We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by the same mix with an additional 8 per cent oxygen. This composition matches the densities of seismic model, Preliminary Reference Earth Model (PR-EM). When the liquid core freezes S and Si remain with the Fe to form the solid and excess 0 is ejected into the liquid. Properties of Fe, diffusion constants for S, Si, 0 and chemical potentials are calculated by first-principles methods under the assumption that S, 0, and Si react with the Fe and themselves, however, not with each other. This gives the parameters required to calculate the power supply to the geodynamo as the Earth's core cools. Compositional convection, driven by light O released ...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The standard model of Earth’s core evolution has the bulk composition set at formation, with slow co...
The Earth acts as a gigantic heat engine driven by the decay of radiogenic isotopes and slow cooling...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
We model the thermal evolution of the core and mantle using a parametrized convection scheme, and ca...
Thermal evolution models of Earth's core constrain the power available to the geodynamo process that...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
Recent theory and experiment suggest the thermal and electrical conductivities of the Earth’s core a...
All models that invoke convection to explain the observed seismic variations in Earth's inner core r...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The standard model of Earth’s core evolution has the bulk composition set at formation, with slow co...
The Earth acts as a gigantic heat engine driven by the decay of radiogenic isotopes and slow cooling...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
We model the thermal evolution of the core and mantle using a parametrized convection scheme, and ca...
Thermal evolution models of Earth's core constrain the power available to the geodynamo process that...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
Recent theory and experiment suggest the thermal and electrical conductivities of the Earth’s core a...
All models that invoke convection to explain the observed seismic variations in Earth's inner core r...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The standard model of Earth’s core evolution has the bulk composition set at formation, with slow co...
The Earth acts as a gigantic heat engine driven by the decay of radiogenic isotopes and slow cooling...