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Environmental Sciences

D-Index
44
Citations
9203
World Ranking
6658
National Ranking
2378

Overview

William Schreiner is affiliated with the University Corporation for Atmospheric Research in the United States. Their research primarily addresses topics within the intersecting fields of Physics and Astronomy, Earth and Planetary Sciences, and Engineering. Schreiner's work encompasses a wide array of subfields, which include Astronomy and Astrophysics, Aerospace Engineering, Oceanography, Atmospheric Science, and Geophysics.

The main topics of Schreiner's research involve:

  • Ionosphere and magnetosphere dynamics
  • GNSS positioning and interference
  • Geophysics and Gravity Measurements
  • Solar and Space Plasma Dynamics
  • Atmospheric Ozone and Climate
  • Earthquake Detection and Analysis
  • Meteorological Phenomena and Simulations

William Schreiner has contributed to multiple scientific publications, working frequently with co-authors such as John Braun, Qian Wu, N. M. Pedatella, Jan-Peter Weiss, and Douglas Hunt.

Prominent venues where Schreiner's research has appeared include:

  • Journal of Geophysical Research Space Physics (4 publications)
  • Radio Science (3 publications)
  • Atmospheric Measurement Techniques (2 publications)
  • Zenodo (CERN European Organization for Nuclear Research) (2 publications)
  • Geophysical Research Letters (1 publication)

Some recent papers authored or co-authored by Schreiner are:

  • COSMIC-2 Radio Occultation Constellation: First Results, 2020, Geophysical Research Letters
  • Consistency and structural uncertainty of multi-mission GPS radio occultation records, 2020, Atmospheric Measurement Techniques
  • Accuracy assessment of the quiet-time ionospheric F2 peak parameters as derived from COSMIC-2 multi-GNSS radio occultation measurements, 2021, Journal of Space Weather and Space Climate
  • COSMIC-2 Mission Summary at Three Years in Orbit, 2022, Atmosphere
  • Climatology of the Equatorial Plasma Bubbles Captured by FORMOSAT-3/COSMIC, 2020, Journal of Geophysical Research Space Physics

Best Publications

  • The COSMIC/FORMOSAT-3 Mission: Early Results

    R. A Anthes;P. A Bernhardt;Y. Chen;L. Cucurull

  • Analysis and validation of GPS/MET data in the neutral atmosphere

    C. Rocken;R. Anthes;M. Exner;D. Hunt

  • GPS Sounding of the Atmosphere from Low Earth Orbit: Preliminary Results

    R. Ware;C. Rocken;F. Solheim;M. Exner

  • Inversion and error estimation of GPS radio occultation Data

    Y.-H Kuo;T.-K Wee;S Sokolovskiy;C Rocken

  • Analysis and validation of GPS/MET radio occultation data in the ionosphere

    William S. Schreiner;Sergey V. Sokolovskiy;Christian Rocken;Douglas C. Hunt

  • Estimates of the precision of GPS radio occultations from the COSMIC/FORMOSAT‐3 mission

    W. Schreiner;C. Rocken;S. Sokolovskiy;S. Syndergaard

  • COSMIC-2 Radio Occultation Constellation: First Results

    W.S. Schreiner;J.P. Weiss;R.A. Anthes;J. Braun

  • Error analysis of Abel retrieved electron density profiles from radio occultation measurements

    X. Yue;X. Yue;W. S. Schreiner;J. Lei;S. V. Sokolovskiy

  • COSMIC System Description

    Christian Rocken;Ying-Hwa Kuo;William Schreiner;Doug Hunt

  • Comparison of GPS radio occultation soundings with radiosondes

    Y.-H. Kuo;Y.-H. Kuo;W. S. Schreiner;J. Wang;D. L. Rossiter;D. L. Rossiter

  • COSMIC GPS Ionospheric Sensing and Space Weather

    George A. Hajj;Lou C. Lee;Xiaoqing Pi;Larry J. Romans

  • Estimating the uncertainty of using GPS radio occultation data for climate monitoring: Intercomparison of CHAMP refractivity climate records from 2002 to 2006 from different data centers

    Shu-peng Ho;Gottfried Kirchengast;Stephen Leroy;Jens Wickert

  • Quantitative evaluation of the low Earth orbit satellite based slant total electron content determination

    Xinan Yue;William S. Schreiner;Douglas C. Hunt;Christian Rocken

  • Reproducibility of GPS radio occultation data for climate monitoring: Profile-to-profile inter-comparison of CHAMP climate records 2002 to 2008 from six data centers

    Shu-peng Ho;Doug Hunt;Andrea K. Steiner;Anthony J. Mannucci

  • Monitoring the atmospheric boundary layer by GPS radio occultation signals recorded in the open-loop mode

    S. Sokolovskiy;Y.-H. Kuo;C. Rocken;W. S. Schreiner

  • Global ionospheric response observed by COSMIC satellites during the January 2009 stratospheric sudden warming event

    Xinan Yue;Xinan Yue;William S. Schreiner;Jiuhou Lei;Christian Rocken

  • Quantification of structural uncertainty in climate data records from GPS radio occultation

    A. K. Steiner;A. K. Steiner;D. Hunt;S.-P. Ho;G. Kirchengast

  • Global 3‐D ionospheric electron density reanalysis based on multisource data assimilation

    Xinan Yue;William S. Schreiner;Ying Hwa Kuo;Douglas C. Hunt

  • Space Weather Observations by GNSS Radio Occultation: From FORMOSAT‐3/COSMIC to FORMOSAT‐7/COSMIC‐2

    Xinan Yue;William S. Schreiner;Nicholas Pedatella;Richard A. Anthes

  • Artificial plasma cave in the low-latitude ionosphere results from the radio occultation inversion of the FORMOSAT-3/COSMIC

    J. Y. Liu;J. Y. Liu;C. Y. Lin;C. H. Lin;H. F. Tsai

Frequent Co-Authors

Sergey Sokolovskiy
Sergey Sokolovskiy University Corporation for Atmospheric Research
Ying-Hwa Kuo
Ying-Hwa Kuo University Corporation for Atmospheric Research
Christian Rocken
Christian Rocken University Corporation for Atmospheric Research
Xinan Yue
Xinan Yue Chinese Academy of Sciences
Nicholas Pedatella
Nicholas Pedatella National Center for Atmospheric Research
Qian Wu
Qian Wu National Center for Atmospheric Research
Richard A. Anthes
Richard A. Anthes University Corporation for Atmospheric Research
Jiuhou Lei
Jiuhou Lei University of Science and Technology of China
Anthony J. Mannucci
Anthony J. Mannucci California Institute of Technology
Weixing Wan
Weixing Wan Chinese Academy of Sciences

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