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No loosening of the components was observed radiographically.
Baseline separation of all the components was achieved in time less than 1 min.
Then, the thermal error transfer function of the components was derived.
Only water was used as solvent and no previous separation of the components was required.
Stoichiometric addition of the components was also demonstrated and found to be important for reducing polydispersity.
The spherical scatter width of the components was also taken into account as an optimization parameter.
An interfacial tension between the components was calculated from the interfacial thickness observed by SEM.
The ordering of the components was done by computing the kernel principal component analysis (KPCA) of all rows of both the W matrices pooled together.
A physical plastic shape of the components was produced using a Rapid Prototyping machine and used as a sacrificial pattern.
Responsibility for each of the components was assumed by a team of 2-3 members, with recommendations and proposals being posted to the LISTSERV for general discussion by the TFH as a whole.
The molar ratio of the components was optimised to reach this favourable property together with a cost-cutting reduction of heat treatment time.
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