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INFRARED LASER MULTIPLE-PHOTON DISSOCIATION OF CDCl3, IN A MOLECULAR BEAM
Distribution and metabolism of daunomycin, adriamycin, and N-acetyldaunomycin in the Syrian golden hamster
Tritium Removal from Contaminated Water Via Infrared Laser Multiple-Photon Dissociation
Isotope separation by means of infrared-laser multiple-photon dissociation offers an efficient way to recover tritium from contaminated light or heavy water found in fission and fusion reactors. For tritium recovery from heavy water, chemical exchange of tritium into deuterated chloroform is followed by selective laser dissociation of tritiated chloroform and removal of the tritiated photoproduct, TCl. The single-step separation factor is at least 2700 and is probably greater than 5000. Here we present a description of the tritium recovery process, along with recent accomplishments in photochemical studies and engineering analysis of a recovery system
Observations on the spectral dependence andT/D isotope selectivity in the CO2 laser multiple-photon dissociation of trifluoromethane
Mechanism of isotope scrambling for CO2 laser photolysis of trifluoremethane-h and-d mixtures
Scriptoria: A Crowd-powered Music Transcription System
In this demo we present Scriptoria, an online crowdsourcing system to tackle the complex transcription process of classical orchestral scores. The system’s requirements are based on experts’ feedback from classical orchestra members. The architecture enables an end- to-end transcription process (from PDF to MEI) using a scalable microtask design. Reliability, stability, task and UI design were also evaluated and improved through Focus Group Discussions. Finally, we gathered valuable comments on the transcription process it- self alongside future additions that could greatly enhance current practices in their field