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Hofstadler SA, Sannes-Lowery KA Interrogation of concovalent complexes by ESl-MS A powerful platform for high throughput drug discovery, chapter 10. [Pg.182]

Capillary electrophoresis (CE) is a powerful separation technique. It is especially useful for separation of ionic compounds and chiral mixtures. Mass spectrometry has been coupled with CE to provide a powerful platform for separation and detection of complex mixtures such as combinatorial libraries. However, the full potential of CE in the application of routine analysis of samples has yet to be realized. This is in part due to perceived difficulty in the use of the CE technique compared to the more mature techniques of HPLC and even SFC. Dunayevskiy et al. [136] analyzed a library of 171 theoretically disubstituted xanthene derivatives with a CE/ESI-MS system. The method allowed the purity and makeup of the library to be determined 160 of the expected compounds were found to be present, and 12 side products were also detected in the mixture. Due to the ability of CE to separate analytes on the basis of charge, most of the xanthene derivatives could be resolved by simple CE-MS procedures even though 124 of the 171 theoretical compounds were isobaric with at least one other molecule in the mixture. Any remaining unresolved peaks were resolved by MS/MS experiments. The method shows promise for the analysis of small combinatorial libraries with fewer than 1000 components. Boutin et al. [137] used CE-MS along with NMR and MS/MS to characterize combinatorial peptide libraries that contain 3 variable positions. The CE-MS method was used to provide a rapid and routine method for initial assessment of the construction of the library. Simms et al. [138] developed a micellar electrokinetic chromatography method for the analysis of combinatorial libraries with an open-tube capillary and UV detection. The quick analysis time of the method made it suitable for the analysis of combinatorial library samples. CE-MS was also used in the analysis... [Pg.211]

With the features discussed, CHEOPS constitutes a powerful platform for heterogeneous process simulation, which can collaboratively work with ROME and ModKit+ at various stages of the lifecycle of the process. Current applications of CHEOPS include tin simulation of the Polyamide-6 process, the simulation of a process for ethylene glycol production described by semi-empirical models [409], the modular dynamic simulation of a pentaerythritol crystallization process [252], and the coupled simulation of crystallization and fluid dynamics problems [253]. [Pg.490]

The LC-MS methods introduced by Ackermann et al. and Korfmacher et al. paved the way for more powerful platforms for high-throughput metabolic stability screening that featured the use of LC-MS/MS [80,92], These powerful methods relied on robotic sample preparation systems that were integrated with an automated LC-MS/MS system. [Pg.50]

Certain load markings also are mandatory for cranes, derricks, powered industrial trucks and powered platforms. [Pg.386]

Networks are used to exchange data between different virtual environments. They lay the foundations for distributed VE systems. Distributed VE systems make it possible to connect people located in different places to let them take part in a joint communication and design process. With the appropriate tools, such systems can be powerful platforms for interdisciplinary work, independent of location. This is known as computer-supported cooperative work (CSCW). [Pg.2503]

Subpart F—Powered Platforms, Manlifts, and Vehicle-Mounted Work Platforms (1910.66—1910.70) 1910 Subpart G—Occupational Health and Environmental Control (1910.94—1910.100)... [Pg.91]

Nanocomposite materials fabricated using polymer-mediated self-assembly of nanoparticles is a versatile and effective tool for the advancement of nanotechnology. The ability to control properties of the polymer and the nanoparticle core and shell at the molecular level provides access to a wide variety of materials with tunable properties. Nanoparticles in polymers would provide a powerful platform for device fabrication. [Pg.28]

The electrochemistry-based microfluidic amperometric sensor provides a powerful platform for the p-TAS for point of care diagnosis due to its natural properties like disposability, low cost, easy fabrication, etc. The applications relating to it have been extended to liquid chromatography, immunoassay, and determination of biomolecules like peroxide and nucleic acids. [Pg.51]

OSHA requires that employers maintain records for the maintenance and inspection of equipment. Examples are powered platforms, cranes and derricks, fire extinguishers, forging machines, manUfts, presses, respirators, and safety valves for pressure vessels. [Pg.77]

Some powered platforms have controls at the platform or basket. Usually there is a second set of operator controls at ground level for general and emergency use. The platform should lock at the level desired and not be subject to free fall if there is a power failure. Users must leam how to set up and operate elevated work platforms. Lifelines connect fall protection harnesses or safety belts to the platform to prevent workers from falling. Controls should be fail-safe and have features to prevent inadvertent actuation. Some controls interlock to level indicator switches to prevent tipping the equipment over. [Pg.136]

Subpart F— Powered Platforms, Manlifts, and Vehicle-Mounted... [Pg.403]


See other pages where Powered platforms is mentioned: [Pg.249]    [Pg.1]    [Pg.14]    [Pg.321]    [Pg.383]    [Pg.454]    [Pg.5]    [Pg.363]    [Pg.255]    [Pg.5]    [Pg.182]    [Pg.77]    [Pg.137]    [Pg.138]    [Pg.64]    [Pg.630]    [Pg.71]    [Pg.216]    [Pg.245]    [Pg.364]    [Pg.300]    [Pg.15]    [Pg.75]    [Pg.51]    [Pg.257]    [Pg.1224]    [Pg.260]    [Pg.297]    [Pg.181]    [Pg.73]    [Pg.406]    [Pg.414]    [Pg.452]   
See also in sourсe #XX -- [ Pg.17 ]




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