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Updated: Jul 9, 2026

08:05
Localized Bathless Metal-Composite Plating via Electrostamping
Published on: September 22, 2020
まとめ
雷の打撃は,2000 Kを超える極端な温度に達することによって,ネイティブのシリコン球を含む非常に減少した材料を作成することができます.これらの発見は,地質学的プロセスと地化学的異常を明らかにします.
科学分野:
- 地質化学 地質化学
- ミネラロジーは,鉱物学です.
- 惑星科学 惑星科学
背景:
- フルグルライトは,雷の打撃によって形成されるガラスのような材料です.
- 最近のミシガン・フルグルライトには,固有のシリコンが豊富な珍しい金属の球粒が含まれています.
研究 の 目的:
- ミシガン州のフルグルライトで発見された珍しい金属の球粒を調査します.
- フルグルライトの形成と極端な還元現象の条件を解明する.
主な方法:
- 形成温度と条件を決定するための熱力学的計算.
- 金属およびシリケート液相の分析.
主要な成果:
- 形成には,2000Kを超える温度と非常に還元条件 (SiO2−Siバッファー) が必要であった.
- ネイティブ・シリコン・グローブルを含む,高度に減少した天然材料を生産した.
- 金属の液体は,プラチナ群の元素を拾い集めました.
結論:
- 雷の打撃は,極端な減少と揮発を引き起こす可能性があります.
- これらの過程は,クレタセアス・テリシアルの境界にあるような地化学的異常を説明する可能性がある.
- 地球上の稲妻は,地球外の衝突に関連した異常に寄与する可能性があります.
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