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FAST is a compact (Ro = 1.82 m, a = 0.64 m, triangularity δ = 0.4) and cost effective machine able to investigate, with integration capability, non linear dynamics effects of alpha particle behaviour in burning plasmas.
This in turn implies the presence of so-called non-ideal compressible fluid dynamics effects.
We therefore give an expression of the dipolar autocorrelation function taking into account the ion dynamics effects.
We analyze in detail the extra spin dynamics effects due to the strong field inhomogeneities including the effects on diffusion and relaxation.
Dam-breaking cases, with dry or wet beds downstream, are then presented to highlight free-surface flow and rapid dynamics effects.
FAST is a compact (R0 = 1.82 m, a = 0.64 m, triangularity δ = 0.4) machine able to investigate non-linear dynamics effects of alpha particle behaviours in burning plasmas [1,2,5].
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The obtained subnanocomposites manifest an extremely high "constrained dynamics" effect and superiority in thermal and mechanical properties compared to those of the nanocomposites with higher silica contents.
Moreover, the enhanced long-range action of the 'constrained dynamics' effect (see below) caused by the nanoparticles was also suggested for the densely cross-linked networks.
The revealed effect of ultra-low amino-MMT content testifies in favor of the idea about the extraordinarily enhanced long-range action of the 'constrained dynamics' effect in the case of densely cross-linked polymer networks.
Thus, at the elevated amino-MMT contents a strong 'constrained dynamics' effect is typical for a part of matrix nanovolumes only because of sharply non-uniform distribution and aggregation of nanolayers; large amino-MMT content promotes the manifestation of this effect as a separate high-temperature relaxation peak.
The presence of amino-MMT aggregates, covalently attached to CER matrix, promotes, obviously, formation of both the polymer nanovolumes with defects in the densely cross-linked network (reduced T g) and the nanovolumes underwent to the impact of 'constrained dynamics' effect (anomalously high T g).
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