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either in ZB or RS structures.
Thus, it is of significant importance to explore new RS structures and elucidate the RS physical mechanism.
Also, at P T, reduced jump in between ZB and RS structures can be seen as compared to low temperatures.
An increasing trend of compressibility of SiC is witnessed in terms of λ as seen in both ZB and RS structures and is attributed to mechanical hardening of lattice.
For both ZB and RS structures, the knowledge of elastic constants at variable pressure is worth investigating aimed for practical applications related to the mechanical properties of a solid: load deflection, thermo elastic stress, internal strain, elastic wave velocities, and fracture toughness.
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Surely you were jesting in your article "Barnyard Chic: From Pool House to Town House, the Big Red Structures Aren't for Animals" (Aug. 7).
These outer boundary B r structures were compared with B r structures at mid-depth using an auto-correlation function for the same longitudinal and latitudinal extent.
Ring structures have potential applications as multi-axis rate sensors and hence the effects of angular velocity on the vibration properties are practically important.
These strong St r structures are characterized by an intense tangential field residing at the edges of radial plumes where the tangential gradient of u r is large.
When the tangential magnetic field lines (vec {B}_{h}) are perpendicular to the u r -isolines, strong St r structures are produced (as in Fig. 9h, j).
Ring structures are detected and high energy ring conformations are ignored as they impart too high energy on the conformers, and are thus generally not seen in nature.
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CEO of Professional Science Editing for Scientists @ prosciediting.com