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The conventional NDT (nondestructive testing) methods currently being used focus on the detection of material defects, e.g. debonding.
The proposed full-field technique is adequately sensitive for detection of material inhomogeneity or design verification of a nano-or microstructured magnetostrictive transducers or actuators.
A novel microwave nondestructive evaluation (NDE) sensor was developed in an attempt to increase the sensitivity of the microwave NDE method for detection of material defects small relative to a wavelength.
The nature of the nonlinear optical effects based on detection of material properties tied to second- (i.e. SHG) or third-order nonlinear susceptibility (i.e. THG, CARS) allows the gathering of different but highly complementary information about the molecular and supramolecular architecture of tissues [ 13].
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While x-ray radiography is highly sensitive for the detection of materials with high atomic numbers like metals, weakly absorbing foreign bodies are reportedly elusive in plain radiography.
MN tests have been employed for genotoxicity and mutagenicity detection of materials that induce the formation of DNA fragments [ 22– 22].
Simultaneously, this functionalization allows sensitive MRI detection of materials, even when dispersed across large regions of tissue after injection, which can facilitate safe, long-term in vivo monitoring of polymeric devices that were previously invisible after implantation.
The detection of ruminant material in animal-derived materials has been extensively described [ 3– 8].
They included the following domains: a) perceptions of rotavirus disease, b) perceptions of rotavirus vaccination, c) attitudes toward the detection of PCV material in rotavirus vaccines, and, d) attitudes toward communication materials on these topics.
Therefore for the foreseeable future the onus of detection of unoriginal material remains with academics, lecturers and teachers (Rogerson, 2014).
We also note the necessity of one-by-one ash particle examination— time-consμming work for the correct characterization of ash samples and early detection of juvenile material.
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