930 Geschichte des Altertums bis ca. 499, Archäologie
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Institute
The remains of the ancient Roman town, crossed by the Flaminia road and lapped by a bend of the Tiber, are located in a natural landscape of significant beauty, perfect synthesis of archaeology and nature that remained unchanged throughout centuries. Excavations were conducted here from a very early period, especially from 1776 to 1784, when a great quantity of material was removed. The archaeological excavations carried out in Otricoli in the second half of the Seventeenth century together with discoveries in Herculaneum, Pompeii, Stabiae and other cities of ancient Italy, contributed during the Neoclassical period to the rediscovery of classical ideals in art and architecture, partly already rediscovered during Humanism and the Renaissance in Italy.
Die vorliegende Studie beschäftigt sich mit der Konstituierung von amicitia im Mythos und fragt nach der Erzählung als Gabe im amikalen Gabentauschzyklus. Die Hinweise auf amicitia als eine der zentralen Bindungstypen des römischen Gemeinwesens sind über verschiedene Werke verstreut, lassen aber bereits die Wirkkraft erahnen, weil sie rückblickend in die Frühzeit hineingeschrieben wurden. In diesem Zusammenhang wird auch die Bedeutung der Erzählung als Gabe im Gabentauschzyklus untersucht, da diese die Transformation vom Fremden zum Anderen ermöglichen kann; erst auf diese Weise wird eine Grundlage für amicitia geschaffen. Darüber hinaus gelingt erst in der Urvergangenheit des Mythos’ die Perpetuierung von amicitia und dem sie konstituierenden amikalen Gabentausch.
Highlights
• The Munich Procedure, developed for p-XRF data, standardises coefficient corrections.
• It ensures consistent, reproducible data, benefiting specialists in various industries.
• The protocol, documented as R-Skript, enhances accuracy and transparency of p-XRF data.
• Establishing a common baseline fosters discussion and improves the overall understanding of p-XRF.
Abstract
The Munich Procedure, a protocol presented as R code and initially developed on the basis of archaeometric portable X-ray fluorescence (p-XRF) data, offers adaptability and standardisation to evaluate coefficient corrections. These corrections are derived from linear regressions calculated by comparing p-XRF values with laboratory chemical analyses of the same sample set. The versatility of this procedure allows collaboration and ensures consistent data structure. Not tied to specific instrumentation, this approach helps to universally improve the accuracy of p-XRF data, benefiting specialists in a variety of industries. By providing a common baseline for performance evaluation, it enables discussion across different applications.