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Environmental Sciences

D-Index
41
Citations
8850
World Ranking
7600
National Ranking
2711

Overview

Edwin A. Schauble is affiliated with the University of California, Los Angeles in the United States. Their research spans several areas within the broader fields of physics and astronomy, with a focus on isotope fractionation and nuclear physics phenomena as applied to geochemical and planetary contexts.

The main fields of study associated with Schauble's work include:

  • Physics and Astronomy

Within these fields, Schauble has contributed to multiple subfields, such as:

  • Inorganic Chemistry
  • Global and Planetary Change
  • Geophysics
  • Nuclear and High Energy Physics
  • Radiation

The key research topics covered in Schauble's publications are:

  • Radioactive element chemistry and processing
  • Radioactive contamination and transfer
  • Geological and Geochemical Analysis
  • Nuclear physics research studies
  • Nuclear Physics and Applications
  • Astro and Planetary Science

Schauble has recently published several papers focused on isotopic fractionation processes, including:

  • "Calcium isotope fractionation during melt immiscibility and carbonatite petrogenesis" (2023) in Geochemical Perspectives Letters
  • "Nuclear volume isotope fractionation of europium and other lanthanide elements" (2023) in GEOCHEMICAL JOURNAL
  • "Nuclear volume and mass dependent fractionation of cerium isotopes" (2024) in GEOCHEMICAL JOURNAL

The scientist frequently collaborates with researchers such as Michael A. Antonelli, G. Sartori, Andrea Giuliani, J. Elis Hoffmann, and Max W. Schmidt.

Schauble's publications are mainly concentrated in the following venues:

  • GEOCHEMICAL JOURNAL
  • Geochemical Perspectives Letters

Best Publications

  • 13 C- 18 O bonds in carbonate minerals: A new kind of paleothermometer

    Prosenjit Ghosh;Jess Adkins;Hagit Affek;Brian Balta

  • Applying Stable Isotope Fractionation Theory to New Systems

    Edwin A. Schauble

  • Preferential formation of 13C–18O bonds in carbonate minerals, estimated using first-principles lattice dynamics

    Edwin A. Schauble;Prosenjit Ghosh;John M. Eiler

  • Role of nuclear volume in driving equilibrium stable isotope fractionation of mercury, thallium, and other very heavy elements

    Edwin A. Schauble

  • 18O13C16O in Earth's atmosphere

    John M. Eiler;Edwin Schauble

  • Equilibrium thermodynamics of multiply substituted isotopologues of molecular gases

    Zhengrong Wang;Edwin A. Schauble;John M. Eiler

  • Silicon in the Earth's core.

    R. Bastian Georg;Alex N. Halliday;Edwin A. Schauble;Ben C. Reynolds

  • Theoretical estimates of equilibrium Fe-isotope fractionations from vibrational spectroscopy

    E.A. Schauble;G.R. Rossman;H.P. Taylor

  • First-principles estimates of equilibrium magnesium isotope fractionation in silicate, oxide, carbonate and hexaaquamagnesium(2+) crystals

    Edwin A. Schauble

  • Mass Fractionation Laws, Mass-Independent Effects, and Isotopic Anomalies

    Nicolas Dauphas;Edwin A. Schauble

  • High-temperature equilibrium isotope fractionation of non-traditional stable isotopes: Experiments, theory, and applications

    Edward D. Young;Craig E. Manning;Edwin A. Schauble;Anat Shahar

  • Theoretical estimates of equilibrium chromium-isotope fractionations

    Edwin Schauble;George R. Rossman;Hugh P. Taylor

  • Theoretical estimates of equilibrium chlorine-isotope fractionations

    Edwin A Schauble;George R Rossman;H.P Taylor

  • Body temperatures of modern and extinct vertebrates from (13)C-(18)O bond abundances in bioapatite.

    Robert A. Eagle;Edwin A. Schauble;Aradhna K. Tripati;Thomas Tütken

  • Spinel–olivine magnesium isotope thermometry in the mantle and implications for the Mg isotopic composition of Earth

    E.D. Young;E. Tonui;C.E. Manning;E. Schauble

  • The relative abundances of resolved l2 CH 2 D 2 and 13 CH 3 D and mechanisms controlling isotopic bond ordering in abiotic and biotic methane gases

    E. D. Young;I. E. Kohl;B. Sherwood Lollar;G. Etiope;G. Etiope

  • Theoretical constraints on the effects of pH, salinity, and temperature on clumped isotope signatures of dissolved inorganic carbon species and precipitating carbonate minerals

    Pamela S. Hill;Aradhna K. Tripati;Edwin A. Schauble

  • Estimation of nuclear volume dependent fractionation of mercury isotopes in equilibrium liquid–vapor evaporation experiments

    Sanghamitra Ghosh;Edwin A. Schauble;Georges Lacrampe Couloume;Joel D. Blum

  • Beyond temperature: Clumped isotope signatures in dissolved inorganic carbon species and the influence of solution chemistry on carbonate mineral composition

    Aradhna K. Tripati;Aradhna K. Tripati;Pamela S. Hill;Robert A. Eagle;Robert A. Eagle;Jed L. Mosenfelder

  • Experimentally determined Si isotope fractionation between silicate and Fe metal and implications for Earth's core formation

    Anat Shahar;Anat Shahar;Karen Ziegler;Edward D. Young;Angele Ricolleau

  • Modeling the effects of bond environment on equilibrium iron isotope fractionation in ferric aquo-chloro complexes

    Pamela S. Hill;Edwin A. Schauble

Frequent Co-Authors

Edward D. Young
Edward D. Young University of California, Los Angeles
John M. Eiler
John M. Eiler California Institute of Technology
Craig E. Manning
Craig E. Manning University of California, Los Angeles
Aradhna Tripati
Aradhna Tripati University of California, Los Angeles
George R. Rossman
George R. Rossman California Institute of Technology
Hugh P. Taylor
Hugh P. Taylor California Institute of Technology
Daniel P. Schrag
Daniel P. Schrag Harvard University
Hagit P. Affek
Hagit P. Affek Hebrew University of Jerusalem
Giuseppe Etiope
Giuseppe Etiope National Institute of Geophysics and Volcanology
Jess F. Adkins
Jess F. Adkins California Institute of Technology

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