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Candela, Maria Fernanda; Arenas, Nelson E.; Caicedo, Obradith; Malagon, Andres – Journal of Chemical Education, 2021
The inhibition of porcine pancreatic lipase by the drug orlistat was studied through a series of activities that combine experimental and computational procedures. The enzymatic activity of the lipase was determined by measuring enzyme kinetics and calculating parameters such as K[subscript m] and V[subscript max] from experimental data. Assays of…
Descriptors: Biochemistry, Drug Therapy, Kinetics, Measurement
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Torres, Néstor; Santos, Guido – Higher Education Pedagogies, 2017
Enzyme kinetics is an essential part of biochemistry programs, which have been gaining importance in recent years for their applications in biotechnology and biomedicine. The teaching and learning of these issues has been traditionally hampered by difficulties that stem mainly from the dynamic and mathematical nature of the topic and the…
Descriptors: Simulation, Kinetics, Problem Solving, Biochemistry
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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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Halkides, Christopher J.; Herman, Russell – Journal of Chemical Education, 2007
We describe a computer tutorial that introduces the concept of the steady state in enzyme kinetics. The tutorial allows students to produce graphs of the concentrations of free enzyme, enzyme-substrate complex, and product versus time in order to learn about the approach to steady state. By using a range of substrate concentrations and rate…
Descriptors: Kinetics, Biochemistry, Computer Uses in Education, Graphs
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Wolf, Walter A., Ed. – Journal of Chemical Education, 1975
Descriptors: Biochemistry, Chemistry, College Science, Computer Programs
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Runge, Steven W.; Hill, Brent J. F.; Moran, William M. – CBE - Life Sciences Education, 2006
A new, simple classroom technique helps cell biology students understand principles of Michaelis-Menten enzyme kinetics. A student mimics the enzyme and the student's hand represents the enzyme's active site. The catalytic event is the transfer of marbles (substrate molecules) by hand from one plastic container to another. As predicted, increases…
Descriptors: Kinetics, Cytology, Biology, Biochemistry