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The phase information from Δ is very sensitive to films below the sub-monolayer thickness.
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In addition, it is sensitive to film thickness and crosslink density, thus allowing tuning of the sensitivity and lifetime.
Indentation induced crack morphology appeared very sensitive to film microstructures, where well organized straight through thickness cracks occurred while indentation of TiAlCrN caused a network of irregular cracks due to the greater contribution of column grain boundary sliding.
This acoustic wave mode is very sensitive to thin films which was previously shown for diamond-like carbon films with thickness down to 60 nm.
For the final film, the fringes of CTRs (sensitive to crystalline film thickness only) and the X-ray reflectivity fringes (sensitive to total film thickness irrespective of crystalline order) correspond to the same thickness.
ICR and EIS show the interfacial film resistance Rp is sensitive to the film formation potential.
It was found that ∆R/R0 was very sensitive to the film thickness.
From tests in the electrically heated oven, it was found that both primers were sensitive to the film thickness employed and the presence of oxygen.
It was found that the transformation strain and residual strain under a constant stress are very sensitive to the film thickness when the thickness is less than the average grain size, 5 μm.
It is clear that the impedance response is sensitive to the film formation potential.
Such similarity suggested that the thickness dependence of CA may be more sensitive to the film morphology than to the underlying substrate.
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CEO of Professional Science Editing for Scientists @ prosciediting.com