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56
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2481
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Overview

Paul H. Warren is a researcher affiliated with the University of California, Los Angeles in the United States. Their work primarily spans the fields of Physics and Astronomy as well as Earth and Planetary Sciences, with a focus on subfields such as Astronomy and Astrophysics, Atmospheric Science, and Geophysics.

Their research topics encompass a range of themes related to planetary science and geological analysis. These include:

  • Astro and Planetary Science
  • Planetary Science and Exploration
  • Geological and Geochemical Analysis
  • Geology and Paleoclimatology Research
  • Atmospheric Ozone and Climate
  • Space Science and Extraterrestrial Life
  • Isotope Analysis in Ecology

Paul H. Warren has contributed to multiple scientific publications with research published in venues such as Icarus, Meteoritics and Planetary Science, Earth and Planetary Science Letters, Journal of Geophysical Research Planets, and Geochimica et Cosmochimica Acta. Frequent co-authors include Alan E. Rubin, Bidong Zhang, K. D. McKeegan, R. L. Korotev, and Kerstin Lehnert.

Selected recent papers by Paul H. Warren include:

  • Trace element and textural evidence favoring lunar, not terrestrial, origin of the mini-granite in Apollo sample 14321 (2020), Icarus
  • Ground truth constraints and remote sensing of lunar highland crust composition (2022), Meteoritics and Planetary Science

Other relevant papers co-authored with different lead authors but within related fields include:

  • Timing of lunar Mg-suite magmatism constrained by SIMS U-Pb dating of Apollo norite 78238 (2021), Earth and Planetary Science Letters
  • Lunar Heat Flow: Global Predictions and Reduced Heat Flux (2022), Journal of Geophysical Research Planets
  • 53Mn-53Cr chronometry of ureilites: Implications for the timing of parent body accretion, differentiation and secondary reduction (2024), Geochimica et Cosmochimica Acta

Best Publications

  • THE MAGMA OCEAN CONCEPT AND LUNAR EVOLUTION

    Paul H. Warren

  • Stable-isotopic anomalies and the accretionary assemblage of the Earth and Mars: A subordinate role for carbonaceous chondrites

    Paul H. Warren

  • The origin of KREEP

    Paul H. Warren;John T. Wasson

  • Hydrogen isotope ratios in lunar rocks indicate delivery of cometary water to the Moon

    James P. Greenwood;Shoichi Itoh;Naoya Sakamoto;Paul Warren

  • Oxygen isotopic evidence for vigorous mixing during the Moon-forming giant impact

    Edward D. Young;Issaku E. Kohl;Paul H. Warren;David C. Rubie

  • Recommended classification and nomenclature of lunar highland rocks - a committee report.

    D. Stoeffler;H. D. Knoell;U. B. Marvin;C. H. Simonds

  • Lunar and Martian Meteorite Delivery Services

    Paul H. Warren

  • "New" lunar meteorites: Implications for composition of the global lunar surface, lunar crust, and the bulk Moon

    Paul H. Warren

  • Pristine nonmare rocks and the nature of the lunar crust

    P. H. Warren;J. T. Wasson

  • A Concise Compilation of Petrologic Information on Possibly Pristine Nonmare Moon Rocks

    Paul H. Warren

  • The SNC meteorites: basaltic igneous processes on Mars

    J.C. Bridges;J.C. Bridges;P.H. Warren

  • Megaregolith insulation, internal temperatures, and bulk uranium content of the moon

    Paul H Warren;Kaare Lund Rasmussen

  • Geochemical arguments for an Earth-like Moon-forming impactor.

    Nicolas Dauphas;Christoph Burkhardt;Paul H. Warren;Teng Fang-Zhen

  • Los Angeles: The Most Differentiated Basaltic Martian Meteorite

    Alan E. Rubin;Paul H. Warren;James P. Greenwood;Robert S. Verish

  • Petrology and chemistry of two “large” granite clasts from the moon

    Paul H. Warren;G. Jeffrey Taylor;Klaus Keil;David N. Shirley

  • Lunar anorthosites and the magma-ocean plagioclase-flotation hypothesis; importance of FeO enrichment in the parent magma

    Paul H. Warren

  • Siderophile and other geochemical constraints on mixing relationships among HED-meteoritic breccias

    Paul H. Warren;Gregory W. Kallemeyn;Heinz Huber;Finn Ulff-Møller

  • Explosive volcanism and the graphite-oxygen fugacity buffer on the parent asteroid(s) of the ureilite meteorites

    Paul H. Warren;Gregory W. Kallemeyn

  • Anorthosite assimilation and the origin of the Mg/Fe‐related bimodality of pristine moon rocks: Support for the magmasphere hypothesis

    Paul H. Warren

  • Compositional-petrographic investigation of pristine nonmare rocks

    P. H. Warren;J. T. Wasson

  • Composition and origin of Nuevo Laredo Trend eucrites

    Paul H Warren;Eric A Jerde

Frequent Co-Authors

Gregory W. Kallemeyn
Gregory W. Kallemeyn University of California, Los Angeles
John T. Wasson
John T. Wasson University of California, Los Angeles
Klaus Keil
Klaus Keil University of Hawaii at Manoa
Alan E. Rubin
Alan E. Rubin University of California, Los Angeles
Hisayoshi Yurimoto
Hisayoshi Yurimoto Hokkaido University
Lawrence A. Taylor
Lawrence A. Taylor University of Tennessee at Knoxville
G. Jeffrey Taylor
G. Jeffrey Taylor University of Hawaii at Manoa
Edward D. Young
Edward D. Young University of California, Los Angeles
Qing-Zhu Yin
Qing-Zhu Yin University of California, Davis
John Bridges
John Bridges University of Leicester

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