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for pure CO system via 1909 and 1709 Ω/sq.
More recently, the Chemical Ontology (CO) system [22] has been described.
However, the CO system is limited to just ~200 chemical groups, and so it only covers a very limited portion of chemical space.
More importantly, the p AAGA)–Co system has proven to have very good storage capacity, e.g., after 30-day storage time, p AAGA)–Co had no loss in conversion and had 68% catalytic activity.
Therefore, in the Co system, the thermodynamics will drive the formation of the intermediate phase.
We next give an overview of ObjectRank [ 12, 15], which is the base of our CO system.
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Further experiments on the high alloy Fe-Ni-Co system are needed to understand Kovar's complex low pressure mechanical behavior.
The phase relations in the Ti-Nb-Co system are of great importance for the design of high temperature Ti alloys.
The isothermal section of Ti-Nb-Co system at 1000 °C has been established using one diffusion couple supplemented with 13 key alloys.
The Ti-Ta-Nb-W-C-N Ni-Fe 85Ni-15Fee) had a thicker gradient compared to the Ti-Ta-Nb-W-C-N-C-Co system.
The phase diagram of Ti-Nb-Co system varied greatly when the temperature raised from 900 °C to 950 °C, but the changes was not so big when temperature increased from 950 °C to 1000 °C.
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