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To summarize this scoring system, five points were given for left main lesion; 2.5 points for the proximal left anterior descending artery (LAD) or left circumflex (LCX); 1.5 points for mid-segment LAD; one point for the distal segment of LAD, first diagonal branch, LCX obtuse marginal branch or right coronary artery, and 0.5 points for the second diagonal branch or LCX posterolateral branch.
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Temperature at the model surface is fixed to 0°C, and an adiabatic condition is given for the left and bottom boundaries (Figure 4a).
Illustration of these edge processing stages is given for the left image of a stereo pair in Figure 2. Figure 2 An example of pre-processing and estimated sparse disparity map.
The errors are given for the dissolution time (left column), binary semimajor axis (middle column) and eccentricity (right column).
The distributions are given for all site conditions (left column), but also for soft sites only (V S30 < 300 m/s, middle column) and stiff sites only (V S30 > 800 m/s, right column).
Distributions are given for the escaper speed (top left) and kinetic energy (top right), binary semimajor axis (middle left), binding energy (middle right) and binary eccentricity (bottom).
Fig. 4 Optical micrographs of a neat P3HT and b, c P3HT PMMA films with b 10 wt% and c 2 wt% of P3HT in PMMA Fig. 5 TEM images of a spherical particles of P3HT, b crystalline domain of P3HT, and their corresponding SAED patterns to the right of the images; c neat PMMA (right image) and P3HT-PMMA blend (left image) are given for comparison.
For (Y_{t_i}=f(t_i)), where, (left{ t_1< t_2 < cdots right}): is the function given at discreet time for socio-economic variable given by: (left{ left( t_1, y_{t_1}right), left( t_2, y_{t_2}right), ldots left( t_n, y_{t_n}right) right}).
Figure 7 (left) gives for each of the 43 replicates the Mahalanobis Distance D M to the center of all other measurements.
Recently, Boucherif [1] applied the fixed point theorem in cones to study the existence of positive solutions for the problem given by left { textstylebegin{array}l} x^{primeprime}(t)=f t,x t)), quad 0< t < 1, x 0 -cx^{prime}(0)=int_{0}^{1}g_{0}(s)x 0 -cx^{primedx^{prime}(1)=int_{0}^{1}g_{1}(s)x(s),ds, end{array}displaystyle right.
Recently, Sun and Liu [19] applied the Leray-Schauder nonlinealternativeive to study the existence of a nontrivial solution for the problem given by left { textstylebegin{array}l} u t)+f t,u =0, quad 0< t < 1, u(0)=0, qquad u(1)=alpha u eta), end{array}displaystyle right.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com