Vista Clara Inc.

Basic Information

12201 Cyrus Way
Suite 104
Mukilteo, WA, -

Company Profile

n/a

Additional Details

Field Value
DUNS: 169517328
Hubzone Owned: N
Socially and Economically Disadvantaged: N
Woman Owned: N
Number of Employees: 3


  1. Low Cost In-Situ NMR Technologies for Monitoring Biological and Geochemical Processes in the Subsurface

    Amount: $999,998.00

    This proposal addresses the problem of long term mapping and monitoring of subsurface geochemical and microbial activity associated with the transport and remediation of subsurface contaminants, inclu ...

    SBIR Phase II 2012 Department of Energy
  2. Nuclear Magnetic Resonance Instruments for Geotechnical and Geophysical Investigations

    Amount: $100,000.00

    Vista Clara proposes to design, develop and demonstrate non-invasive NMR sensor capable of profiling moisture content in the top 2m of the subsurface. As a Phase 1 option, Vista Clara proposes to desi ...

    SBIR Phase I 2012 Department of DefenseArmyDepartment of Defense
  3. Low Cost In-Situ NMR Technologies for Monitoring Biological and Geochemical Processes in the Subsurface

    Amount: $150,000.00

    This proposal addresses the problem of long term mapping and monitoring of subsurface geochemical and microbial activity associated with the transport and remediation of subsurface contaminants, inclu ...

    SBIR Phase I 2011 Department of Energy
  4. Integrated Use of Surface and Subsurface NMR for Measuring and Mapping Saturated Hydraulic Conductivity in Three Dimensions

    Amount: $750,000.00

    This proposal addresses the problem of measuring and mapping saturated hydraulic conductivity in the top 100 m of the subsurface. Hydraulic conductivity is a critically important property controlling ...

    STTR Phase II 2011 Department of Energy
  5. Integrated Use of Surface and Subsurface NMR for Measuring and Mapping Saturated Hydraulic Conductivity in Three Dimensions

    Amount: $100,000.00

    This proposal addresses the problem of measuring and mapping saturated hydraulic conductivity in the top 100 m of the subsurface. Hydraulic conductivity is a critically important property controlling ...

    STTR Phase I 2010 Department of Energy
  6. Surface NMR Instrumentation and Analysis Methods for Characterizing Vadose Zone Hydrology

    Amount: $750,000.00

    The Department of Energy is responsible for the investigation and remediation of large-scale subsurface contamination at several existing and former DOE facilities. An understanding the hydrogeology ...

    SBIR Phase II 2009 Department of Energy
  7. Low-Cost Small Diameter NMR Technologies for In-Situ Subsurface Characterization and Monitoring

    Amount: $750,000.00

    This project will address the problem of characterizing and monitoring subsurface hydro-geological and groundwater transport processes within 200m of the earth¿s surface, including both the saturat ...

    SBIR Phase II 2008 Department of Energy
  8. Surface NMR Instrumentation and Analysis Methods for Characterizing Vadose Zone Hydrology

    Amount: $100,000.00

    The DoE is responsible for the investigation and remediation of large-scale subsurface contamination at several existing and former facilities. Understanding the hydrogeology of the vadose zone is cru ...

    SBIR Phase I 2008 Department of Energy
  9. Low-Cost Small Diameter NMR Technologies for In-Situ Subsurface Characterization and Monitoring

    Amount: $100,000.00

    This project will develop low-cost, small-diameter NMR instrumentation and software for in situ characterization and monitoring of groundwater and water-bearing formations in the near subsurface. The ...

    SBIR Phase I 2007 Department of Energy
  10. SBIR Phase II: Multi-Coil Surface NMR Instrumentation and Software for 3-D Groundwater Imaging

    Amount: $500,000.00

    This SBIR Phase II research proposal aims to develop a commercial multi-Coil Magnetic Resonance Sounding (MRS) system for 3-D groundwater imaging and characterization. The principal innovations are th ...

    SBIR Phase II 2005 National Science Foundation

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