Reaction Progress Kinetic Analysis to Study Organic Reactions Webinar

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The Reaction Progress Kinetic Analysis webinar guest presenter, Donna G. Blackmond, received her Ph.D. in Chemical Engineering from Carnegie-Mellon University, and has enjoyed success in both the pharmaceutical industry and academia.As a world renowned expert in Reaction Progress Kinetic Analysis (RPKA), Professor Blackmond’s research focuses on blending the quantitative aspects of her chemical engineering background together with the synthesis of complex organic molecules by catalytic routes, particularly asymmetric catalysis with application in pharmaceutical processes.Reaction Progress Kinetic Analysis (RPKA) methodology is made straightforward for interpretation via the graphical manipulation of a mathematically determined minimum set of carefully designed experiments.However, it is in the “same excess” protocol that the RPKA methodology is most innovative, because here it provides not simply the same information more rapidly and with higher accuracy, but it extracts information about a working catalytic cycle that is difficult to obtain by any other means: “same excess” experiments help to differentiate a catalyst cycle that is operating at steady-state from one which is subject to temporal effects unrelated to the intrinsic reaction kinetics, such as catalyst activation or deactivation.The Reaction Progress Kinetic Analysis webinar guest presenter, Donna G. Blackmond, received her Ph.D. in Chemical Engineering from Carnegie-Mellon University, and has enjoyed success in both the pharmaceutical industry and academia.In 2010, she joined The Scripps Research Institute in La Jolla, California as Professor of Chemistry.As a world renowned expert in Reaction Progress Kinetic Analysis (RPKA), Professor Blackmond’s research focuses on blending the quantitative aspects of her chemical engineering background together with the synthesis of complex organic molecules by catalytic routes, particularly asymmetric catalysis with application in pharmaceutical processes.Visit http://us.mt.com/us/en/home/events/webinar/ondemand/kinetic.html### Contact Information METTLER TOLEDO Patricia Hicks 410-910-8486 www.mt.com 7075 Samuel Morse Drive Columbia, MD 21046 Click here to view the list of recent Press Releases from METTLER TOLEDO Promote Your Business Press Release Pricing Email this page to a friend

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