PENENTUAN NILAI SATURASI MAGNETIK BATUAN PERIDOTIT ASAL DESA AWANG BANGKAL BARAT KABUPATEN BANJAR KALIMANTAN SELATAN

Abstrak : Peridotite rocks are ultra-alkaline rocks that igneous rocks which high in mineral content of FeO, and also a magnetic mineral. Each rock type has specific properties and characteristics are manifested in the magnetic field in magnetic parameters of rocks or minerals. One way to provide an...

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Bibliographic Details
Main Authors: Sudarningsih Sudarningsih, Simon Sadok Siregar, Wenny Habib Ghofallena
Format: Article
Language:English
Published: Lambung Mangkurat University Press 2013-02-01
Series:Jurnal Fisika Flux
Online Access:http://ppjp.unlam.ac.id/journal/index.php/f/article/view/2303
Description
Summary:Abstrak : Peridotite rocks are ultra-alkaline rocks that igneous rocks which high in mineral content of FeO, and also a magnetic mineral. Each rock type has specific properties and characteristics are manifested in the magnetic field in magnetic parameters of rocks or minerals. One way to provide an overview of the composition and type of magnetic minerals in these rocks is to determine the magnetic saturation curve. Giving Isothermal Remanent Magnetism (IRM) is done using instruments Electromagnetic Weiss gradually began to flow 1A, 2A, 3A 10 A, etc., until the sample reaches saturation magnetic intensity. On the measurement of magnetic saturation curve samples will be given a very large magnetic field (until 0.8 T) gradually by using an electromagnet. The intensity of magnetization, as measured by Minispin magnetometer, and then plotted as a function of the magnitude of a given field. The shape of this saturation curve will provide an overview of the composition and type of magnetic minerals that exist in the sample. The results showed that the shape of the IRM curve (remanent magnetic intensity) is reached more quickly saturated the H <300 mT the peridotite rock in the identification of the mineral magnetite. The identification of these magnetic minerals is also based on the curvature of the IRM (remanent magnetic intensity), the composition obtained is Fe3O4. Keywords: peridotite rocks, magnetic saturation, Isothermal Remanent Magnetism (IRM)
ISSN:1829-796X
2541-1713