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Solubility of low Tm chain species in the amorphous layers of the high Tm phase is also evidenced.
(b) Sensitivities of TM phase at UZ399 and UZ400 by further sensitivity analysis for each cases.
(c) Sensitivities of the TM phase at sites 001 and 111 by further sensitivity analysis for the cases where blocks X1 and Y are replaced.
(d) Sensitivities of the TM phase at site 102 by further sensitivity analysis for the case where block X2 is replaced.
This occurred because of the unstable soundings at low frequencies at site 102. Figure 5d shows the change in the TM phase at site 102 that occurs when region X3 is replaced with a 100- Ωm body.
The sensitivity of TM phase of UZ398 was examined by replacing the region Y with a 100 Ωm body in Case2-1, and by replacing the lower part of the region with a 100 Ω m in Case2-2, respectively.
Similar(49)
TM, in phase I trials in patients with a variety of metastatic cancers including breast, colon, lung, and prostate and in phase II trials in patients with advanced renal cancer and mesothelioma, was well tolerated and showed stabilization of the disease in a proportion of patients [ 11- 13].
Left and right columns represent observed and calculated responses, respectively, with the upper chart showing TM-mode phase data and the lower chart showing TM-mode apparent resistivity data.
TM-AFM phase images show nanoparticles are "reporters" and reflect effects of composition and processing on surface morphology.
TM-AFM phase imaging is shown to be capable of detecting the presence of these sub-surface nano silica particles.
By comparing the tapping mode AFM (TM-AFM) phase images of the pure components and their blends, surface phase separation mechanisms of the blends could be identified as the nucleation and growth mechanism or the spinodal decomposition mechanism.
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