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This work appears in Developmental Cell and can be found here.
These cells are genetically identical to the original skin cell and can be used to create tissue for transplanting into the skin cell's donor.
Here the 3D structure is the actual solar cell, and can be made of any material used in photovoltaics.
They can replicate only inside their host cell and can act as natural gene carriers.
These proteins, to differing extents, govern which chemicals reach the membrane of the receptor cell and can be regarded as filters.
All of these factors contribute to the mass and heat transfer in the fuel cell and can be optimized through modeling.
This model provides insights into many design issues of air-breathing fuel cell, and can be easily used as an optimal design tool for air-breathing PEMFC.
These cells can turn into any kind of blood cell and can be used for transplants that can cure diseases such as blood disorders, immune deficiencies, metabolic diseases, and some kinds of cancers.
The thermal stable porous polyimide membranes are favorable to be applied as separator in the lithium-ion cell and can be expected to provide excellent battery performance at elevated temperature.
Although these techniques do not show detailed virus structures, they can be used to follow the progress of a virus through a cell and can provide a direct window into protein protein interactions required for virus replication.
Finally, we conduct the same procedure for each range cell and can achieve the estimation of (hat {mathbf {X}}).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com