In the Hollow Area, Kirito encountered a hollow clone of Sachi. After Kirito met her at the location several times, Sachi told Kirito that she must fight and thus Kirito and Sachi grouped up. Then, according to Sachi's instruction, they went to a location within the Great Void which looked very similar to the place where Sachi died. Despite feeling very afraid, as Kirito held her hand to calm her down, Sachi still decided to carry on. If the player clears the designated monsters, Sachi will ask Kirito if she had fought well and claim that she was no longer afraid. She then shared her gratitude, which the real Sachi was unable to share with Kirito when she was alive, and hope that Kirito could live on without being hindered by the trauma. After these events, the player can partner with Sachi in that location within Hollow Area.

The final stage will take place in Cordia Outer Garden. The moment you activate the mission from the console, the hollow mission will be triggered automatically. Please note this specific stage cannot be completed in multiplayer mode.


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In this work, the boronate-affinity hollow stannic oxide based fragment template molecularly imprinted polymers (Bh@SnO2-FMIPs) were fabricated successfully. Polystyrene was used as sacrificial support, SnO2 was selected as inorganic matrix, surface imprinting using catechol as fragment template and 4-vinylphenylboronic acid as boronate-affinity functional monomer. A thin layer of poly 2-anilinoethanol (2-AE) was formed to coat the boronate-affinity hollow SnO2 surface through self-polymerization, it has strong hydrophilicity and limited residual boric acid content, avoiding non-specific binding. The hollow structure could bind to target molecules effectively and facilitate the removal of template molecules. The Bh@SnO2-FMIPs were used to extract three cis-diol polyphenols containing catechin, chlorogenic acid, and caffeic acid in tea and juice samples. Combination with seven characterizations of the material confirmed the successful preparation. Effecting the imprinting conditions and extraction efficiency parameters were optimized separately. Selective and competitive adsorption experiments indicated that the materials could specific recognition polyphenols. Using solid phase extraction and high performance liquid chromatography method, the detection limits were 0.005-0.046 g mL-1 and the recoveries were between 82.3-104.3%. The improved adsorption performance may be assigned to the synergistic effects among boronate-affinity, hollow SnO2, and 2-AE self-polymerization. It may enhance binding cavities, hydrophilicity, biocompatibility of adsorbent material, and prevent the aggregation of Sn during the preparation processes.

Conclusion:  The hollow eye is filled durably in the time. This surgical technique is simple, easily reproducible. The harmonization of outlines and the trophicity are preserved, which gives a much more natural aspect. ff782bc1db

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