards, overhead projectors, and PowerPoint presentations. Unlike traditional computers, tablet PCs employ "digital linking," allowing instructors and students to freehand annotate, clarify,…
Descriptors: Biology, Classroom Environment, Science Laboratories, Visual Aids
Mickle, James E.; Aune, Patricia M. – Journal of College Science Teaching, 2008
For distance-education students, the requirement for a laboratory course can present a significant hurdle to completing degree requirements. To better serve these nontraditional students, the authors developed a distance version of the laboratory course to provide a hands-on experience similar to that of on-campus students. In order to make the…
Descriptors: Nontraditional Students, Nonmajors, Distance Education, Laboratory Manuals
Floraino, Wely B. – Biochemistry and Molecular Biology Education, 2008
This article discusses the challenges that bioinformatics education is facing and describes a bioinformatics course that is successfully taught at the California State Polytechnic University, Pomona, to the fourth year undergraduate students in biological sciences, chemistry, and computer science. Information on lecture and computer practice…
Descriptors: Computer Uses in Education, Computer Software, Science Laboratories, Biological Sciences
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