Statistical model of systematic errors: An assessment of the Ba-Cu and Cu-Y phase diagram
β Scribed by E.B. Rudnyi
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 961 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0169-7439
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β¦ Synopsis
In a series of experimental measurements, the difference among values obtained in several experiments (between-errors) quite often are greater than the reproducibility scatter within an experiment (within-errors). This is typically explained in terms of systematic experimental errors. The application of a method devised in mathematical statistics, i.e., The estimation of variance components, allows us to treat this problem. In the present work, the use of this method is considered for the non-linear thermodynamic model pertaining to the assessment of the Ba-Cu and Cu-Y phase diagrams. The linear error model comprising a reproducibility error with the shift and tilt systematic errors was employed to describe the scatter observed. Special attention is paid to visualizing the quality of the fit.
π SIMILAR VOLUMES
Phase equilibrium investigations along the sections Y2BaCuOs-CUO x and YBa Cu O -CuO\_ have been carried out in air. Furthermore, a pseudobinary phase ..2 37-6. ~. ulagram in uepenuence on P(O2), T and x is discussed.
The thermodynamic properties of nonsuperconducting phases in the Y-Ba-Cu-O system are critically reviewed and those of YBa4Cu3Os.5 are estimated. With the aid of these data, subsolidus phase equilibria are calculated for a wide range of oxygen pressures and temperatures, and stability fields of the
The polythermal section at a constant composition of 20 mol% BaCl 2 of the quasi-ternary system BaCl 2 -BaO-CuO x was investigated at p(O 2 ) β«Ψβ¬ 0.21 bar by means of DTA/TG and soaking experiments. Our results show the nature of incongruent decomposition reactions of the quaternary phases Ba 3 Cu 2