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Candace T Joyner, 342788 Defoors Ferry Rd NW APT 242, Atlanta, GA 30318

Candace Joyner Phones & Addresses

2788 Defoors Ferry Rd NW APT 242, Atlanta, GA 30318    404-3522489   

Snellville, GA   

Jonesboro, GA   

Morrow, GA   

Peachtree City, GA   

Baltimore, MD   

Mentions for Candace T Joyner

Candace Joyner resumes & CV records

Resumes

Candace Joyner Photo 22

Candace Joyner

Location:
Atlanta, GA
Industry:
Human Resources
Work:
Hooters of America Aug 2019 - Dec 2019
Human Resources Information Systems Data Reporting Analyst
U.s. Security Associates, Inc. Mar 2018 - Apr 2019
Human Resources Information Systems Specialist
U.s. Security Associates, Inc. Jan 2015 - Mar 2018
Payroll Coordinator
Aloricadr Nov 2011 - Jan 2015
Comand Center Analyst
Education:
Georgia Institute of Technology 2017 - 2018
Spelman College 1993 - 1998
Bachelors, Bachelor of Science, Physics
Skills:
Customer Service, Adp Payroll, Cascading Style Sheets, Data Analysis, Science, Research, Human Resources Information Systems, Winteam, Microsoft Excel, Training, Html, Sql, Javascript, Microsoft Office, Microsoft Word, Electronic Data Interchange, Data Migration, Tenacious Work Ethic, Troubleshooting, Workforce Management, Problem Solving
Candace Joyner Photo 23

Candace Joyner

Candace Joyner Photo 24

Self Employed

Location:
Atlanta, GA
Work:
Candy Pop
Self Employed

Publications & IP owners

Us Patents

Multiplex Coherent Raman Spectroscopy Detector And Method

US Patent:
2004004, Mar 4, 2004
Filed:
Jun 13, 2003
Appl. No.:
10/450403
Inventors:
Peter Chen - Atlanta GA, US
Candace Joyner - Austell GA, US
Sheena Patrick - Durham NC, US
Dean Guyer - Bellevue WA, US
International Classification:
G01J003/44
G01N021/65
US Classification:
356/301000
Abstract:
A multiplex coherent Raman spectrometer () and spectroscopy method rapidly detects and identifies individual components of a chemical mixture separated by a separation technique, such as gas chromatography. The spectrometer () and method accurately identify a variety of compounds because they produce the entire gas phase vibrational Raman spectrum of the unknown gas. This is accomplished by tilting a Raman cell () to produce a high-intensity, backward-stimulated, coherent Raman beam of 683 nm, which drives a degenerate optical parametric oscillator () to produce a broadband beam of 1100-1700 nm covering a range of more than 3000 wavenumber. This broadband beam is combined with a narrowband beam of 532 nm having a bandwidth of 0.003 wavenumbers and focused into a heated windowless cell () that receives gases separated by a gas chromatograph (). The Raman radiation scattered from these gases is filtered and sent to a monochromator () with multichannel detection.

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