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Fig. 4. High temperature susceptibility measurements.
To test thermal stability, high temperature susceptibility measurements were carried out using a kappabridge KLY-4 (AGICO).
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Compared to CMBs, modified bitumen emulsion residues (MBERs) exhibit higher temperature susceptibility, inferior resistant to cracking and deformation, lower elastic recovery and storage stability whereas these properties are improved substantially relative to base bitumens.
High-temperature susceptibility data support the stability of the samples upon heating and show the dominance of near stoichiometric magnetite (Fig. 4).
The high temperature magnetic susceptibility measurements for GB7 appear to validate this model, showing that the NMR experiments are performed in the Curie Weiss regime and sufficiently far above the depressed Néel transition temperatures of the doped samples.
As well, engineering performances, e.g., cracking resistance at low temperature, rutting resistance at high temperature and moisture susceptibility, are measured.
However, features of heteroblastic seedling morphology (slender branches and smaller leaves) and biomass allocation (leaf mass ratio and greater shoot mass ratio) may make heteroblastic seedlings less vulnerable to other environmental stresses (high temperature, low soil moisture, susceptibility to wind and snow) encountered in high light intensities.
After sulphuric exposure for 90 days, the high temperature cured samples show less susceptibility to the acid attack in comparison with those samples cured at room temperature and those without HGMW and QP.
Moreover after the 2003 heat wave in Europe the introduction of prevention programs may have modified the determinants of the population's susceptibility to high temperature [ 15, 16].
A Curie temperature, TC, of 10.6 K, found for 1 gel by fitting the magnetic susceptibility at high temperature to the Curie Weiss law, is quite close to 10.8 K reported for bulk ferromagnetic ordering of [Ni N-men 2]3[Fe CN 6]2 [Ni N-men 2]3[Fe CN 6]2 ⋅12
McElroy, K. et al. Elastic scattering susceptibility of the high temperature superconductor Bi2Sr2CaCu2O8+x: A comparison between real and momentum space photoemission spectroscopies.
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