Software: Proficient with Microsoft Word • PowerPoint • Excel • and Access • Front Page • Visio • Multisim • MatLab • and Lotus Notes Web: Experienced in HTML... • C++ • Java • Visual Basic; Databases: Oracle
University of Chicago Charter School Feb 2011 - Aug 2015
Assistant Teacher
University of Chicago Charter School Feb 2011 - Aug 2015
Media Arts Teacher and Technology Coordinator
University of Chicago Office of Special Programs Jan 2011 - Jul 2011
Project Coordinator
University of Chicago Jan 2011 - Jul 2011
Youth Development Specialist Charter School Donoghue
Education:
Florida A&M University 2004 - 2016
Bachelors, Bachelor of Arts, Bachelor of Science, Engineering, Communications
Florida A&M University May 2010
Bachelors, Bachelor of Science
Florida A&M University
Bachelors, Finance
Skills:
Community Outreach Public Speaking Curriculum Development Teaching Staff Development
Kristina Marie Burow - Chicago IL, US Jeremy S. Caldwell - La Jolla CA, US Robert Charles Downs - La Jolla CA, US Scott Allan Lesley - San Diego CA, US James Kevin Mainquist - San Diego CA, US Andrew J. Meyer - Solana Beach CA, US Daniel G. Sipes - San Diego CA, US Mark Richard Weselak - San Diego CA, US
Assignee:
IRM LLC - Hamilton
International Classification:
G01N 35/10
US Classification:
422 64
Abstract:
The present invention provides a system and method for high throughput processing using sample holders. The system has a plurality of work perimeters, with a rotational robot preferably associated with each work perimeter. At least one transfer station area is provided between adjacent work perimeters to facilitate robotic transfer of sample holders from one work perimeter to another area. Each work perimeter typically includes a plurality of defined station locations, with each station location positioned to be accessible by the robot associated with that area. In addition, each station location is typically configured to receive a device, such as an automated instrument or a holding nest. Device components are arranged at selected station locations according to specific application requirements to provide a flexible, robust, reliable, and accurate high throughput processing system.