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Mark J Murrell, 446532 Kenwell St, Dallas, TX 75209

Mark Murrell Phones & Addresses

6532 Kenwell St, Dallas, TX 75209    972-7881915   

6711 Kenwell St, Dallas, TX 75209    214-3507371   

5711 Preston Oaks Rd, Dallas, TX 75254    972-7881915   

Lynchburg, VA   

Fort Worth, TX   

6711 Kenwell St, Dallas, TX 75209    214-9069201   

Work

Company: City of Dallas Address: 2014 Main St, Dallas, TX 75201 Specialities: Public Finance / Tax Exempt Finance - 34% • Criminal Defense - 33% • Government - 33%

Education

School / High School: Texas A&M University School of Law

Ranks

Licence: Texas - Eligible To Practice In Texas Date: 2009

Mentions for Mark J Murrell

Career records & work history

Lawyers & Attorneys

Mark Murrell Photo 1

Mark Jerome Murrell, Dallas TX - Lawyer

Address:
City of Dallas
2014 Main St, Dallas, TX 75201
214-7892271 (Office)
Licenses:
Texas - Eligible To Practice In Texas 2009
Education:
Texas A&M University School of Law
Texas A&M University School of Law
Specialties:
Public Finance / Tax Exempt Finance - 34%
Criminal Defense - 33%
Government - 33%

Mark Murrell resumes & CV records

Resumes

Mark Murrell Photo 44

Production Coordinator

Location:
1218 west Figg St, Wichita, KS 67213
Industry:
Research
Work:
Fairmount Technologies Llc
Production Coordinator
Wichita State University Jul 1999 - Mar 2015
Research Machinist
E.w Johnson 1995 - 1997
Machinist
High Voltage Supply 1990 - 1995
Machinist
Altoona Gear 1986 - 1988
Machinist
Texas Instruments Apr 1979 - Jun 1987
Machinist
Murrell Tool & Die 1970 - 1979
Die Maker, Die Designer, Machinist
Education:
Wichita State University 1999 - 2012
Skills:
Machining, Cad, Composites, Cnc, Catia, Machine Tools, Engineering, Lean Manufacturing, Manufacturing, Product Design, Mastercam, Finite Element Analysis, Microsoft Office, Aerospace, Gd&T, Lathe, Solid Modeling, Continuous Improvement, Troubleshooting, Aircraft, Manufacturing Engineering, Microsoft Word, Microsoft Excel, Computer Aided Design, Computer Numerical Control, Word, Excel, Research, Powerpoint, Photoshop, Windows, Problem Solving, Machine Design, Assembly, Modeling, Outlook, Prototyping, Customer Service, Management, Cnc Manufacturing, Milling
Interests:
Foosball
Hot Cars
Remote Controled Helicopters and Airplanes
Environment
Education
Science and Technology
Bowling
Health
Animal Welfare
Pool
Languages:
English
Certifications:
Catia Part Design and Sketcher
Catia Assembly Design
Catia Prisimatic Machining
Webmaster
Mark Murrell Photo 45

Owner

Work:
Murrell Trading
Owner
Mark Murrell Photo 46

Mark Murrell

Mark Murrell Photo 47

Mark Murrell

Mark Murrell Photo 48

Mark Murrell

Publications & IP owners

Us Patents

Air-Cooled Shoe Having An Air Exhaust Pump

US Patent:
5996250, Dec 7, 1999
Filed:
Nov 25, 1998
Appl. No.:
9/199587
Inventors:
Rusty A. Reed - Irving TX
Mark D. Murrell - Coppell TX
International Classification:
A43B 706
US Classification:
36 3R
Abstract:
An air cooled ventilated shoe (200) is provided for ventilating an area of the shoe (200) around a foot. The air-cooled shoe contains an outer sole (204). An intake tube (228) is disposed near the front of the outer sole (204). The intake tube (228) is connected to pump cell (210). An exhaust tube (234) is also connected to pump cell (210). An intake valve (242) is disposed along the intake tube (228) and an exhaust valve (244) is disposed along the exhaust tube (234). The intake valve (242) only allows air to flow through to the pump (210). The exhaust valve (244) only allows air to flow out of the pump cell (210). The pump cell (210) is filled with an open-celled foam (212) so that when no pressure is being applied to the pump cell (210), it draws air in through the intake tube (228). When pressure is applied to the pump cell (210), the open-celled foam (212) is compressed and the air is expelled through the exhaust tube (234). An alternative pump cell (352) may also be provided within a single flow port (358) which is connected to both an intake (368) within the shoe (200) and the exhaust from the shoe (200), with two one-way valves disposed in a singular valve pod (362) connected between the flow port (358) of the valve pod (352), and the intake (368) and the exhaust.

Air Cooled Shoe Having An Air Exhaust Pump

US Patent:
5845417, Dec 8, 1998
Filed:
Aug 3, 1995
Appl. No.:
8/517877
Inventors:
Rusty Allen Reed - Grand Prairie TX
Mark D. Murrell - Coppell TX
International Classification:
A43B 706
US Classification:
36 3B
Abstract:
A ventilated shoe for ventilating the foot contains an outer sole (204). A heel pad (206) is disposed at the rear end of the outer sole (204). An intake tube (228) is disposed near the front of the outer sole (204). The intake tube (228) is connected to pump cell (210). An exhaust tube (234) is also connected to pump cell (210). An intake valve (242) is disposed along the intake tube (228) and an exhaust valve (244) is disposed along the exhaust valve (244). The intake valve (242) only allows air to flow through to the pump (210). The exhaust valve (244) only allows air to flow out of the pump cell (210). The pump cell (210) is filled with an open-celled foam (212) so that when no pressure is being applied to the pump cell (210), it draws air in through the intake tube (228). When pressure is applied to the pump cell (210), the open-celled foam (212) is compressed and the air is expelled through the exhaust tube (234).

Air Cooled Shoe

US Patent:
5697170, Dec 16, 1997
Filed:
May 16, 1996
Appl. No.:
8/648861
Inventors:
Mark D. Murrell - Coppell TX
Rusty A. Reed - Grand Prairie TX
International Classification:
A43B 706
US Classification:
36 3B
Abstract:
A ventilated shoe for ventilating the foot is disclosed. The ventilated shoe contains an outer sole (14). A heel pad (16) is disposed at the rear end of the outer sole (14). An intake manifold (26) is disposed near the front of the outer sole (14). The intake manifold (26) is connected to pump cells (20), (22) and (24). An exhaust manifold (46) is also connected to pump cells (20), (22) and (24). The intake manifold (26) only allows air to flow through the manifold (26) into the pump cells (20), (22) and (24). The exhaust manifold (46) only allows air to flow out of the manifold (46) from the pump cells (20), (22) and (24). The pump cells (20), (22) and (24) are filled with an open-celled foam (70) so that when no pressure is being applied to the pump cells (20), (22) and (24), they draw air in through the intake manifold (26). When pressure is applied to the pump cells (20), (22) and (24), the open-celled foam (70) is compressed and the air is expelled through the exhaust manifold (46).

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