76 resultados para Slüter, Joachim, ca. 1490-1532.

em BORIS: Bern Open Repository and Information System - Berna - Suiça


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Das Studium der Überlieferung und Repertoirbildung gibt über die Art der Nutzung von musikalischen Werken Aufschluss. Im iberischen Raum wurde im 16. Jh. das internationale Messenrepertoire aus Italien und Flamen ausgiebig genutzt, doch waren die kommerziellen Wege für die Beziehung wichtiger als politische Allianzen.

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Der Katalog inventarisiert alle erhaltenen und dokumentierten Quellen zwischen 1490 und 1630 aus dem iberischen und Lateinamerikanischen Raum, die mehrstimmige Ordinariumskompositionen, Requiemskompositionen oder Einzelsätze überliefern mit Quellenbeschreibung und Inhaltsangabe.

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This study presents static measurements of the Ca isotopic composition of standard reference materials SRM 915 a/b on a Triton Plus™ thermal ionization mass spectrometer with a specially developed Faraday cup array allowing simultaneous measurement of 40Ca and 48Ca. The total amount of Ca in all analyses was kept < 1 µg. With this setup the measurement uncertainties were 0.06 ‰ for 40Ca/44Ca and 0.12 ‰ for 48Ca/40Ca. Measuring all isotopes simultaneously better allows to test the internal consistency of different Ca isotope abundances reported in the literature. The exponential law was observed to correct incompletely instrumental mass fractionation. An improved fractionation correction based on the exponential law is proposed. It changes the 40Ca/44Ca ratio of SRM 915a (corrected relative to 42Ca/44Ca = 0.31221; 48Ca/44Ca = 0.08871) from 47.1635 ± 0.0028 to 47.1649 ± 0.0047. The measurements of SRM 915b were performed with different analytical conditions (runs were prolonged till complete filament load depletion). Even if the 40Ca/44Ca ratio of SRM 915b, when corrected with the simple exponential law, appears different (47.1532 ± 0.0038) from that of SRM 915a, it becomes coincident (47.1613 ± 0.0028) when corrected with a second-order refinement. This supports the use of the improved exponential law to obtain internally consistent Ca isotope ratio for natural samples.