DR. WILLIAM E SNYDER, MD
Medical Practice at Alcoa Hwy, Knoxville, TN

License number
Tennessee 31530
Category
Medical Practice
Type
Neurological Surgery
Address
Address
1932 Alcoa Hwy STE 255, Knoxville, TN 37920
Phone
(865) 524-1869
(865) 544-6533 (Fax)

Organization information

See more information about WILLIAM E SNYDER at bizstanding.com

Neurosurgical Associates - William E Snyder Jr MD

1932 Alcoa Hwy STE C255, Knoxville, TN 37920

Categories:
General Surgeons, Neurology Physicians & Surgeons, Physicians & Surgeons
Phone:
(865) 524-1869 (Phone)

Professional information

William Snyder Photo 1

Consultant At Mattec, Llc

Position:
Consultant at MATTEC, LLC
Location:
Knoxville, Tennessee Area
Industry:
Research
Work:
MATTEC, LLC - Consultant
Education:
University of Tennessee-Knoxville 1965 - 1976
Ph.D., Metallurgical Engineering


William Snyder Photo 2

William Snyder, Knoxville TN

Work:
Neurosurgical Associates
1932 Alcoa Hwy, Knoxville, TN 37920 Neurosurgical Associates
501 20Th St, Knoxville, TN 37916 Neurosurgical Associates
2100 W Clinch Ave, Knoxville, TN 37916 Neurosurgical Associates
603 Smithview Dr, Maryville, TN 37803 Neurosurgical Associates
1505 E Lamar Alexander Pkwy, Maryville, TN 37804 Neurosurgical Associates
420 W Morris Blvd, Morristown, TN 37813


William E Snyder Photo 3

Dr. William E Snyder, Knoxville TN - MD (Doctor of Medicine)

Specialties:
Neurosurgery
Address:
Neurosurgical Associates
1932 Alcoa Hwy STE 255, Knoxville 37920
(865) 524-1869 (Phone)
Certifications:
Neurosurgery, 2003
Awards:
Healthgrades Honor Roll
Languages:
English
Hospitals:
Neurosurgical Associates
1932 Alcoa Hwy STE 255, Knoxville 37920
Fort Sanders Regional Medical Center
1901 West Clinch Ave, Knoxville 37916
University of Tennessee Medical Center
1924 Alcoa Hwy, Knoxville 37920
Education:
Medical School
Indiana University School Of Medicine
Graduated: 1993
Iu Med Center
Graduated: 1994
Graduated: 1999


William Snyder Photo 4

Method And System For Constructing A Rechargeable Battery And Battery Structures Formed With The Method

US Patent:
5445906, Aug 29, 1995
Filed:
Aug 3, 1994
Appl. No.:
8/285166
Inventors:
David O. Hobson - Oak Ridge TN
William B. Snyder - Knoxville TN
Assignee:
Martin Marietta Energy Systems, Inc. - Oak Ridge TN
International Classification:
H01M 612, H01M 646
US Classification:
429162
Abstract:
A method and system for manufacturing a thin-film battery and a battery structure formed with the method utilizes a plurality of deposition stations at which thin battery component films are built up in sequence upon a web-like substrate as the substrate is automatically moved through the stations. At an initial station, cathode and anode current collector film sections are deposited upon the substrate, and at another station, a thin cathode film is deposited upon the substrate so to overlie part of the cathode current collector section. At another station, a thin electrolyte film is deposited upon so as to overlie the cathode film and part of the anode current collector film, at yet another station, a thin lithium film is deposited upon so as to overlie the electrolyte film and an additional part of the anode current collector film. Such a method accommodates the winding of a layup of battery components into a spiral configuration to provide a thin-film, high capacity battery and also accommodates the build up of thin film battery components onto a substrate surface having any of a number of shapes.


William Snyder Photo 5

Process For Fabricating Articles Of Tungsten-Nickel-Iron Alloy

US Patent:
3979234, Sep 7, 1976
Filed:
Sep 18, 1975
Appl. No.:
5/614458
Inventors:
Walter G. Northcutt - Oak Ridge TN
William B. Snyder - Knoxville TN
Assignee:
The United States of America as represented by the United States Energy
Research and Development Administration - Washington DC
International Classification:
B22F 316, B22F 324
US Classification:
148126
Abstract:
A high density W--Ni--Fe alloy of composition 85-96% by weight W and the remainder Ni and Fe in a wt. ratio of 5:5-8:2 having enhanced mechanical properties is prepared by compacting the mixed powders, sintering the compact in reducing atmosphere to near theoretical density followed by further sintering at a temperature where a liquid phase is present, vacuum annealing, and cold working to achieve high uniform hardness.


William Snyder Photo 6

Ductile Tungsten-Nickel Alloy And Method For Making Same

US Patent:
3979209, Sep 7, 1976
Filed:
Feb 18, 1975
Appl. No.:
5/550677
Inventors:
William B. Snyder - Knoxville TN
Assignee:
The United States of America as represented by the United States Energy
Research and Development Administration - Washington DC
International Classification:
B22F 100, B22F 102
US Classification:
75227
Abstract:
The present invention is directed to a ductile, high-density tungsten-nickel alloy which possesses a tensile strength in the range of 100,000 to 140,000 psi and a tensile elongation of 3. 1 to 16. 5 percent in 1 inch at 25. degree. C. This alloy is prepared by the steps of liquid phase sintering a mixture of tungsten-0. 5 to 10. 0 weight percent nickel, heat treating the alloy at a temperature above the ordering temperature of approximately 970. degree. C. to stabilize the matrix phase, and thereafter rapidly quenching the alloy in a suitable liquid to maintain the matrix phase in a metastable, face-centered cubic, solid- solution of tungsten in nickel.


William Snyder Photo 7

Monolithic Spectrometer

US Patent:
5754290, May 19, 1998
Filed:
Nov 15, 1996
Appl. No.:
8/749878
Inventors:
Slobodan Rajic - Knoxville TN
Charles M. Egert - Oak Ridge TN
William K. Kahl - Knoxville TN
William B. Snyder - Knoxville TN
Boyd M. Evans - Oak Ridge TN
Troy A. Marlar - Knoxville TN
Joseph P. Cunningham - Oak Ridge TN
Assignee:
Lockheed Martin Energy Systems, Inc. - Oak Ridge TN
International Classification:
G01J 328
US Classification:
356328
Abstract:
A monolithic spectrometer is disclosed for use in spectroscopy. The spectrometer is a single body of translucent material with positioned surfaces for the transmission, reflection and spectral analysis of light rays.


William Snyder Photo 8

Microwave Fiber Coating Apparatus

US Patent:
5442160, Aug 15, 1995
Filed:
Jan 22, 1992
Appl. No.:
7/824254
Inventors:
Harold D. Kimrey - Knoxville TN
William B. Snyder - Knoxville TN
Richard C. Krutenat - Belmont MA
Assignee:
Avco Corporation - Providence RI
International Classification:
H05B 670
US Classification:
219690
Abstract:
Apparatus for heating a fiber using microwave energy. The apparatus has a source of microwave energy feeding and applicator. The applicator is configured to concentrate the microwave energy on a chamber holding a fiber. Fibers made or coated using chemical vapor deposition in the apparatus are also disclosed.


William Snyder Photo 9

Microwave Fiber Coating Apparatus

US Patent:
5543605, Aug 6, 1996
Filed:
Apr 13, 1995
Appl. No.:
8/390836
Inventors:
Harold D. Kimrey - Knoxville TN
William B. Snyder - Knoxville TN
Richard C. Krutenat - Belmont MA
Assignee:
Avco Corporation - Providence RI
International Classification:
H05B 670
US Classification:
219690
Abstract:
Apparatus for heating a fiber using microwave energy. The apparatus has a source of microwave energy feeding and applicator. The applicator is configured to concentrate the microwave energy on a chamber holding a fiber. Fibers made or coated using chemical vapor deposition in the apparatus are also disclosed.