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The sample structures were characterized by infrared spectroscopy.
The sample structures were designed according to Macedonian design code.
Sample structures were fabricated in the MUMPs process and were employed to prove the validity of the design principle.
The sample structures were investigated using X-ray diffresults results which were indexed completely on the basis of a trigonal structure of space group R3m ̄ with monoclinic C2/m phase as expected.
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A schematic of five sample structures is given in Figure 1.
The material properties used in the sample structures are identified experimentally using the Oberst Beam Method.
The sample structures are comprised of 7.5-nm-thick QW with indium concentration of 32% and various nitrogen concentration (N %= 0, 0.9, and 1.2) and 20 nm doped (Be for p-type and Si for n-type) GaAs barriers.
Two sample structures are studied for illustrative purposes: the classical reverse double-pendulum under a follower force and a linear visco-elastic beam under a follower force and a dead load.
To compare the two simulations, sampled structures were clustered using the GROMOS method: after the construction of the MxM RMSD matrix (were M is the number of structures sampled).
Additionally, our analysis of 17 RNA families showed that the RNAG sampled structures were generally compact around their ensemble centroids, and at least 11 families had at least two well-separated clusters of predicted structures.
The sample structure is shown in Figure 1.
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