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We report electron density as high as 4×1018 m−3 at 10 mtorr and 9 cm below the target in a pulsed discharge with average power 300 W. We estimate the traveling speed of the electron density peak along the axis of the discharge.
Here we report electron capture dissociation (ECD) 4 data on the gas-phase structures of the three-helix bundle protein KIX 5 that indicate substantial preservation of the native solution structure on a timescale of at least 4 s.
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In this article, we report electron-beam-induced-current (EBIC) and secondary-electron voltage-contrast (SE-VC) with an aberration-corrected electron probe in a transmission electron microscope (TEM), as complementary techniques to electron holography, to measure electric fields and surface potentials, respectively.
Our reported NC ratios are in good agreement with the previously reported electron microscopic analysis for the superficial epithelium (0.045 ± 0.02) and for the basal epithelium (0.40 ± 0.14) [ 37], while previous quantitative analysis required the removal of the oral mucous tissues.
Notably, Sn2S3 is a narrow-bandgap semiconductor with a reported electron affinity of approximately 3.56 eV [17], whereas ZnO is an n-type wide-bandgap semiconductor with a reported electron affinity of 4.35 eV [28].
Their reported electron densities (5 to 30 × 1010 matchmathe the lower end of the range of F peak densities given in Table 1.
One n-doped with Si dopants, with the reported electron concentration of (0.8−4)×1018 cm −3 and the mobility of (1−2.5)×103 cm 2/Vs.
In our previous work, Li et al. (2014a) reported electron beam-associated ESWs in the tailward outflow region near the separatrix of the magnetic reconnection by Geotail observation.
In addition, we will show that the enhanced D ng region along magnetic separatrix line marks the boundary of the accelerated electrons, which is consistent with the previously reported electron separatrix (e.g., Lindstedt et al. 2009).
Functionalized culture dishes were prepared by previously reported electron beam grafting copolymerization of N-isopropylacrylamide (IPAAm) with its carboxylate-derivatized analog, 2-carboxyisopropylacrylamide (CIPAAm), having similar molecular structure to IPAAm but with carboxylate side chains to tissue culture polystyrene dishes.
Overall, from the XPS spectra (Fig. 6), we can conclude that MPc molecules were successfully attached onto the surface of the rGO sheets and the electron transfer system was formed from MPc to rGO, which is consistent with the reported electron transfer phenomenon [21].
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