Warren K Beard, Age 5320157 Norwood Dr N, Southfield, MI 48075

Warren Beard Phones & Addresses

20157 Norwood Dr, Southfield, MI 48075 (248) 355-9135

Novi, MI

Ann Arbor, MI

Washington, DC

Detroit, MI

Port Jervis, NY

20157 Norwood Dr N, Southfield, MI 48075 (248) 842-2457

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Work

Position: Production Occupations

Education

Degree: Associate degree or higher

Emails

Mentions for Warren K Beard

Warren Beard resumes & CV records

Resumes

Warren Beard Photo 38

Project Delivery Manager

Location:
501 Turner Rd, Grapevine, TX 76051
Industry:
Government Administration
Work:
Navigating the Open Job Market Sep 2019 - Nov 2019
Unemployed
Chemicomays, Llc Sep 2019 - Nov 2019
Shipping Clerk
Sep 2019 - Nov 2019
Project Delivery Manager
United States Postal Service Sep 2019 - Nov 2019
Clerk
Education:
Lawrence Technological University
Skills:
Computer Science, Local Government, Government, Public Administration, Software Documentation, Software Development, Data Entry, Administrative Assistants, Enterprise Software, Customer Service, Microsoft Office, Outlook, Microsoft Word, Policy, Software Engineering, Software Design, Leadership, Management, Microsoft Outlook, Microsoft Powerpoint, Program Management, Project Management, Public Speaking, Research, Strategic Planning, Team Building
Languages:
English
Warren Beard Photo 39

Warren Beard

Warren Beard Photo 40

Warren Beard

Warren Beard Photo 41

Warren Beard

Publications & IP owners

Us Patents

Method And Apparatus For Line-Modified Asymmetric Crystal Topography

US Patent:
4928294, May 22, 1990
Filed:
Mar 24, 1989
Appl. No.:
7/330348
Inventors:
Warren T. Beard - Upper Marlboro MD
Ronald W. Armstrong - Edgewater MD
Assignee:
U.S. Government as represented by the Director, National Security Agency - Fort George G. Meade MD
International Classification:
G01N 2320
US Classification:
378 74
Abstract:
An improved asymmetric crystal topography x-ray imaging system employing a ine focus horizontal line source of x-rays and a crystal monochromator used in a compression mode. Relatively large horizontal and vertical dimensions of the monochromating crystal allow imaging of larger areas of imperfect crystals than previously possible, without adversely affecting image resolution. The high resolution two-dimensional images are a direct consequence of our method of controlling the probe beam divergences. An appreciably enhanced and useful intensity of monochromatic x-rays is obtained over that available with prior asymmetric crystal topography systems.

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