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Matthew V Munson, 43Buckeye, AZ

Matthew Munson Phones & Addresses

Buckeye, AZ   

Tucson, AZ   

Farragut, TN   

Florence, SC   

Ashburn, VA   

Cedar Park, TX   

Huron, OH   

Homestead, FL   

Dana Point, CA   

San Clemente, CA   

Mentions for Matthew V Munson

Matthew Munson resumes & CV records

Resumes

Matthew Munson Photo 45

Project Manager

Location:
4395 north Sidney St, Buckeye, AZ 85396
Industry:
Construction
Work:
G. D. Barri & Associates, Inc.
Project Manager
G. D. Barri & Associates, Inc. Mar 2018 - Aug 2019
Construction Manager
Bechtel Government Services Oct 2016 - Mar 2018
Senior Civil Field Engineer
Bechtel Civil Infrastructure Apr 2015 - Oct 2016
Lead Civil Field Engineer and Deputy Project Field Engineer
Bechtel Civil Infrastructure May 2014 - Mar 2015
Lead Civil Field Engineer
Bechtel Power Corporation Feb 2011 - Jan 2013
Area Manager
Bechtel Power Corporation Feb 2008 - Jan 2011
Lead Civil Field Engineer
Bechtel Power Corporation Aug 2007 - Jan 2008
Civil Field Engineer
Local 75 Jul 2002 - Nov 2006
Journeyman Ironworker
Lohse Ymca Jan 2001 - Aug 2002
Maintenance Manager
Education:
Tucson High Magnet School 1995 - 1999
Journeyman Apprenticeship Training Center
Skills:
Construction, Construction Management, Construction Safety, Power Plants, Project Planning, Project Estimation, Constructability, Leadership, Construction Engineering, Piping, Epc, Contract Management, Construction Supervision, Nuclear, Project Engineering, Project Control, Project Coordination, Inspection, Primavera P6, Construction Drawings
Languages:
English
Certifications:
Project Management Professional (Pmp)
Matthew Munson Photo 46

Matthew Munson

Matthew Munson Photo 47

Matthew Munson

Matthew Munson Photo 48

Matthew Munson

Location:
United States
Matthew Munson Photo 49

Director, Valley Family Community Center At Valley Family Church, Kalamazoo

Location:
United States
Industry:
Religious Institutions

Publications & IP owners

Us Patents

Use Of Liquid Junction Potentials For Electrophoresis Without Applied Voltage In A Microfluidic Channel

US Patent:
7141429, Nov 28, 2006
Filed:
Oct 9, 2002
Appl. No.:
10/268620
Inventors:
Matthew S. Munson - Gaithersburg MD, US
Catherine R. Cabrera - Cambridge MA, US
Paul Yager - Seattle WA, US
Anson Hatch - Seattle WA, US
Andrew Kamholz - Seattle WA, US
Assignee:
University of Washington - Seattle WA
International Classification:
G01N 35/08
B01D 17/00
US Classification:
436 53, 436 52, 210511
Abstract:
This invention provides methods for using liquid junction potentials to control the transport of charged particles in fluid streams that are in laminar flow within microfluidic channels. Applications of the methods of this invention include sample preconditioning (removal of interfering substances), electrophoretic separation (fractionation) of charged particles, enhanced or delayed mixing of charged particles across a fluid interface relative to diffusion only, focusing charged particles in a fluid stream in one or two dimensions, and concentration of charged reactants at a fluid interface.

Use Of Liquid Junction Potentials For Electrophoresis Without Applied Voltage In A Microfluidic Channel

US Patent:
2006019, Sep 7, 2006
Filed:
May 22, 2006
Appl. No.:
11/419717
Inventors:
Matthew Munson - Gaithersburg MD, US
Catherine Cabrera - Cambridge MA, US
Paul Yager - Seattle WA, US
Anson Hatch - Seattle WA, US
Andrew Kamholz - Seattle WA, US
Assignee:
University of Washington - Seattle WA
International Classification:
C07K 1/26
G01N 27/447
US Classification:
204451000, 204601000
Abstract:
This invention provides methods for using liquid junction potentials to control the transport of charged particles in fluid streams that are in laminar flow within microfluidic channels. Applications of the methods of this invention include sample preconditioning (removal of interfering substances), electrophoretic separation (fractionation) of charged particles, enhanced or delayed mixing of charged particles across a fluid interface relative to diffusion only, focusing charged particles in a fluid stream in one or two dimensions, and concentration of charged reactants at a fluid interface.

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