Analysis of information sources in references of the Wikipedia article "Solid" in English language version.
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... The highest melting point was predicted to be 4126 K (3853 °C) at the composition Hf0.53C0.27N0.20, based on the PBE functional [1]. Compared to the PBE melting point of 3962 K in the Hf-C system, the Hf-C-N system further increases the melting point by 160 K (Figure 5). As predicted composition trends are more reliable than absolute numbers, these results suggest that the true melting point of Hf0.53C0.27N0.20 is best estimated by adding 160 K to known experimental result for the Hf-C system. Taking experimental melting temperature for HfC as 3888–4012 °C (lower and upper limits from Rudy and Progulski [143] and Sheindlin et al. [62]), the melting temperature at Hf0.53C0.27N0.20 is thus estimated at 4048–4172 °C which makes it a material with highest known melting point.
... The highest melting point was predicted to be 4126 K (3853 °C) at the composition Hf0.53C0.27N0.20, based on the PBE functional [1]. Compared to the PBE melting point of 3962 K in the Hf-C system, the Hf-C-N system further increases the melting point by 160 K (Figure 5). As predicted composition trends are more reliable than absolute numbers, these results suggest that the true melting point of Hf0.53C0.27N0.20 is best estimated by adding 160 K to known experimental result for the Hf-C system. Taking experimental melting temperature for HfC as 3888–4012 °C (lower and upper limits from Rudy and Progulski [143] and Sheindlin et al. [62]), the melting temperature at Hf0.53C0.27N0.20 is thus estimated at 4048–4172 °C which makes it a material with highest known melting point.
... The highest melting point was predicted to be 4126 K (3853 °C) at the composition Hf0.53C0.27N0.20, based on the PBE functional [1]. Compared to the PBE melting point of 3962 K in the Hf-C system, the Hf-C-N system further increases the melting point by 160 K (Figure 5). As predicted composition trends are more reliable than absolute numbers, these results suggest that the true melting point of Hf0.53C0.27N0.20 is best estimated by adding 160 K to known experimental result for the Hf-C system. Taking experimental melting temperature for HfC as 3888–4012 °C (lower and upper limits from Rudy and Progulski [143] and Sheindlin et al. [62]), the melting temperature at Hf0.53C0.27N0.20 is thus estimated at 4048–4172 °C which makes it a material with highest known melting point.
... The highest melting point was predicted to be 4126 K (3853 °C) at the composition Hf0.53C0.27N0.20, based on the PBE functional [1]. Compared to the PBE melting point of 3962 K in the Hf-C system, the Hf-C-N system further increases the melting point by 160 K (Figure 5). As predicted composition trends are more reliable than absolute numbers, these results suggest that the true melting point of Hf0.53C0.27N0.20 is best estimated by adding 160 K to known experimental result for the Hf-C system. Taking experimental melting temperature for HfC as 3888–4012 °C (lower and upper limits from Rudy and Progulski [143] and Sheindlin et al. [62]), the melting temperature at Hf0.53C0.27N0.20 is thus estimated at 4048–4172 °C which makes it a material with highest known melting point.
... The highest melting point was predicted to be 4126 K (3853 °C) at the composition Hf0.53C0.27N0.20, based on the PBE functional [1]. Compared to the PBE melting point of 3962 K in the Hf-C system, the Hf-C-N system further increases the melting point by 160 K (Figure 5). As predicted composition trends are more reliable than absolute numbers, these results suggest that the true melting point of Hf0.53C0.27N0.20 is best estimated by adding 160 K to known experimental result for the Hf-C system. Taking experimental melting temperature for HfC as 3888–4012 °C (lower and upper limits from Rudy and Progulski [143] and Sheindlin et al. [62]), the melting temperature at Hf0.53C0.27N0.20 is thus estimated at 4048–4172 °C which makes it a material with highest known melting point.