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Preliminary results of radiation hard candidate material are shown.
Obtained dependences between process stability, deformation ratio and wall thickness of formed material are shown.
The chemical components of this material are shown as letters superimposed on the backs of anonymous people, whose outward appearances are different but whose genes are virtually interchangeable.
The correlation between electrical power output – system size and thermal conductivity – heat-transfer coefficient of the thermal insulation material are shown.
The obtained DSC curves characterizing melting and solidification of the composite material are shown to be dependent upon the values of heating and cooling rates.
Further, catheters fabricated with this novel NO releasing composite material are shown to exhibit significant effects on preventing biofilm formation on catheter surface by Pseudomonas aeruginosa and Proteus mirabilis grown in CDC bioreactor over 14 days, with a 2 and 3 log-unit reduction in the number of live bacteria on their surfaces, respectively.
Similar(39)
New technologies based on organic inorganic materials are shown to be very flexible, while they present interesting performance.
The plume material is shown in dark red.
Building construction material is shown by colored shading.
Part at least of the active material was shown to be ether-soluble.
A close-up view of the material is shown on the this page.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com