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The dissolution temperature for κ-carbide is between 850 °C and 900 °C.
A metallurgical model for particle coarsening below the dissolution temperature is considered.
An inverse linear relationship between the value of the dissolution temperature (Tsol) and the extent of the Raman carbonyl shift is demonstrated.
The electric field was found to decrease miscibility in at least HDDMA, causing liquid liquid phase separation at temperatures above the PEO melting temperature and well above the dissolution temperature.
The dissolution temperature (Tsol) of PAN was determined by the steric effect of the solvent molecules, i.e. the higher the bulkiness of a substituent, then the higher was the Tsol of PAN.
The critical gelation concentration of polyethylene gels formed in decalin by self-nucleation was studied as a function of the gelation temperature, the polymer dissolution temperature, and the time at the dissolution temperature.
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In random ethylene propylene copolymers (EP), the incorporation of ethylene into the polypropylene chain reduces the crystallinity and therefore causes both the crystallization and the dissolution temperatures to be lower than the one in the PP homopolymer.
In crosslinked gels the ice melting temperature and the amount of non-crystallizable water is explained by the classical variations of the glass temperature and the ice dissolution temperature with the concentration of water.
Nevertheless, the reduction of the Seebeck coefficient could be stabilized after heating and cooling the alloy from beyond the precipitate dissolution temperature to below the phase decomposition temperature due to stabilization of the Heusler nanoprecipitates.
Here, the initial concentration gradients were varied by changing the diffusion time and dissolution temperature at which the mixture was brought from the two- to one-phase region before the phase separation, and were evaluated using interferometry.
Seeded growth occurred at a maximum rate of 2.1 mm/day when the dissolution zone temperature was 535 °C and the growth zone temperature was 495 °C.
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