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The system elements are characterized by the reliability factors: equipment failure rate and time to repair.
These elements are characterized by two criteria: lack of antidromic activation with electrical stimulation of appropriate motor nerves, and a high spike rate.9 Their two principal locations are (1) the NTS and subjacent RFpc; and (2) the ventrolateral reticular formation adjoining the nucleus ambiguus, representing the DSG and VSG of neurophysiologists.
The results obtained have shown that the tested elements are characterized by: (i) high values of the maximum horizontal load applied to the structural systems (higher than the applied vertical load); (ii) residual bearing capacity with respect to the vertical loads, also when large lateral deformations are imposed; and (iii) high ductility.
In this example the set of leaves is (X={a,b,c,d,e,f,g,h,i}), whose elements are characterized by two properties, as shown in Table 1 (Fig. 4).
In such cases, fluid elements are characterized by a volumetric elastic modulus equal to the fluid bulk modulus (or fluid compressibility); with a negligible shear resistance and Poisson constant being nearly 0.5 to simulate the fluid flow more reliable.
Such elements are characterized as those elements z of A for which z z ∗ z = z in A. For instance, in M n ( C ), any element which is the sum of distinct matrix units e i, i ( 1 ≤ i ≤ n ) is a partial isometry (indeed, a projection); there are other partial isometries in M n ( C ) as well.
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Chambers based on these designs and their elements were characterized using helium leaking checking as well as monitored for moisture ingress with an electrical calcium test.
Under both loading conditions, the bending behaviour of the TRC-FC composite elements was characterized by favourable load bearing capacity, partial composite action, superior ductility and multiple fine cracking.
The annealed films notably show the crystalline phase of Cu3SbS3, identified from the X-ray diffraction analysis and endorsed by the Raman analysis as well, whereas the chemical state of the constituent elements was characterized using X-ray photoelectron spectroscopy.
The surface and shape characteristics of the nano composite and quantitative analysis of the elements were characterized using a scanning electron microscope and energy dispersive X-ray, respectively.
The integration of the doping elements is characterized by a number of physical methods, revealing the structural aspects of the doping process.
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