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Sensors / Pharmacology / Cheminformatics / Computational chemistry / Quantitative structure–activity relationship / Matrix / Polymer / Calibration curve / Chemistry / Science / Analytical chemistry


Developing Sensor Activity Relationships for the JPL Electronic Nose Sensors Us
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Document Date: 2013-02-04 15:48:42


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City

San Diego / /

Company

V. S. Mowrey S. P. / Jet Propulsion Laboratory / Silicon Graphics / Accelrys Inc. / C. J. Taylor Jet Propulsion Laboratory / /

Country

United States / /

Currency

USD / /

/

Facility

Jet Propulsion Laboratory / California Institute of Technology / /

IndustryTerm

analyte-water interaction energy term / physico-chemical properties / chemical vapors / molecular modeling tools / linear salvation energy relationships / chemical functionality / semi-empirical and molecular modeling tools / molecular interaction energy terms / interaction energy / space applications / example interaction energy / energy / calculated using semi-empirical and molecular modeling tools / calculated using molecular modeling tools / /

Movie

Monte Carlo / /

Organization

California Institute of Technology / Electrochemical Society / National Aeronautics and Space Administration / Environmental Protection Agency / /

Person

K. S. Manatt / V / David Rogers / Anton Hopfinger / /

/

Position

QSAR MODEL DEVELOPMENT A. QSAR Descriptors / The descriptor VP / model development process / /

Product

ENose / ENose System / /

ProvinceOrState

California / /

PublishedMedium

IEEE Sensors Journal / /

Technology

Molecular Modeling / GFA algorithms / simulation / /

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