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Several hypotheses relating to larval life-history trait divergence on the acid-neutral axis were discussed in detail in [ 21] and we do not repeat them all here.
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Numerical simulations for two hysteresis rods per axis and eight hysteresis rods per axis are discussed, showing that the satellite stabilizes in about 14 days, with a residual oscillation amplitude of less than 10°, if eight rods are used.
The predominant process of diffusion perpendicular to the [0 0 1] axis is discussed from the viewpoint of activation energy using the expressions of the diffusion coefficients in L10-ordered alloys.
Other roles for these factors during embryogenesis and outside the HPAG axis are discussed.
Peripheral nerve sprouting and dorsal horn central sensitization, disinhibition and neuroimmune priming are discussed in relation to the increased pain and hyperalgesia, while altered descending pain control systems driven, in part, by changes in the stress/HPA axis are discussed in relation to the widespread hypoalgesia.
Design trade-offs such as monolithic integration versus hybrid and single-axis versus three-axis are discussed.
The possible atom movements by the deformation twinning are described and the reasons why twinning of this type occurs only under a limited condition (i.e., off-stoichiometric compositions, high temperatures and compression axis being close to the c-axis) are discussed in the light of the atom movements by the deformation twinning.
The unusual subject of imprecision in trough axis placement is discussed.
The way to combine the metrics for a characterization of groups along the temporal axis will be discussed in Section 5.2.
A fundamentally precise and simple linear motion axis design is discussed where the attractive force from the linear motor is used to preload a carriage supported by six rigidly attached porous carbon air bearings.
An analysis of the off-axis beam is discussed.
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