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The storage of residual stresses, maintained stable in the vitreous state, led to a spontaneous shape recovery of an initial pre-programmed shape when relaxing above the glass transition temperature, Tg, during heating.
Eq. 7 describes how the adsorptive activators' distribution depends on the local membrane shape (curvature), since they adsorb in regions where the membrane curvature matches their spontaneous shape (feedback scheme Fig. 2c).
The activators tend to localize where the membrane has a curvature that matches their spontaneous shape, while they in turn modify the membrane shape due to the forces that they apply; one force is simply due to their shape which tends to curve the membrane, and the other, active force is due to the recruitment of actin polymerization, and is purely protrusive.
Nanoparticles (NPs) undergoing spontaneous shape fluctuations have been the focus of numerous recent experimental studies.
Class 1 mutations are of several different types, but all work by generating excess amounts of cell membrane, which drives spontaneous shape changes and ultimately proliferation.
Direct and indirect observations of various types of metal nanoparticles (NPs) in this size range, under catalytically relevant conditions for fuel-cell operation and catalysis, have indicated that such "small" particles can exhibit large spontaneous shape fluctuations and significant changes in shape and chemical activity in response to alterations in environmental conditions.
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This lack of spontaneous shape-based food object individuation can be alleviated with some previous experience and with very little and very shallow experience (a couple of encounters with the food items) indeed.
Evidently, the large spontaneous NP shape fluctuations reflect a change in character of the collective atomic dynamics when the NPs become critically small in size.
For example, Marchak et al. observed spontaneous NP shape fluctuations in individual Bi NPs and associated NP property (band gap) fluctuations, and Helveg et al. investigated the surface reorganization of Ni NPs in the course of their observations on carbon nanotube growth from the surface of these NPs.
Most of them appear to be spontaneous creations, shaped out of real-time interaction.
"Dancing" on the spread canvas, Pollock created on its surface spontaneous images shaped by the trajectory of his motions.
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