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The same behavior is observed from the handovers point of view (see Fig. 7b).
Further signatures of the ferromagnetic behavior is observed from the magnetic hysteresis loop at 2 K (inset of Fig. 9).
For the Ti3C2T x and Ti3C2T x -IC films, on the other hand, metallic behavior is observed from 300 to about 100 K; below 100 K the resistivity increases with decreasing temperature.
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A unique demagnetization behavior was observed from the seven samples in site 27 (Figure 8).
Similar behavior was observed from the evolution of tangential force with cycling.
Unique MR behavior was observed from nanotube with a maximum magnetoresistance ratio of 37% at 260 K.
A more sustained Tmx release behavior was observed from polyethylene glycol (PEG) conjugated nanoparticles in comparison to the non-PEGylated ones.
Optimal hydrophobic behavior was observed from coatings derived from the monomer with the longest fluorocarbon chain, as demonstrated from trends seen in WCA and CFn group concentrations.
Similar kind of desorption behavior was observed from the CO2-TPD profiles of 5VCA and 7VCA, which shows the presence of weak and moderate basic sites (T max ~473 and 833 K), respectively.
Heat release analyses showed that no noticeable low temperature heat release behavior was observed from the oxidation of neat 1-butanol while the n-heptane/1-butanol mixture exhibited pronounced cool flame behavior.
In Figure 2, the structure and peptides are colored according to the fraction that undergoes complete exchange in 3 min. The red peptides from the N- and C-terminal regions undergo rapid exchange that is complete in 3 min. This behavior is observed for three peptides from the C-terminal tail, consistent with the known flexibility of this segment that tethers the CheR binding site to the receptor.
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