Item talk:Q46496

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usgs_staff_profile:

 meta:
   url: https://www.usgs.gov/staff-profiles/justin-hagerty
   timestamp: '2024-01-30T15:54:11.916702'
   status_code: 200
 profile:
   name: Justin Hagerty, Ph.D.
   name_qualifier: null
   titles:
   - Science Center Director
   organizations:
   - !!python/tuple
     - Astrogeology Science Center
     - https://www.usgs.gov/centers/astrogeology-science-center
   email: jhagerty@usgs.gov
   orcid: 0000-0003-3800-7948
   intro_statements:
   - Justin Hagerty is director of the U.S. Geological Survey Astrogeology Science
     Center. He manages ~70 employees including civil service and contractors.
   expertise_terms:
   - geochemistry
   - planetary geology
   - petrology
   - microbeam analysis
   professional_experience:
   - Astrogeology Science Center Director, 2018 - Present
   - Assistant Science Center Director, USGS, Astrogeology Science Center, Flagstaff,
     AZ- October 2015 - July 2018
   - Assistant Program Coordinator, USGS National Geological and Geophysical Data
     Preservation Program (NGGDPP) - October 2013 - September 2016
   - Research Geologist, April 2007 - Present
   - Postdoctoral Research Associate,  Los Alamos National Laboratory,  Los Alamos,
     NM (David Lawrence, advisor), 2004 - 2007
   - Graduate research assistant and lab technician in the secondary ion mass spectrometer
     (SIMS) laboratory (Charles Shearer, advisor), The University of New Mexico,
     Albuquerque, 2001 - 2004
   - Graduate research assistant and educational outreach assistant (Horton Newsom,
     advisor), The University of New Mexico, Albuquerque, 1998 - 2001
   education:
   - B.S., Earth and Planetary Sciences, with Honors, The University of New Mexico,
     Albuquerque, 1998
   - M.S., Earth and Planetary Sciences, The University of New Mexico, Albuquerque,
     2001
   - Ph.D., Earth and Planetary Sciences, The University of New Mexico, Albuquerque,
     2004
   affiliations:
   - American Geophysical Union
   - Geological Society of America
   - Geochemical Society
   honors:
   - NASA Group Achievement Award for Desert RATS Science, 2010
   - USGS STAR Award, 2008, 2009 (2 awards), 2010 (2 awards), 2011 (2 awards)
   - Presidential Early Career Award for Scientists and Engineers, 2012
   - USGS Performance Award, 2010, 2011
   - Sagan-Haskin Early Career Fellowship, 2006 - 2009
   - New Mexico Space Grant Fellowship, 1999 - 2001 and 2003 - 2004
   - Sigma Xi Superior Undergraduate Student Award, 1998
   - UNM, Earth and Planetary Sciences Outstanding Junior Award, 1997
   - UNM, Earth and Planetary Sciences Outstanding Senior Award, 1998
   - University of New Mexico Scholars Scholarship, 1993 - 1997
   abstracts:
   - "\u201CPlanetary Spatial Data Infrastructure (PSDI): Why We Need It\u201D June,\
     \ 2017 3rd Planetary Data Workshop"
   - "\u201CFlynn Creek Impact Crater: Petrographic and SEM Analyses of Drill Cores\
     \ from the Central Uplift\u201D March 2017, Lunar and Planetary Science Conference"
   - "\u201CThe NASA Regional Planetary Image Facility (RPIF) Network: A globally\
     \ distributed resource for the planetary science community\u201D March 2016,\
     \ 47th Lunar and Planetary Science Conference"
   - "\u201CCombining sample analysis and numerical modeling to reconstruct the origin\
     \ and evolution of Flynn Creek crater, Tennessee: Year 1 Status Report\u201D\
     \ July 2015, 6th Planetary Crater Consortium Meeting."
   - "\u201CCompositional and morphologic mapping of the Copernicus quadrangle, the\
     \ Moon: Year 3 Status\u201D June 2015, Planetary Geologic Mappers Meeting."
   - "\u201CCompositional and morphologic mapping of the Copernicus quadrangle, the\
     \ Moon: New constraints on regional lithologic complexity\u201D March 2015,\
     \ 46th LPSC"
   - "\u201CThe dark side of the Moon: Why does the Moon look the way it does?\u201D\
     \ May 2014, Science on Tap, Flagstaff public lecture series"
   - "\u201CGeologic mapping of the Copernicus lunar quadrangle: Determining the\
     \ source of the geochemical anomaly at Timocharis crater, November, 2013, GSA\
     \ Annual Meeting."
   - "\u201CIntegrating lunar sample and remote sensing data to understand the asymmetry\
     \ of the Moon,\u201D October, 2013, Museum of Northern Arizona Science Cafe"
   - "\u201CCurrent models of lunar formation,\u201D May, 2013, Lowell Observatory\
     \ Colloquia"
   - "\"Combining compositional and morphologic data to map the Copernicus lunar\
     \ quadrangle: A case study for new methods in lunar geologic mapping,\u201D\
     \ November, 2012, GSA Annual Meeting"
   - "\u201CIntegrating lunar sample and remote sensing data to understand the asymmetry\
     \ of the Moon,\u201D October 2012, Lowell Observatory Colloquia"
   - "\u201CIntegrating lunar sample and remote sensing data to understand the asymmetry\
     \ of the Moon,\u201D October 2012, USGS 2012 Awards Ceremony"
   - "\u201CThe NASA Regional Planetary Image Facility Network,\u201D Planetary Data\
     \ Workshop, Northern Arizona University, June, 2012"
   - "\u201CThe NASA Regional Planetary Image Facility Network,\u201D Planetary Geologic\
     \ Mappers Meeting, USGS Flagstaff Science Center, June, 2012."
   - "\u201CThe USGS Meteor Crater Sample Collection,\u201D Northern Arizona University,\
     \ School of Earth Science and Environmental Sustainability, November, 2011"
   - "\"Combining sample and remote sensing data: An integrated approach to lunar\
     \ science,\u201D Northern Arizona University, School of Earth Science and Environmental\
     \ Sustainability, April, 2011"
   - "Thorium abundances of basalt ponds in South Pole-Aitken basin: Insights into\
     \ the composition and evolution of the far side lunar mantle,\u201D 42nd Lunar\
     \ and Planetary Science Conference, The Woodlands, TX, March 2011"
   - "\"Addressing lunar science questions through data integration,\u201D NASA Johnson\
     \ Space Center Astromaterials Research and Exploration Science Directorate,\
     \ February, 2011"
   - "\"Combining sample and remote sensing data: An integrated approach to lunar\
     \ science,\u201D NASA Johnson Space Center, Astromaterials Research and Exploration\
     \ Science Directorate, July, 2009"
   - "\"Integrating lunar sample data with Lunar Prospector thorium data: Insights\
     \ into the thermal and magmatic evolution of the Moon,\u201D 19th V.M. Goldschmidt\
     \ Conference, Davos, Switzerland, June, 2009"
   - "\"New estimates of thorium abundances for the Rima Bode pyroclastic glass deposit,\u201D\
     \ 40th Lunar and Planetary Science Conference, The Woodlands, Texas, March,\
     \ 2009"
   - "\u201CThorium abundances on the Aristarchus Plateau: Insights into the composition\
     \ of the Aristarchus pyroclastic glass deposits,\u201D 39th Lunar and Planetary\
     \ Science Conference, League City, TX, March, 2008"
   - "\u201CDust monitoring on the MER rovers,\u201D MER team meeting, Washington\
     \ D.C., February, 2008"
   - '"Hydrothermal alteration at the Lonar Lake impact structure: Implications for
     impact cratering on Mars," Invited talk at Southwest Research Institute, Boulder,
     Colorado, January, 2007.'
   - '"Forward modeling of thorium data from the Lunar Prospector gamma ray spectrometer:
     Insights into the lunar crust and mantle," Invited talk at U.S.G.S Astrogeology
     Research Program, Flagstaff, Arizona, November, 2006.'
   - '"Forward modeling of thorium data from the Lunar Prospector gamma ray spectrometer,"
     Invited talk at Southwest Research Institute, Boulder, Colorado, November, 2006.'
   - '"Heat producing elements in the lunar mantle: Insights from ion microprobe
     analyses of lunar pyroclastic glasses," Invited colloquium at the University
     of Colorado, Boulder, Colorado, November, 2006.'
   - '"Understanding planetary processes through a global study of the Moon.s surface
     composition," 2006 Los Alamos National Laboratory Postdoctoral Symposium, Los
     Alamos, NM, August, 2006.'
   - '"Hydrogen abundances at the lunar poles as measured with Lunar Prospector Neutron
     Spectrometer data," American Association of Petroleum Geologists 2006 Annual
     Meeting, Houston, TX, April, 2006.'
   - '"Estimating thorium abundances of basalt ponds in South Pole-Aitken Basin:
     Implications for the composition of the farside lunar mantle," 37th Lunar and
     Planetary Science Conference, Houston, TX, March, 2006.'
   - '"Thorium abundances at lunar red spots: Implications for geochemically evolved,
     non-mare volcanism on the Moon," 68th Annual Meeting of the Meteoritical Society,
     Gatlinburg, TN, September, 2005.'
   - '"Reasons for investigating the bulk composition of the Moon," Invited talk
     at Rutherford Appleton Laboratory, Didcot, United Kingdom, May, 2005.'
   - '"Forward modeling of thorium abundances at lunar red spots," Invited talk at
     University College, London, United Kingdom, May, 2005.'
   - '"Trace element behavior in ancient lunar basalts and volcanic glasses: Implications
     for the bulk composition of the Moon," Invited talk at Los Alamos National Laboratory
     (ISR-1 seminar), August, 2004.'
   - '"Thorium and samarium in the lunar mantle: Insights into the composition of
     the lunar mantle and basaltic magmatism on the Moon," 35th Lunar and Planetary
     Science Conference, Houston, TX, March, 2004.'
   - '"Trace element characteristics of minerals in the Apollo 14 high-Al basalts:
     Implications for an igneous versus an impact origin," 34th Lunar and Planetary
     Science Conference, Houston, TX, March, 2003.'
   - '"New evidence for hydrothermal alteration at the Lonar Lake Impact Structure:
     Implications for impact cratering on Mars," 32nd Lunar and Planetary Science
     Conference, Houston, TX, March, 2001.'
   personal_statement: Justin currently serves as the director of the Astrogeology
     Science Center. In addition to managing the center, Justin also has research
     experience in lunar geochemistry with special emphasis on thorium as a tracer
     of lunar petrologic evolution. Justin also has experience with combining sample
     and remote sensing methods to understand the surficial evolution of solid bodies
     in the solar system.