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DTSTART:19700308T020000
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CATEGORIES:College of Engineering,Thesis/Dissertations
DESCRIPTION:Partial abstract: When a micro/nano-textured superhydrophobic s
 urface is submerged underwater, a thin layer of gas, known as a plastron, 
 can be trapped between the solid surface and the liquid.  This trapped ga
 s layer enables a wide range of applications, including drag reduction, an
 ti-biofouling, anti-icing, and enhanced boiling heat transfer.  However, 
 the plastron can gradually dissolve into the surrounding liquid due to... 
 For the complete abstract, please contact:  hling1@umassd.edu -or- scunha
 @umassd.edu.  Thank you!\nEvent page: https://www.umassd.edu/events/cms/m
 echanical-engineering-mne-ms-thesis-defense-by-mr-umang-panchal.php
X-ALT-DESC;FMTTYPE=text/html:<html><body><p>Partial abstract:</p>\n<p>When 
 a micro/nano-textured superhydrophobic surface is submerged underwater\, a
  thin layer of gas\, known as a plastron\, can be trapped between the soli
 d surface and the liquid.  This trapped gas layer enables a wide range of
  applications\, including drag reduction\, anti-biofouling\, anti-icing\, 
 and enhanced boiling heat transfer.  However\, the plastron can gradually
  dissolve into the surrounding liquid due to...</p>\n<p>For the complete a
 bstract\, please contact:  hling1@umassd.edu -or- scunha@umassd.edu.  Th
 ank you!</p><p>Event page: <a href="https://www.umassd.edu/events/cms/mech
 anical-engineering-mne-ms-thesis-defense-by-mr-umang-panchal.php">https://
 www.umassd.edu/events/cms/mechanical-engineering-mne-ms-thesis-defense-by-
 mr-umang-panchal.php</a></a></p></body></html>
DTSTAMP:20260520T023431
DTSTART;TZID=America/New_York:20260618T100000
DTEND;TZID=America/New_York:20260618T120000
LOCATION:Library, Room 426 (LIB-426)
SUMMARY;LANGUAGE=en-us:Mechanical Engineering (MNE) MS Thesis Defense by Mr
 . Umang Panchal
UID:8a5974bf44f327a8bda98c07a12aeefb@www.umassd.edu
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