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Zusammenfassung Der Eisengehalt von Andalusiten und Disthenen aus Quarzknauern im Gebiet des Ötztaler—Stubaier Altkristallins wurde regional untersucht. Der Gehalt and Gesamteisen in primären Disthen liegt zwischen 0,17 und 0,22 Gew.% Fe2O3, während primäre Andalusite zwischen 0,26 und 1,93 Gew.% Fe2O3 schwanken. Dieser Unterschied in den Andalusiten wird auf ein wechselndes Angebot von Fe2O3 aus dem Nachbargestein der Knauern zurückgeführt.Ein Zusammenhang zwischen dem Eisengehalt der Andalusite und den verschiedenen Umwandlungsstadien Andalusit—Disthen konnte nicht nachgewiesen werden.
On the iron content of alumosilicates in quartz nodules
Summary A determination of the regional distribution of the ironcontent of andalusites and kyanites in quartz-segregations of the Oetztal—Stubai crystalline complex gave values of 0.17–0.22% for the total iron in primary kyanite and 0.26–1.93% in andalusite. This difference is probably due to a variation in the Fe2O3-content in the country rocks of the quartz veins. No relationship between the iron-content in andalusite and the different stages of transformation from andalusite to kyanite could be established.
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64.
Zusammenfassung Es läßt sich zeigen, daß im erzgebirgischen Raum die jungalgonkische Serie des varistischen Sockels von der Petrofazies diskordant geschnitten wird. Im Bereich des erzgebirgischen Kristallins steigt die Amphibolitfazies beulenförmig bis an die Basis des varistischen Sedimenttroges auf. Mit diesem Aufstieg wird eine Granitbildung regionalen und lokalen Charakters als möglich in Verbindung gebracht.
It can be demonstrated that the Upper Algonkian rocks of the Hercynian basement are disconformably cut by the petrofacies of the Erzgebirge. In the environment of crystallin rocks amphibolitic facies ascend to the bottom of the hercynian sedimentary trough. With this rise a granitisation of regional and locally restricted character might seem to be possible.

Résumé On peut montrer que dans la région de l'Erzgebirge les couches de l'Algonkien supérieur du socle hercynien sont recoupées en discordance par le petrofacies. Dans le domaine du cristallin de l'Erzgebirge, le facies amphibolite a la forme d'un dûme atteignant la base de la fosse sédimentaire varisque. On croit pouvoir établir une relation entre la formation de granite à l'échelle régionale et locale et cette montée métamorphique.

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Herrn Prof. Dr. Dr. h. c.Erich Bederke zum 70. Geburtstag gewidmet.  相似文献   
65.
Zusammenfassung Es wird eine Wolkensystematik vorgeschlagen auf Grund der Wolkenform, der struktur — Verband — des Wolkenhimmels und auf Grund der räumlichen Verteilung der Wolken. Jede an einer Einzelwolke selbständig auftretende Form wird als Hauptform bezeichnet und folgende Typen werden genannt: Schicht, Scheier, Faser, Welle, Linse, Balle, Flocke, Haufen (Cumulus) und Dorn. Andere, dem Verfasser bisher unbekannte Formen könnten dazugefügt werden. Zwischen den Hauptformen treten alle möglichen Uebergänge auf, die noch mit der nicht dominierenden Hauptform, Nebenform genannt, charakterisiert werden. Zusätzliche Formen-elemente, die aber nicht selbständig auftreten können, werden Spielformen genannt (Mammatus etc.).Auf die Bedeutung der Verbandsverhältnisse und der räumlichen Anordnung wurde in Beispielen hingewiesen. Die klare Unterscheidung zwischen Form, Verband und Anordnung gestattet, Wolkenbestimmungstabellen zu erstellen.
Summary The author proposes a systematical cloud classification according to their form (shape), their association (structure) and their repartition on the sky. Every form of a single cloud which appears independent of other forms is called main form or main shape. The following forms can be distinguished: layer, wave, lens, veil, thred, bale, flake, cumulus, thorn. Other forms may be added if necessary. All possible combinations of forms are to be found inbetween the main forms, so that there will be a secondary form next to the mainform (e. g. wave-lens). Additional forms which exist only together with main or secondary forms are details (e. g. mammatus). Some examples given in this study show the importance of combination's assembly and their repartitition in space. A clear difference made between the form, association and repartition allows to establish a convenient way of determining the clouds.

Résumé L'auteur propose une classification des nuages d'après leur forme, leur structure (assemblage) et aussi d'après leur répartition dans l'espace. L'allure d'un nuage indépendant donne sa forme principale définie comme suit: couche, voile, veine, vague, lentille, balle, flocon, cumulus et pointe. D'autres formes peuvent être ajoutées. Entre les formes principales se trouvent toutes les combinaisons possibles qui ne sont pas dominantes, elles sont nommées les formes secondaires. Des états supplémentaires qui ne sont pas indépendants, constituent le jeu des formes.
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66.
The modified time-to-failure method for intermediate-term earthquake prediction utilizes empirical relationships to reduce the number of unknown parameters providing a stable and unique solution set. The only unknown parameters in the modified time-to-failure method are the time and size of the impending main shock. The modified time-to-failure equation is used to model the precursory events and a prediction contour diagram is constructed with the magnitude and time-of-failure as the axes of the diagram. The root-mean-square (rms) is calculated for each set of time and magnitude on the prediction diagram representing the difference between the model (calculated) acceleration and the actual accelerated energy release of the precursory events. A small region, corresponding to the low rms region on the diagram, defines the prediction. The prediction has been shown to consistently under-estimate the magnitude and over-estimate the time-of-failure. These shortcomings are caused by an underestimation in energy release of the modified time-to-failure equation at the very end of the sequence. An empirical correction can be applied to the predicted results to minimize this problem. A main shock location search technique has been developed for use with the modified time-to-failure method. The location technique is used to systematically search an earthquake catalog and identify locations corresponding to precursory sequences that display accelerated energy releases. It has shown good results when applied in retrospective predictions, and is essential for the practical application of the modified time-to-failure method. In addition, an observed linear characteristic in long-term energy release can be used to minimize false predictions. The refined empirical relationships that eliminate or constrain unknown constants used in the modified time-to-failure method and the main shock location search technique are used in a practical application in the New Madrid Seismic Zone (NMSZ). The NMSZ, which is over due for a magnitude 6 event according to recurrence rates (Johnston and Nava, 1985), makes this region ideal for testing the method. One location was identified in the NMSZ as a high risk area for an event in the magnitude 4.5 range. The prediction, if accurate, is of scientific interest only because of the relatively small size of the main shock.  相似文献   
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The silica content of basaltic rocks is an unreliable variable with which to distinguish ultramafic-mafic complexes developed at ocean ridges from those potentially formed beneath volcanic island arcs. Data from Appalachian ophiolites supports the view that silica metasomatism is responsible for the high silica content of supposed calc-alkaline basaltic rocks found in ophiolites such as Troodos, and that the high-silica (70 wt.%) leucocratic rocks associated with ophiolites are of tholeiitic rather than calc-alkaline parentage. The use of titanium as a discriminant of tectonic environment is also suspect because the titanium content of basalts associated with Appalachian ophiolites as well as those recently recovered from the Atlantic ocean floor ranges from values even lower than those typical of island arc tholeiites to values typical of abyssal tholeiites. However, the internal stratigraphy of ophiolites in both the Appalachian and Tethyan systems can only be explained on the basis of the postulate that ophiolites originate at oceanic spreading centres rather than beneath island arcs.  相似文献   
69.
Photospheric and chromospheric spectroscopic Doppler rotation rates for the full solar disk are analyzed for the period July, 1966 to July, 1978. An approximately linear secular increase of the equatorial rate of 3.7% for these 12 years is found (in confirmation of Howard, 1976). The high latitude rates above 65 ° appear to vary with a peak-to-peak amplitude of 8%, or more, phased to the sunspot cycle such that the most rapid rotation occurs at, or following, solar maximum. The chromosphere, as indicated by H, has continued to rotate on the average 3% faster than the photosphere agreeing with past observations. Sources of error are discussed and evaluated.Operated by the Association of Universities for Research in Astronomy, Inc., under contract with the National Science Foundation.  相似文献   
70.
The Cryogenian succession of the Northern Flinders Ranges reveals a complex sedimentary record between the Sturtian and Marinoan glacial deposits. A major unconformity separates the Sturtian and Marinoan-aged sedimentary successions in the area. This forms a subaerial erosion surface with terrestrial and marginal marine infill directly above the Angepena and Balcanoona Formations in their respective localities. This exposure surface is here correlated with the previously documented submarine unconformity between the Yankaninna Formation and the underlying deep marine Tapley Hill Formation. This erosional event provides a chronostratigraphic marker horizon that coincides approximately with thepreviously defined Sturtian–Marinoan Time Series boundary in the Northern Flinders Ranges. These stratigraphic relationships also constrain lateral facies relationships between the Oodnaminta ReefComplex (Balcanoona Formation) and the Angepena Formation. Similarly, the shallow-water Weetootla Dolomite is correlated with the deeper water carbonates of the Yankaninna Formation.  相似文献   
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