Multiple Dirham - Ahmad ibn Muhammad Warwarliz

Emissor Farighunid dynasty
Ano 1010
Tipo Standard circulation coin
Valor Multiple Dirham (7⁄5)
Moeda Dinar (977-1186)
Composição Silver
Peso 10.00 g
Diâmetro
Espessura
Formato Round (irregular)
Técnica Hammered
Orientação
Gravador(es)
Em circulação até
Referência(s) A#K1440
Descrição do anverso
Escrita do anverso Arabic
Legenda do anverso
Descrição do reverso
Escrita do reverso Arabic
Legenda do reverso
Bordo Plain.
Casa da moeda
Tiragem 400 (1010) - -
ID Numisquare 6083252450
Informações adicionais

Historical Context: This Multiple Dirham, issued in 1010 by Ahmad ibn Muhammad Warwarliz of the Farighunid dynasty, marks a pivotal moment in Central Asian history. The Farighunids, local rulers of Chaghaniyan, transitioned from Samanid to Ghaznavid suzerainty by this era. Ahmad's issuance reflects his continued authority under Mahmud of Ghazni. A 'Multiple Dirham' denomination suggests economic stability or a significant local event, highlighting a degree of autonomy within the broader Ghaznavid monetary sphere.

Artistry: Though the engraver is unknown, the coin's artistry adheres to the early 11th-century Islamic numismatic tradition. The design would prominently feature elegant Kufic script, displaying the Shahada on the obverse and the ruler's name, titles, mint, and date on the reverse, often with a Quranic verse. The 'Multiple Dirham' likely allowed for a larger flan, potentially accommodating more expansive or intricate calligraphic arrangements than standard dirhams, while maintaining the primary focus on religious and governmental epigraphy.

Technical/Grading: Optimal grading requires a strong, even strike across the flan. Key high-points include the crispness of the Kufic script, especially ascenders and descenders, and the clear legibility of the mint and date. With a weight of 10.00 gg, this 'Multiple Dirham' would have been struck on a larger planchet, making a full, well-centered strike more challenging. Absence of central weakness, a well-preserved original surface, and minimal circulation wear are crucial for high-grade examples.

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