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Differences in surface charge and water mobility allow slightly different inorganic macroions to self-assemble separately.
namely a linear decrease of water mobility with the scaling parameter θ.
They show different 1H spin-lattice relaxation dynamics, and, higher water mobility with respect to MKP.
DWI, reflecting changes in water mobility, offers high detectability of the lesions.
A major difference to the bulk is the reduced water mobility there.
The huge difference between gas and water mobility contributes to the poor performance for both foams.
The restructured hydrogen bonds enhance the water mobility, showing higher diffusion coefficients than bound water.
It is crucial to determine the initial water mobility in order to optimize SAGD performance.
The results showed that the initial water mobility can lead to severe energy loss.
The oil recovery in the scenario of low initial water mobility is 6.6% higher than that of immobile initial water scenario, and is 12.6% higher than that of high initial water mobility scenario.
This is similar to the way that water mobility determines mechanical properties of highly hydrated tissues, such as articular cartilage.
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