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Young S Nam, 69325 5Th St, Defiance, OH 43512

Young Nam Phones & Addresses

14425 Roosevelt Ave APT 607, Flushing, NY 11354   

14445 35Th Ave, Flushing, NY 11354    718-4616204   

48-17 47Th St, Woodside, NY 11377    718-3610275   

4817 47Th St, Woodside, NY 11377    718-3610275    718-3617753   

24771 Watson Rd, Defiance, OH 43512    419-3932085   

Mentions for Young S Nam

Career records & work history

Medicine Doctors

Young J. Nam

Specialties:
Internal Medicine
Work:
Christian Family Care
8725 S Tacoma Way, Lakewood, WA 98499
253-5884015 (phone) 253-5884035 (fax)
Languages:
English, Korean
Description:
Ms. Nam works in Lakewood, WA and specializes in Internal Medicine.

Young Nam resumes & CV records

Resumes

Young Nam Photo 40

Student At Fashion Institute Of Technology

Location:
Greater New York City Area
Industry:
Design
Young Nam Photo 41

Student At New School University

Location:
United States
Industry:
Hospitality
Young Nam Photo 42

Young Nam

Location:
United States
Young Nam Photo 43

Young Nam

Location:
United States
Young Nam Photo 44

Vice President At Thornton Tomasetti

Position:
Vice President at Thornton Tomasetti
Location:
Irvine, California
Industry:
Civil Engineering
Work:
Thornton Tomasetti since Mar 1997
Vice President
Education:
UCI 1985 - 1988
MS, Structural Engineering
한양대학교 / Hanyang University 1976 - 1983
BS, Civil Engineering

Publications & IP owners

Us Patents

Superhydrophobic Nanostructures

US Patent:
2013024, Sep 19, 2013
Filed:
Mar 1, 2013
Appl. No.:
13/782238
Inventors:
Ryan Enright - Whitestone NY, US
Young Suk Nam - Cambridge MA, US
Nenad Miljkovic - Combridge MA, US
Assignee:
Massachusetts Institute of Technology - Combridge MA
International Classification:
B32B 15/16
US Classification:
428141, 148276
Abstract:
Condensation can he an important process in both emerging and traditional power generation and water desalination technologies. Superhydrophobic nanostructures can promise enhanced condensation heat transfer by reducing the characteristic size of departing droplets via a surface-tension-driven mechanism. A superhydrophobic surface can include nanostructures of a metal oxide having further surface modification.

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