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Nannas, Natalie J. – Bioscene: Journal of College Biology Teaching, 2021
CRISPR-Cas9 is revolutionizing how we conduct scientific research, treat disease, and develop new crops. The widespread impact of this genome-editing technology makes it critical for undergraduate students to understand and engage with this new tool. In this article, we describe a multi-week lab module that teaches undergraduates how to design…
Descriptors: Genetics, Science Instruction, Undergraduate Students, Scientific Research
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Lee, Ning Yuan; Tucker-Kellogg, Greg – Biochemistry and Molecular Biology Education, 2020
Understanding macromolecular structures is essential for biology education. Augmented reality (AR) applications have shown promise in science, technology, engineering, and mathematics (STEM) education, but are not widely used for protein visualization. While there are some tools for AR protein visualization, none of them are accessible to the…
Descriptors: Visualization, Molecular Structure, Computer Simulation, STEM Education
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Hilton, Courtney B.; Goldwater, Micah B.; Hancock, Dale; Clemson, Matthew; Huang, Alice; Denyer, Gareth – CBE - Life Sciences Education, 2022
A critical goal for science education is to design and implement learning activities that develop a deep conceptual understanding, are engaging for students, and are scalable for large classes or those with few resources. Approaches based on peer learning and online technologies show promise for scalability but often lack a grounding in cognitive…
Descriptors: Science Education, Undergraduate Students, Biochemistry, Correlation
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CBE - Life Sciences Education, 2021
Abstract biological processes that occur at the submicroscopic level, such as osmosis and diffusion, are inherently difficult for many students to conceptualize when traditional learning and teaching methods are used. This study introduced an immersive 320° three-dimensional (3D) experience of osmosis in which students became engaged with the…
Descriptors: Science Instruction, Teaching Methods, Outcomes of Education, Multiple Choice Tests
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Swope, Nicole K.; Fryfogle, Patrick J.; Sivy, Tami L. – Journal of Chemical Education, 2015
A flexible, rigorous laboratory experiment for upper-level biochemistry undergraduates is described that focuses on the Roundup Ready maize line. The work is appropriate for undergraduate laboratory courses that integrate biochemistry, molecular biology, or bioinformatics. In this experiment, DNA is extracted and purified from maize kernel and…
Descriptors: Science Laboratories, Laboratory Experiments, Science Experiments, Undergraduate Students
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Eirin-Lopez, Jose M. – Biochemistry and Molecular Biology Education, 2013
The study of chromatin constitutes one of the most active research fields in life sciences, being subject to constant revisions that continuously redefine the state of the art in its knowledge. As every other rapidly changing field, chromatin biology requires clear and straightforward educational strategies able to efficiently translate such a…
Descriptors: Undergraduate Students, Information Science, Evolution, Physics
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van Seters, J. R.; Ossevoort, M. A.; Tramper, J.; Goedhart, M. J. – Computers & Education, 2012
Adaptive e-learning materials can help teachers to educate heterogeneous student groups. This study provides empirical data about the way academic students differ in their learning when using adaptive e-learning materials. Ninety-four students participated in the study. We determined characteristics in a heterogeneous student group by collecting…
Descriptors: Foreign Countries, Electronic Learning, Learning Strategies, Computer Assisted Instruction
Pagliarulo, Christopher L. – ProQuest LLC, 2011
Traditional undergraduate biology courses are content intensive, requiring students to understand and remember large amounts of information in short periods of time. Yet most students maintain little of the material encountered during their education. Poor knowledge retention is a main cause of academic failure and high undergraduate attrition…
Descriptors: Investigations, School Holding Power, Academic Failure, Testing
Hasenekoglu, Ismet; Timucin, Melih – Online Submission, 2007
The aim of this study is to collect and evaluate opinions of CAI experts and biology teachers about a high school level Computer Assisted Biology Instruction Material presenting computer-made modelling and simulations. It is a case study. A material covering "Nucleic Acids and Protein Synthesis" topic was developed as the…
Descriptors: Teacher Attitudes, Computer Software, Measures (Individuals), Genetics
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Mitra, Sugata; Dangwal, Ritu – British Journal of Educational Technology, 2010
What and how much can children learn without subject teachers? In an attempt to find a limit to self organized learning, we explored the capacity of 10-14 year old Tamil-speaking children in a remote Indian village to learn basic molecular biology, initially on their own with a Hole-in-the-Wall public computer facility, and later with the help of…
Descriptors: Foreign Countries, Urban Schools, State Schools, Private Schools
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Marbach-Ad, Gili; Rotbain, Yosi; Stavy, Ruth – Journal of Research in Science Teaching, 2008
Our main goal in this study was to determine whether the use of computer animation and illustration activities in high school can contribute to student achievement in molecular genetics. Three comparable groups of eleventh- and twelfth-grade students participated: the control group (116 students) was taught in the traditional lecture format,…
Descriptors: Animation, Computer Graphics, Computer Assisted Instruction, Illustrations
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Li, Guangxing; Yin, Jiechao; Ren, Yudong; Wang, Binjie; Ren, Xiaofeng – Biochemistry and Molecular Biology Education, 2006
The role and importance of computer-assisted teaching and learning in molecular biological-related education and research has been emphasized and pinpointed. In this study, some benefit viewpoints and discussion are provided for applying the computer-assisted teaching and learning more efficiently in the process of knowledge acquisition and…
Descriptors: Computer Assisted Instruction, Molecular Biology, Teaching Methods, Economic Factors
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Hakkarainen, Kai – Journal of Research in Science Teaching, 2003
The problem addressed in the study was whether 10- and 11-year-old children, collaborating within a computer-supported classroom, could engage in progressive inquiry that exhibits an essential principal feature of mature scientific inquiry: namely, engagement in increasingly deep levels of explanation. Technical infrastructure for the study was…
Descriptors: Grade 5, Teacher Guidance, Scientific Concepts, Intentional Learning
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Coleman, William F.; Fedosky, Edward W. – Journal of Chemical Education, 2006
This new WebWare combines instructional text and Jmol interactive, animated illustrations that help students visualize the mechanism. It is concluded that by animating the fluxional behavior of a simple model for chiral metal catalyst Sn(amidinate)[subscript 2], in which axial/equatorial exchange within the amidinate rings occurs through a Berry…
Descriptors: Internet, Animation, Illustrations, Visualization
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Aegerter-Wilmsen, Tinri; Coppens, Marjolijn; Janssen, Fred; Hartog, Rob; Bisseling, Ton – Biochemistry and Molecular Biology Education, 2005
The building of models to explain data and make predictions constitutes an important goal in molecular biology research. To give students the opportunity to practice such model building, two digital cases had previously been developed in which students are guided to build a model step by step. In this article, the development and initial…
Descriptors: Molecular Biology, Models, Science Instruction, Scientific Research
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