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Gerold P Yonas

from Albuquerque, NM
Age ~84

Gerold Yonas Phones & Addresses

  • 72 Wind Rd NW, Albuquerque, NM 87120 (505) 344-9195
  • Los Ranchos, NM
  • Rochester, NY
  • Del Mar, CA
  • Washington, DC

Resumes

Resumes

Gerold Yonas Photo 1

Vice President At Sandia Labs

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Location:
3260 Spirit Dr southeast, Albuquerque, NM 87106
Industry:
Hospitality
Work:
Sandia National Laboratories
Vice President at Sandia Labs
Gerold Yonas Photo 2

Senior Fellow And Member Board Of Regents

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Location:
Albuquerque, NM
Work:
The Mind Research Network 2009 - 2013
Research Affiliate

Potomac Institute For Policy Studies 2009 - 2013
Senior Fellow and Member Board of Regents

Sandia National Laboratories Jun 1989 - Dec 2009
Vice President

University of New Mexico Jun 1989 - Dec 2009
Research Professor

Sandia National Laboratories Jun 1989 - Dec 2009
V P Emeritus
Education:
Cornell University 1957 - 1962
Skills:
Physics
Simulations
Science
Systems Engineering
Scientific Computing
Optics
Laser Physics
Sensors
Image Processing
Optical Engineering
Materials Science
Directed Energy
Experimentation
Signal Processing
Nanotechnology
Electro Optics
Research
Program Management
Biomedical Engineering
R

Publications

Us Patents

Gas Powered Fluid Gun With Recoil Mitigation

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US Patent:
8579209, Nov 12, 2013
Filed:
Nov 18, 2010
Appl. No.:
12/948801
Inventors:
Mark C. Grubelich - Albuquerque NM, US
Gerold Yonas - Albuquerque NM, US
Assignee:
Sandia Corporation - Albuquerque NM
International Classification:
B05B 1/26
B05B 1/34
B05B 7/32
F23D 11/24
F23D 14/28
US Classification:
239337, 239347, 239370, 239373, 239396, 239461, 239518
Abstract:
A gas powered fluid gun for propelling a stream or slug of a fluid at high velocity toward a target. Recoil mitigation is provided that reduces or eliminates the associated recoil forces, with minimal or no backwash. By launching a quantity of water in the opposite direction, net momentum forces are reduced or eliminated. Examples of recoil mitigation devices include a cone for making a conical fluid sheet, a device forming multiple impinging streams of fluid, a cavitating venturi, one or more spinning vanes, or an annular tangential entry/exit.

Real-Time Human Collaboration Monitoring And Intervention

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US Patent:
7751878, Jul 6, 2010
Filed:
Nov 10, 2005
Appl. No.:
11/271214
Inventors:
Peter B. Merkle - Sandia Park NM, US
Curtis M. Johnson - Sandia Park NM, US
Wendell B. Jones - Albuquerque NM, US
Gerold Yonas - Albuquerque NM, US
Adele B. Doser - Albuquerque NM, US
David J. Warner - Rancho Santa Fe CA, US
Assignee:
Sandia Corporation - Albuquerque NM
International Classification:
A61B 5/04
US Classification:
600545, 600544
Abstract:
A method of and apparatus for monitoring and intervening in, in real time, a collaboration between a plurality of subjects comprising measuring indicia of physiological and cognitive states of each of the plurality of subjects, communicating the indicia to a monitoring computer system, with the monitoring computer system, comparing the indicia with one or more models of previous collaborative performance of one or more of the plurality of subjects, and with the monitoring computer system, employing the results of the comparison to communicate commands or suggestions to one or more of the plurality of subjects.

Cognitive Enhancement Using Feedback

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US Patent:
20150297108, Oct 22, 2015
Filed:
Apr 22, 2014
Appl. No.:
14/258631
Inventors:
Charles J. Chase - Lancaster CA, US
Gerold Yonas - Albuquerque NM, US
International Classification:
A61B 5/0482
A61B 5/0484
A61N 5/06
A61N 2/00
G09B 5/00
A61N 1/36
Abstract:
In an embodiment, a method includes determining a target frequency corresponding to a target brain state and stimulating a brain of a user using feedback to attempt to achieve the target brain state in the user. The stimulating step may include measuring an electrical output of the brain of the user received from one or more sensors coupled to the user, determining a current frequency associated with the brain of the user based on the measured electrical output, and determining a difference between the current frequency and the target frequency. When the difference between the current frequency and the target frequency is greater than a predetermined amount, the method includes sending a signal to the brain of the user through one or more pathways. The signal may have a frequency operable to modify the current frequency associated with the brain of the user towards the target frequency.
Gerold P Yonas from Albuquerque, NM, age ~84 Get Report