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Ipata, Piero L.; Pesi, Rossana – Biochemistry and Molecular Biology Education, 2015
Only diazotrophic bacteria, called "Rizhobia," living as symbionts in the root nodules of leguminous plants and certain free-living prokaryotic cells can fix atmospheric N[subscript 2]. In these microorganisms, nitrogen fixation is carried out by the nitrogenase protein complex. However, the reduction of nitrogen to ammonia has an…
Descriptors: Science Instruction, Scientific Concepts, Molecular Biology, Molecular Structure
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Hoben, John P.; Wang, Jianing; Miller, Anne-Frances – Journal of Chemical Education, 2017
A signature of life is that biological molecules occur as a single stereoisomer with respect to each chiral center, and this is echoed in the structures of biological polymers. Thus, circular dichroism (CD) has emerged as a hallmark of biomolecular structures. The tangible and familiar phenomenon of raw egg white's conversion from transparent…
Descriptors: Molecular Biology, Molecular Structure, Science Experiments, Scientific Concepts
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Finzel, Kara; Beld, Joris; Burkart, Michael D.; Charkoudian, Louise K. – Journal of Chemical Education, 2017
Over the past decade, mechanistic cross-linking probes have been used to study protein-protein interactions in natural product biosynthetic pathways. This approach is highly interdisciplinary, combining elements of protein biochemistry, organic chemistry, and computational docking. Herein, we described the development of an experiment to engage…
Descriptors: Undergraduate Students, Biochemistry, Interdisciplinary Approach, Science Experiments
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Bond, Charles S. – Teaching Science, 2014
Some readers might not fully know what the difference is between crystallography, and the "new age" practice of dangling crystals around the body to capitalise on their healing energy. The latter is often considered to be superstition, while ironically, the former has actually resulted in real rationally-based healing of human diseases…
Descriptors: Physical Sciences, Therapy, Diseases, Biochemistry
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Peterson, Jacob – American Biology Teacher, 2014
A logical question to be expected from students: "How could life develop, that is, change, evolve from simple, primitive organisms into the complex forms existing today, while at the same time there is a generally observed decline and disorganization--the second law of thermodynamics?" The explanations in biology textbooks relied upon by…
Descriptors: Evolution, Scientific Concepts, Biological Sciences, Scientific and Technical Information
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Pinelo, Manuel; Nielsen, Michael K.; Meyer, Anne S. – Journal of Chemical Education, 2011
In a 4-h laboratory exercise, students accomplish a series of enzymatic macerations of apple mash, assess the viscosity of the mash during the maceration, extract the juice by centrifugation, and measure the levels of antioxidant phenols extracted into the juice after different enzyme treatments. The exercise shows the impact of enzyme-catalyzed…
Descriptors: Science Instruction, Science Laboratories, Biochemistry, Data Analysis
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Bowling, Bethany; Zimmer, Erin; Pyatt, Robert E. – American Biology Teacher, 2014
Although the development of next-generation (NextGen) sequencing technologies has revolutionized genomic research and medicine, the incorporation of these topics into the classroom is challenging, given an implied high degree of technical complexity. We developed an easy-to-implement, interactive classroom activity investigating the similarities…
Descriptors: Molecular Biology, Class Activities, Teaching Methods, Educational Practices
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Junker, Matthew – Journal of Chemical Education, 2010
A classroom exercise is described to introduce enzyme kinetics in an undergraduate biochemistry or chemistry course. The exercise is a simulation in which a student acts as an enzyme that "catalyzes" the unscrewing of a nut from a bolt. With other students assisting, the student enzyme carries out reactions with bolt-nut substrates under different…
Descriptors: Mathematical Models, Kinetics, Biochemistry, Simulation
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Schultz, Emeric – Journal of Chemical Education, 2008
A highly flexible learning tool, referred to as a dynamic reaction figure, is described. Application of these figures can (i) yield the correct chemical equation by simply following a set of menu driven directions; (ii) present the underlying "mechanism" in chemical reactions; and (iii) help to solve quantitative problems in a number of different…
Descriptors: Chemistry, Biochemistry, Scientific Principles, Equations (Mathematics)
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Mullins, Joseph J. – Journal of Chemical Education, 2008
This article describes an approach to teaching organic chemistry, which is to have students build their knowledge of organic chemistry upon a strong foundation of the fundamental concepts of the subject. Specifically, the article focuses upon a core set of concepts that I call "the six pillars of organic chemistry": electronegativity, polar…
Descriptors: Organic Chemistry, Biochemistry, Lecture Method, Science Instruction
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Kirk, Sarah R.; Silverstein, Todd P.; McFarlane Holman, Karen L. – Journal of Chemical Education, 2008
This laboratory project is one component of a semester-long advanced biochemistry laboratory course that uses several complementary techniques to study tRNA[superscript Phe] conformational changes induced by ligand binding. In this article we describe a set of experiments in which the thermal unfolding of tRNA[superscript Phe] is studied with…
Descriptors: Biochemistry, Laboratory Experiments, Science Laboratories, Science Experiments