MICHAEL FRANK SMITH, MD
Psychiatric at Watt St, Alcoa, TN

License number
Tennessee MD13282
Category
Psychiatric
Type
Psychiatry
Address
Address 2
255 E Watt St, Alcoa, TN 37701
Department 888182, Knoxville, TN 37995
Phone
(865) 273-1616
(865) 273-1645 (Fax)
(800) 355-3565
(423) 714-2355 (Fax)

Professional information

Michael F Smith Photo 1

Dr. Michael F Smith, Alcoa TN - MD (Doctor of Medicine)

Specialties:
Psychiatry, Neuropsychiatry (Psychiatry)
Address:
255 E Watt St, Alcoa 37701
(865) 380-4390 (Phone)
Cherokee Health Systems
627 Smithview Dr, Maryville 37803
(865) 380-4390 (Phone)
Certifications:
Psychiatry, 1988
Awards:
Healthgrades Honor Roll
Languages:
English
Hospitals:
255 E Watt St, Alcoa 37701
Cherokee Health Systems
627 Smithview Dr, Maryville 37803
Blount Memorial Hospital
907 East Lamar Alexander Pkwy, Maryville 37804
Education:
Medical School
University Of Tennessee Health Science Center College Of Medicine
Graduated: 1979
University Of Virginia Hospital
Graduated: 1980
Graduated: 1983


Michael Smith Photo 2

President At Michael B. Smith, Cpa And Mistream Solutions

Position:
President at Michael B. Smith, CPA
Location:
Knoxville, Tennessee Area
Industry:
Accounting
Work:
Michael B. Smith, CPA since 1991 - President


Michael Smith Photo 3

Michael Smith - Knoxville, TN

Work:
Answer Financial
Sales Agent
Best Buy
Digital Life Sales Agent
Aflac - Life, TN
(Independent Agent) Obtained Tennessee Life and Health Ins
Sitel
(Customer Service) Obtained Tennessee Property and Casualty Ins
Product Development Inc
Sales Manager
Advantage Title & Abstract, LLC
Owner
Collins Title Company
Sr. Abstractor/Examiner
Advantage Abstract
Owner
Sears - Orange Park, FL
Sales, Sales Coordinator
Pro Title Corporation
Sr. Abstractor
First Title Corporation - Knoxville, TN
Branch Manager
Worthington
Legal Assistant
Dixie-Shamrock Oil & Gas Company, Inc
Assistant Director of Land Department
Morgan County Board Of Education
Teacher
Education:
University of Tennessee - Major, TN
Physical Education
Roane State Community College
Physical Education


Michael Smith Photo 4

Michael Smith - Knoxville, TN

Work:
Elavon
Software Technical Support
Lowes
Multiple Customer Service Awards
Circuit City
Managed Customer Service
Education:
Fountainhead College of Technology - Knoxville, TN
Bachelors of Network Security and Forensics in Information Technology


Michael Smith Photo 5

Registered Nuclear Medicine Technologist At Harlan Appalachian Regional Hospital

Position:
Registered Nuclear Medicine Technologist at Harlan Appalachian Regional Hospital
Location:
Knoxville, Tennessee Area
Industry:
Medical Practice
Work:
Harlan Appalachian Regional Hospital - Registered Nuclear Medicine Technologist


Michael Smith Photo 6

Owner, Mcs Landscape Design Services

Position:
Owner at MCS Landscape Design Services
Location:
Knoxville, Tennessee Area
Industry:
Design
Work:
MCS Landscape Design Services - Owner


Michael Smith Photo 7

Accounting Professional

Location:
Knoxville, Tennessee Area
Industry:
Accounting


Michael Smith Photo 8

Atmospheric Remote Sensing Instrument System

US Patent:
5544525, Aug 13, 1996
Filed:
Dec 16, 1994
Appl. No.:
8/357723
Inventors:
K. Russell Peterman - Boulder CO
Michael V. Smith - Knoxville TN
Assignee:
Radian Corporation - Austin TX
International Classification:
G01W 100
US Classification:
7317013
Abstract:
A system of atmospheric remote sensing instruments that utilize a common phased-array acoustic antenna so as to take temperature and wind measurements over a wide range of altitudes. One of the atmospheric remote sensing instruments in the system is a monostatic SODAR that takes wind measurements by transmitting pulses of acoustic energy into the atmosphere and then measuring received reflected acoustic energy. The acoustic pulses are both transmitted and received by the common phased-array acoustic antenna. Another of the atmospheric remote sensing instruments in the system is a wind profiling radar that takes wind measurements by transmitting pulses of electromagnetic energy into the atmosphere and then measuring received backscattered electromagnetic energy. The pulses of electromagnetic energy are both transmitted and received by a phased-array radar antenna. The final atmospheric remote sensing instrument in the system is a RASS that takes temperature measurements by first transmitting acoustic energy into the atmosphere and then transmitting pulses of electromagnetic energy into the atmosphere.


Michael Smith Photo 9

Phased Array Acoustic Antenna System

US Patent:
5509304, Apr 23, 1996
Filed:
Aug 10, 1994
Appl. No.:
8/288939
Inventors:
K. Russell Peterman - Boulder CO
Charles Riese - Austin TX
Michael J. Smith - Knoxville TN
Assignee:
Radian Corporation - Austin TX
International Classification:
G01K 100
US Classification:
7317013
Abstract:
A sound detection and ranging (SODAR) system for taking wind measurements by sending out acoustic pulses and then measuring acoustic energy reflected back to the instrument by the atmosphere. The acoustic pulses are formed using digital beamforming technology which allows the acoustic pulses to be steered independent of frequency due to a time delay design. Also, the present invention SODAR instrument allows wideband capability that is limited only by the dimensions of the antenna array. Furthermore, the present invention SODAR instrument allows the acoustic pulses to be variably steered and allows multiple acoustic beams to be simultaneously received.


Michael Smith Photo 10

Multiple Integrated-Layer Ceramic Fiber Filter Paper And Method

US Patent:
2007004, Mar 1, 2007
Filed:
Aug 30, 2006
Appl. No.:
11/512902
Inventors:
Richard Nixdorf - Knoxville TN, US
Michael Smith - Knoxville TN, US
International Classification:
B01D 39/20, B01D 39/02, D04H 1/16
US Classification:
055523000, 055527000, 264113000
Abstract:
A composition of a multiple-layered ceramic fiber filter paper and method for manufacturing for use in a filter apparatus removes particulate from high temperature gas streams. In this application, ceramic fibers of varying diameters and lengths are combined in such a manner to yield different specific average pore sizes in segregated locations in the filter paper. The fiber combinations are formed into a paper sheet using a method that produces two or three porosity zones with different average pore sizes in each layer or porosity zone. The porosity gradient from large at gas stream entry to fine at gas stream exit increases particle-holding capacity while reducing the filtered gas backpressure experienced in single sized porosity layer media.