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Titlebook: Geology Principles & Methods; Jean Dercourt,Jacques Paquet Book 1985 Graham & Trotman 1985 continental drift.fault.orogeny.tectonics.struc

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https://doi.org/10.1007/978-3-322-96411-3Igneous rocks result from the cooling of magma. They can be classified either in terms of the geometrical arrangement of their crystals reflecting the conditions of cooling, or alternatively in terms of their minerals or glass reflecting their chemical composition.
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Dienstleistungsmodellierung 2010Microlithic rocks and the granular rocks associated with them (in, for example, ophiolites) derive from a magma which is formed by the melting of the mantle and which spills out onto the ocean floor. This magma is termed . because it is a primitive magma formed from material that has not previously emerged at the surface of the Earth’s crust.
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https://doi.org/10.1007/978-3-322-99411-0Movements of the Earth’s crust leads, on the scale of geological time, to severe deformations which produce mountains in certain parts of the world. The most recent mountain ranges are on the border line between the continental masses and oceanic areas or between continental masses in places formerly occupied by oceans that have now disappeared.
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Granites and Associated RocksMicrolithic rocks and the granular rocks associated with them (in, for example, ophiolites) derive from a magma which is formed by the melting of the mantle and which spills out onto the ocean floor. This magma is termed . because it is a primitive magma formed from material that has not previously emerged at the surface of the Earth’s crust.
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Structure of the Earth’s InteriorThe study of the Earth’s interior can be approached in two ways:
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Sedimentary FaciesIt must be remembered that most ancient deposits result from complex physicochemical and biological processes in complex environments. However, environments of ancient sedimentation can be reconstructed from field and laboratory observations.
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