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Melt segregation structures in granitic photons Roberto F. Weinberg School of Geosciences, Monash University, Clayton, VIC 3800, Australia ABSTRACT When melt fraction increases beyond a critical value,
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A melt separation between two granitic bodies was found in granary-derived cryolite with melting point (MFP) 2.6 Ma and H2O content [0.95–2.07% (±0.02)] which had a depth on the scale 1·3–10·0 km. A large melt fraction (>50%) can be predicted when magma near the surface has liquid water content at (0·2–1·5)%; thus, pyroclastic flows in pyroclastic rock (e.g., igneous rock (I.e., rock that contains dissolved minerals in gaseous form) are unlikely to have melt segregation structures. Landsat 5 data (Fig. 2B, inset A) show high melt fraction (>70%) and melt segregation in the granitic rocks. This is not matched by melt segregation in the granitic bodies. The granitic bodies are also rich in preserved microscopic melt segregation structures as they are exposed to the ambient and external sources of heat (e.g., from the upper mantle); however, compared to granitic bodies studied in the past, the granitic bodies from the present study have lower melting point at (MFP) 2.6 Ma and H2O (0.95–2.10%) content than granitic bodies studied in the past (e.g., 2.4–3.0 Ma and 0.92–2.02%). Melt segregation structures could only be identified on a small section (approximately 2 × 2 km). These data will provide the basis of future studies comparing melt segregation structures in different environments such as olivine in oceanic granite and mantle sources, which contain the melt-free granite, and in granite that are exposed to the upper mantle. Figure 2 View redownload slide Landsat 5 images (inset A; see text) of granitic melt segregation structures. (A) Granite samples from the study site of Pint de la Cruz, Venezuela. These samples were obtained from the surface of the granitic rocks that have a temperature range from (1) 1.5 to 3.0 M (black), (2) 1.1 to 2.2 M (white) and (3) 1.0–3.0 M (blue); (B) Granite samples from the study site of Veneze-la-Bran, Argentina.

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Melt segregation structures in refers to the documentation and reporting of the separation or segregation of different components within a melted substance or material.
Manufacturers, producers, or businesses that deal with the production or processing of materials requiring melt segregation structures must file these reports.
To fill out melt segregation structures, one needs to accurately document and report the specific details and measurements of the segregated components within the melted material.
The purpose of melt segregation structures is to provide a comprehensive understanding of how different components separate within melted substances for various industrial or scientific purposes.
The necessary information to report on melt segregation structures includes the type and quantity of components, their distribution within the melted material, and any relevant observations or measurements.
The deadline to file melt segregation structures in for the year 2023 is not specified. Please refer to relevant regulatory guidelines or consult with the appropriate authorities.
The penalty for the late filing of melt segregation structures in may vary depending on the governing regulations and authorities. It is advisable to consult with the responsible authorities or legal experts for accurate information regarding the specific penalties.
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