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Joshua Krissansen-Totton

Showing results (1-10 of 12) with videos related to

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Nature Communications|May 23, 2017
Constraining climate sensitivity and continental versus seafloor weathering using an inverse geological carbon cycle modelJoshua Krissansen-Totton, David C Catling
Science Advances|February 2, 2018
Disequilibrium biosignatures over Earth history and implications for detecting exoplanet lifeJoshua Krissansen-Totton, Stephanie Olson, David C Catling
Astrobiology|January 21, 2016
On Detecting Biospheres from Chemical Thermodynamic Disequilibrium in Planetary AtmospheresJoshua Krissansen-Totton, David S Bergsman, David C Catling
Nature Communications|December 2, 2020
Carbonate-silicate cycle predictions of Earth-like planetary climates and testing the habitable zone conceptOwen R Lehmer, David C Catling, Joshua Krissansen-Totton
Geobiology|March 25, 2021
Carbon cycle inverse modeling suggests large changes in fractional organic burial are consistent with the carbon isotope record and may have contributed to the rise of oxygenJoshua Krissansen-Totton, Michael A Kipp, David C Catling
Proceedings of the National Academy of Sciences of the United States of America|April 4, 2018
Constraining the climate and ocean pH of the early Earth with a geological carbon cycle modelJoshua Krissansen-Totton, Giada N Arney, David C Catling
Astrobiology|April 6, 2019
A Maximum Subsurface Biomass on Mars from Untapped Free Energy: CO and H<sub>2</sub> as Potential AntibiosignaturesSteven F Sholes, Joshua Krissansen-Totton, David C Catling
Nature Communications|September 27, 2024
The erosion of large primary atmospheres typically leaves behind substantial secondary atmospheres on temperate rocky planetsJoshua Krissansen-Totton, Nicholas Wogan, Maggie Thompson, et al.
Astrobiology|June 9, 2015
Transient Sulfate Aerosols as a Signature of Exoplanet VolcanismAmit Misra, Joshua Krissansen-Totton, Matthew C Koehler, et al.
Science Advances|June 13, 2025
Strong link between Earth's oxygen level and geomagnetic dipole revealed since the last 540 million yearsWeijia Kuang, Ravi Kopparapu, Joshua Krissansen-Totton, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Nature Communications|May 23, 2017
Constraining climate sensitivity and continental versus seafloor weathering using an inverse geological carbon cycle modelJoshua Krissansen-Totton, David C Catling
Science Advances|February 2, 2018
Disequilibrium biosignatures over Earth history and implications for detecting exoplanet lifeJoshua Krissansen-Totton, Stephanie Olson, David C Catling
Astrobiology|January 21, 2016
On Detecting Biospheres from Chemical Thermodynamic Disequilibrium in Planetary AtmospheresJoshua Krissansen-Totton, David S Bergsman, David C Catling
Nature Communications|December 2, 2020
Carbonate-silicate cycle predictions of Earth-like planetary climates and testing the habitable zone conceptOwen R Lehmer, David C Catling, Joshua Krissansen-Totton
Geobiology|March 25, 2021
Carbon cycle inverse modeling suggests large changes in fractional organic burial are consistent with the carbon isotope record and may have contributed to the rise of oxygenJoshua Krissansen-Totton, Michael A Kipp, David C Catling
Proceedings of the National Academy of Sciences of the United States of America|April 4, 2018
Constraining the climate and ocean pH of the early Earth with a geological carbon cycle modelJoshua Krissansen-Totton, Giada N Arney, David C Catling
Astrobiology|April 6, 2019
A Maximum Subsurface Biomass on Mars from Untapped Free Energy: CO and H<sub>2</sub> as Potential AntibiosignaturesSteven F Sholes, Joshua Krissansen-Totton, David C Catling
Nature Communications|September 27, 2024
The erosion of large primary atmospheres typically leaves behind substantial secondary atmospheres on temperate rocky planetsJoshua Krissansen-Totton, Nicholas Wogan, Maggie Thompson, et al.
Astrobiology|June 9, 2015
Transient Sulfate Aerosols as a Signature of Exoplanet VolcanismAmit Misra, Joshua Krissansen-Totton, Matthew C Koehler, et al.
Science Advances|June 13, 2025
Strong link between Earth's oxygen level and geomagnetic dipole revealed since the last 540 million yearsWeijia Kuang, Ravi Kopparapu, Joshua Krissansen-Totton, et al.
Pageof 2