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Spitznagel, Benjamin; Pritchett, Paige R.; Messina, Troy C.; Goadrich, Mark; Rodriguez, Juan – Biochemistry and Molecular Biology Education, 2016
Vision and Change [AAAS, 2011] outlines a blueprint for modernizing biology education by addressing conceptual understanding of key concepts, such as the relationship between structure and function. The document also highlights skills necessary for student success in 21st century Biology, such as the use of modeling and simulation. Here we…
Descriptors: Science Instruction, Biology, Undergraduate Study, Science Laboratories
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Cooper, A. Kat; Oliver-Hoyo, M. T. – Biochemistry and Molecular Biology Education, 2017
The high degree of complexity of macromolecular structure is extremely difficult for students to process. Students struggle to translate the simplified two-dimensional representations commonly used in biochemistry instruction to three-dimensional aspects crucial in understanding structure-property relationships. We designed four different physical…
Descriptors: Models, Molecular Structure, Biochemistry, Science Instruction
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Walter, Justin D.; Littlefield, Peter; Delbecq, Scott; Prody, Gerry; Spiegel, P. Clint – Biochemistry and Molecular Biology Education, 2010
New approaches are currently being developed to expose biochemistry and molecular biology undergraduates to a more interactive learning environment. Here, we propose a unique project-based laboratory module, which incorporates exposure to biophysical chemistry approaches to address problems in protein chemistry. Each of the experiments described…
Descriptors: Translation, Physics, Science Experiments, Molecular Biology
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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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Briese, Nicholas; Jakubowsk, Henry V. – Biochemistry and Molecular Biology Education, 2007
A laboratory project for a first semester biochemistry course is described, which integrates the traditional classroom study of the structure and function of biomolecules with the laboratory study of these molecules using fluorescence spectroscopy. Students are assigned a specific question addressing the stability/function of lipids, proteins, or…
Descriptors: Spectroscopy, Physics, Laboratory Experiments, Biochemistry
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Thompson, Laura E.; Rovnyak, David – Biochemistry and Molecular Biology Education, 2007
We have recently developed and implemented two experiments in biomolecular NMR for an undergraduate-level biophysical chemistry laboratory with commercially available [superscript 15]N-enriched human ubiquitin. These experiments take advantage of [superscript 15]N direct detection of the NMR signal. The first experiment develops skills in…
Descriptors: Chemistry, Molecular Structure, Biochemistry, Physics
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White, Harold B. – Biochemistry and Molecular Biology Education, 2007
Molecular evolution provides an interesting context in which to use problem-based learning because it integrates a variety of topics in biology, biochemistry, and molecular biology. This three-stage problem for advanced students deals with the structure, multiple functions, and properties of lactate dehydrogenase isozymes, and the related…
Descriptors: Teaching Methods, Student Interests, Physics, Paleontology
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Feinman, Richard D. – Biochemistry and Molecular Biology Education, 2004
Redox calculations have the potential to reinforce important concepts in bioenergetics. The intermediacy of the NAD[superscript +]/NADH couple in the oxidation of food by oxygen, for example, can be brought out by such calculations. In practice, students have great difficulty and, even when adept at the calculations, frequently do not understand…
Descriptors: Physics, Biochemistry, Science Instruction, Teaching Methods