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Dipta B Ghosh

Showing results (1-10 of 9) with videos related to

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Science Advances|December 12, 2017
Transport properties of carbonated silicate melt at high pressureDipta B Ghosh, Bijaya B Karki
Scientific Reports|November 23, 2016
Solid-liquid density and spin crossovers in (Mg, Fe)O system at deep mantle conditionsDipta B Ghosh, Bijaya B Karki
Materials (Basel, Switzerland)|July 29, 2023
Computational Materials Design for Ceramic Nuclear Waste Forms Using Machine Learning, First-Principles Calculations, and Kinetics Rate TheoryJianwei Wang, Dipta B Ghosh, Zelong Zhang
Nature Communications|October 10, 2015
Structure and density of basaltic melts at mantle conditions from first-principles simulationsSuraj Bajgain, Dipta B Ghosh, Bijaya B Karki
Scientific Reports|May 20, 2021
Behavior and properties of water in silicate melts under deep mantle conditionsBijaya B Karki, Dipta B Ghosh, Shun-Ichiro Karato
Scientific Reports|April 14, 2017
Carbon-bearing silicate melt at deep mantle conditionsDipta B Ghosh, Suraj K Bajgain, Mainak Mookherjee, et al.
Scientific Reports|August 13, 2024
Insights into core-mantle differentiation from bulk Earth melt simulationsAbin Shakya, Dipta B Ghosh, Colin Jackson, et al.
Nature Communications|December 9, 2022
Insights into magma ocean dynamics from the transport properties of basaltic meltSuraj K Bajgain, Aaron Wolfgang Ashley, Mainak Mookherjee, et al.
Nature Communications|April 26, 2020
A magma ocean origin to divergent redox evolutions of rocky planetary bodies and early atmospheresJie Deng, Zhixue Du, Bijaya B Karki, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
Science Advances|December 12, 2017
Transport properties of carbonated silicate melt at high pressureDipta B Ghosh, Bijaya B Karki
Scientific Reports|November 23, 2016
Solid-liquid density and spin crossovers in (Mg, Fe)O system at deep mantle conditionsDipta B Ghosh, Bijaya B Karki
Materials (Basel, Switzerland)|July 29, 2023
Computational Materials Design for Ceramic Nuclear Waste Forms Using Machine Learning, First-Principles Calculations, and Kinetics Rate TheoryJianwei Wang, Dipta B Ghosh, Zelong Zhang
Nature Communications|October 10, 2015
Structure and density of basaltic melts at mantle conditions from first-principles simulationsSuraj Bajgain, Dipta B Ghosh, Bijaya B Karki
Scientific Reports|May 20, 2021
Behavior and properties of water in silicate melts under deep mantle conditionsBijaya B Karki, Dipta B Ghosh, Shun-Ichiro Karato
Scientific Reports|April 14, 2017
Carbon-bearing silicate melt at deep mantle conditionsDipta B Ghosh, Suraj K Bajgain, Mainak Mookherjee, et al.
Scientific Reports|August 13, 2024
Insights into core-mantle differentiation from bulk Earth melt simulationsAbin Shakya, Dipta B Ghosh, Colin Jackson, et al.
Nature Communications|December 9, 2022
Insights into magma ocean dynamics from the transport properties of basaltic meltSuraj K Bajgain, Aaron Wolfgang Ashley, Mainak Mookherjee, et al.
Nature Communications|April 26, 2020
A magma ocean origin to divergent redox evolutions of rocky planetary bodies and early atmospheresJie Deng, Zhixue Du, Bijaya B Karki, et al.
Pageof 1