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Mansoor Alam, 62Rocky Hill, CT

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Rocky Hill, CT   

Socorro, NM   

Richmond, TX   

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Resumes

Mansoor Alam Photo 44

Executive Director At Enough Advocacy

Position:
Executive Director at Enough and The Enough Foundation, IT Assistant at Community Health Center, N/C Organizational Representative at United Nations, Owner at Fort Box Media, Economics Tutor at Wesleyan University
Location:
Greater New York City Area
Industry:
Nonprofit Organization Management
Work:
Enough and The Enough Foundation - New Haven since Sep 2009
Executive Director
Community Health Center - Middletown, CT since Feb 2011
IT Assistant
United Nations - Greater New York City Area since Jul 2011
N/C Organizational Representative
Fort Box Media - Hartford, Connecticut Area since Nov 2011
Owner
Wesleyan University - Middletown, CT since Sep 2012
Economics Tutor
Ten Years Older Sep 2011 - Oct 2011
Author
Dan Malloy for Governor May 2010 - Aug 2010
Campaign Intern
Law Office of Earle Giovanniello - New Haven, CT Dec 2009 - Apr 2010
Intern
Education:
Wesleyan University 2011 - 2015
Bachelor's degree (expected), Economics, Psychology
Cheshire High School 2007 - 2011
Diploma
Interests:
Data,Politics,Language,Social Entrepreneurship, Website Design
Languages:
Spanish
Arabic
Mansoor Alam Photo 45

Mansoor Alam

Location:
United States
Education:
Sindh Medical College (SMC) 1983 - 1989
MBBS, Medicine
Mansoor Alam Photo 46

Mansoor Alam

Location:
United States
Mansoor Alam Photo 47

Mansoor Alam

Location:
United States

Publications & IP owners

Wikipedia

Mansoor Alam Photo 48

Mansoor Alam

Syed Mansoor Alam (born 24 July 1993) is the founder and current director of The Enough Foundation, and its sister group, Enough Advocacy, a student-led nonprofit ...

Us Patents

Optical Fiber Having Reduced Defect Density

US Patent:
7483610, Jan 27, 2009
Filed:
May 3, 2005
Appl. No.:
11/121501
Inventors:
Martin Seifert - West Simsbury CT, US
Upendra H. Manyam - Weatogue CT, US
Mansoor Alam - Rocky Hill CT, US
Kanishka Tankala - South Windsor CT, US
Jaroslaw Abramczyk - New Britain CT, US
Douglas Guertin - Charlton MA, US
Nils Jacobson - North Granby CT, US
Assignee:
Nufern - East Granby CT
International Classification:
G02B 6/02
US Classification:
385123, 385124, 385125, 385126, 385127
Abstract:
An optical fiber comprising a multimode glass core having a diameter of at least 250 microns and an index of refraction and a polymer cladding having a thickness and contactingly surrounding a glass portion of the fiber so as to define an interface between the glass portion and the polymer cladding. The polymer cladding can have a first index of refraction that is less than the index of refraction. The fiber can comprise a density of less than 0. 25 non-conforming regions having a diameter of 25 microns or greater per millimeter of length along the fiber, where each of the non-conforming regions is a region visible to the human eye under an optical microscope and having at least a portion thereof within a selected distance of the interface. The selected distance can be less than or equal to the thickness of the polymer cladding. The optical microscope can have a total magnification of about 200.

Portable Laser

US Patent:
2005004, Feb 24, 2005
Filed:
Jun 14, 2004
Appl. No.:
10/867295
Inventors:
Martin Seifert - West Simsbury CT, US
Mansoor Alam - Rocky Hill CT, US
International Classification:
H01S003/30
H01S003/10
US Classification:
372006000, 372026000
Abstract:
Methods and apparatus for modifying a material with a laser light beam, such as, for example, a laser light beam provided by portable laser, such as, for example, a portable optical fiber laser.

Optical Fiber Having Reduced Defect Density

US Patent:
2009012, May 21, 2009
Filed:
Jan 27, 2009
Appl. No.:
12/360752
Inventors:
Martin Seifert - West Simsbury CT, US
Upendra H. Manyam - Mumbai, IN
Mansoor Alam - Rocky Hill CT, US
Kanishka Tankala - South Windsor CT, US
Jaroslaw Abramczyk - New Britain CT, US
Douglas Guertin - Monson MA, US
Nils Jacobson - Windsor CT, US
Assignee:
NUFERN - East Granby CT
International Classification:
G02B 6/02
US Classification:
385123
Abstract:
An optical fiber comprising a multimode glass core having a diameter of at least 250 microns and an index of refraction and a polymer cladding having a thickness and contactingly surrounding a glass portion of the fiber so as to define an interface between the glass portion and the polymer cladding. The polymer cladding can have a first index of refraction that is less than the index of refraction. The fiber can comprise a density of less than 0.25 non-conforming regions having a diameter of 25 microns or greater per millimeter of length along the fiber, where each of the non-conforming regions is a region visible to the human eye under an optical microscope and having at least a portion thereof within a selected distance of the interface. The selected distance can be less than or equal to the thickness of the polymer cladding. The optical microscope can have a total magnification of about 200. The polymer cladding can be applied to at least a part of the optical fiber in at least a class 1000 environment. Methods of using optical fibers, including receiving with an optical fiber optical energy from a source and guiding the optical energy with the optical fiber, wherein the optical energy comprises at least one of 1) pulses each comprising a peak power of at least 10 kW, 2) an average power of at least 50 Watts, or 3) an average power density of at least 2.9 kW/cm.

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