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The diffusion-controlled growth of multiple compound phases is studied with the nonlinear Kirkendall effect included.
The effect of (heterogeneous) nucleation on the growth of multiple clusters is analyzed.
Based on our numerical model, possible approaches to promoting the uniform growth of multiple fractures are discussed.
In multi-stage hydraulic fracturing, the limited-entry method is widely used to promote uniform growth of multiple fractures.
Notably, it suppresses the growth of multiple myeloma xenografts without leading to the death of teated animals like reference compound.
IGF1 plays a key role in the development and growth of multiple tumors and in the prevention of apoptosis.
The simulations show clearly that the erosion of perforation will significantly deteriorate the non-uniform growth of multiple fractures.
We simulate the growth of multiple hydraulic fractures in numerical cases to investigate the competition process in hydraulic fractures.
This resulted in the growth of multiple CNTs on the entire surface of the in-flight Ni-Al MNPs, which were finally collected on a membrane filter.
An early occurrence and growth of multiple fingers were observed for high-permeable layers, whereas finger growth was delayed in layers with low permeability.
Growth of multiple crystal clusters could be detected in about a week and seeding technique was used for growth of single crystals qualified for data collection.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com