Jena Glass And Its Scientific And Industrial Applications

Cover Jena Glass And Its Scientific And Industrial Applications
Jena Glass And Its Scientific And Industrial Applications
Heinrich Hovestadt
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Das Mittel aus alien fiinf ist: 0,2272. Indem Winkelmann diese Zahl anstatt 0,2374 benutzt, im iibrigen aber die oben mitgeteilten Werte far die in den Glasern enthaltenen Oyde festhalt, berechnet — 207 — er die spedfischen Wurmen der Glasarten i — 18 von neuem. In der folgenden Tabelle sind die beobachteten Werte unter ^, die berech- neten unter d zusammengestellt. Daneben steht die DifFerenz c — c\ in Frozen ten von c ausgedrilckt; sie betragt nur rund i %. Die er- hebliche Abweichung beim Gl
...ase i ist wahrscheinlich darauf zurttck- zufilhren, dass der (in der Tabelle des Art. 67) angegebene Gehalt von 5,8 7o Lithiumoxyd thatsachlich nicht ganz in dem Glase enthalten war; nach einer Mitteilung von Schott war das benutzte Oxyd nicht trocken^).
w.
c c c — c s 5,C I 0,2318 0,2415 - 4.2V0 2,238 0,5188 2 0,2182 0,2192 -0,5 2,243 0,4894 3 0,2086 o,2o8o 4-0,3 2,424 0,5056 4 0,2044 0,2040 + 0,2 2,480 0,5069 5 0,2038 0,2049 -0,5 2,370 0,4830 6 0,1988 0.1983 + 0,3 2,585 0,5139 7 0,1958 0,1964 -0,3 2,479 0,4854 8 0,1907 0,1888 + 1.0 2,629 0,5013 9 0,1901 0,1944 — 2,3 2,588 0,4920 10 0,1887 0,1893 — 0,3 2,518 0,4751 11 0,1644 0,1668 — 1,5 3,527 0.5798 12 0,1617 0,1626 — 0,6 2,848 0,4605 n 0,1589 0.1573 + 0,9 3*070 0,4878 H 0,1464 0.1439 + 1.0 3.238 0.4740 7 0,1257 0,1272 — 1,2 3,578 0,4498 18 0,08174 0,08201 — 0,3 5,831 0,4766 Winkelmann vergleicht mit den specifischen Warmen der 18 Glasarten noch ihre ebenfalls von ihm bestimmten specifischen Gewichte.


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