Monica Barney

DSP Optimization Engineer at Mango Materials
  • Claim this Profile
Contact Information
us****@****om
(386) 825-5501
Location
San Francisco Bay Area

Topline Score

Topline score feature will be out soon.

Bio

Generated by
Topline AI

You need to have a working account to view this content.
You need to have a working account to view this content.

Experience

    • United States
    • Biotechnology Research
    • 1 - 100 Employee
    • DSP Optimization Engineer
      • Jan 2023 - Present

      Redwood City, California, United States

    • Operator Engineer
      • Aug 2022 - Jan 2023

      Redwood City, California, United States

    • United States
    • Automotive
    • 700 & Above Employee
    • Materials Engineering Consultant
      • Feb 2022 - Dec 2022

      Remote

    • Molecular Biology Intern
      • Feb 2022 - May 2022

      South San Francisco, California, United States

    • Care Provider: In-Home Support
      • Nov 2021 - Mar 2022

      San Francisco, California, United States

    • United States
    • Oil and Gas
    • 700 & Above Employee
    • Research And Development Engineer
      • Jun 2008 - Oct 2021

      Richmond, California, United States I am in a materials and corrosion research group focusing on high temperature corrosion and various process conditions that cause material embrittlement.

    • Postdoctoral Appointee
      • Jan 2008 - Jun 2008

      Materials Chemistry Synthesized improved materials for thermal electric applications.

    • United States
    • Medical Equipment Manufacturing
    • 1 - 100 Employee
    • Research Engineer
      • Jun 2005 - Aug 2007

      Studied underlying mechanisms of fatigue and fracture of Nitinol medical devices using advanced techniques such as synchrotron X-ray diffraction collaborating with diverse group of experts in biomechanics, mechanical testing, and metallurgy.

    • United States
    • Research Services
    • 700 & Above Employee
    • Graduate Student Research Employee
      • 1999 - 2005

      Investigated fundamental deformation behavior at the micron scale, shedding light on the appropriate modeling approaches for strain gradient plasticity.

    • United States
    • Research Services
    • 700 & Above Employee
    • Graduate Student Research Assistant
      • 1996 - 1998

      Studied thermal fatigue behavior of very small solder joints to determine if length scale shows size effects with shear bands on the order of the dominant microstructure.

Education

  • City College of San Francisco
    Biotechnology Work Certificate, Biotechnology
  • University of California, Berkeley
    Ph.D., Materials Science, minor in Mechanics
  • University of California, Berkeley
    M.S., Materials Science and Engineering
  • California State University, Fresno
    B.S., Chemistry, minor in Physics

Community

You need to have a working account to view this content. Click here to join now