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Lim T Nguyen, 691745 Ethan Ln, Brentwood, TN 37027

Lim Nguyen Phones & Addresses

1745 Ethan Ln, Brentwood, TN 37027    615-3767089   

Murfreesboro, TN   

Houston, TX   

Nashville, TN   

Haverhill, MA   

1745 Ethan Ln, Brentwood, TN 37027   

Work

Company: Asian task force - Boston, MA 2008 Position: Full-time vietnamese advocate

Education

School / High School: Cambridge College- Cambridge, MA 2007 Specialities: MA in Medical Interpreter Certification

Mentions for Lim T Nguyen

Lim Nguyen resumes & CV records

Resumes

Lim Nguyen Photo 28

Vietnamese Interpreter

Work:
My Home
Vietnamese Interpreter
Lim Nguyen Photo 29

Lim Nguyen

Lim Nguyen Photo 30

Lim Van Nguyen - Chelsea, MA

Work:
Asian Task Force - Boston, MA 2008 to 2014
Full-time Vietnamese Advocate
Cambridge Health Alliance - Cambridge, MA 2002 to 2007
Free-lance Vietnamese Medical/Legal Interpreter
East Boston Neighborhood Health Center - East Boston, MA 2001 to 2002
Vietnamese Medical Interpreter
South East Asian Community Collaborative - East Boston, MA 2000 to 2002
Outreach Specialist
Federal Census Bureau - Boston, MA 2000 to 2001
Enumerator/Recruiter Assistant/Census Crew Leader
Education:
Cambridge College - Cambridge, MA 2007 to 2010
MA in Medical Interpreter Certification
Harborside Business School - East Boston, MA
Computer Applications and Business Communication Certification
Saigon and Faculty College
Literature, geography, history

Publications & IP owners

Us Patents

System And Method For Performing Optical Code Division Multiple Access Communication Using Bipolar Codes

US Patent:
5760941, Jun 2, 1998
Filed:
Feb 29, 1996
Appl. No.:
8/609017
Inventors:
James F. Young - Houston TX
Lim Nguyen - Houston TX
Assignee:
Rice University - Houston TX
International Classification:
H04J 1408
H04B 1004
US Classification:
359181
Abstract:
An optical encoding and decoding system which performs code-division multiple access (CDMA) communication in the incoherent, or direct detection, optical domain using bipolar +1/-1 codes. The present invention uses code modulation and detection principles that permit all-optical implementation of the bipolar, +1/-1, code and correlation detection that have been developed for the radio frequency (RF) systems. This is possible in spite of the non-negative, or unipolar, +1/0, nature of the incoherent optical system that only detects and processes the signal intensity. The unipolar optical system of the present invention is equivalent to the bipolar RF system in that the correlation properties of the bipolar codes is completely preserved. The optical CDMA system can be realized both in time or frequency domain encoding with all-optical components.

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