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  1. en.wikipedia.org › wiki › Gao_GuiyingGao Guiying - Wikipedia

    高桂英. Died. 1647. Nationality. Shun dynasty. Occupation. Military commander. Gao Guiying ( Chinese: 高桂英) (died 1647) was a female Chinese rebellion leader and military commander of the short-lived Shun dynasty. [1] [2] She was the empress of the Shun founding emperor Li Zicheng.

  2. 8 lug 2015 · July 08, 2015. Gao Guiying was a Chinese revolutionary general who fought against the Ming and Qing dynasties during the early 17th century. Gao was raised in Mizhi City at a time when the Ming dynasty that had ruled China for nearly 3 centuries was struggling to hold onto power in the face of numerous popular rebellions.

  3. Gao Guiyng (died 1647) was a female Chinese revolutionary, rebellion-leader and army-commander. From the beginning of the 17th century, the Ming dynasty - China was decaying during a large number of rebellions, the greatest one being the rebellion of Li Zicheng, who gathered a very large army of...

  4. Gao Guiying 高桂英 (Muerta en 1647) fue una líder rebelde china, y comandante militar. [1] [2] Biografía. Desde principios del siglo XVII, la Dinastía Ming se encontraba en decadencia y afrontando gran número de rebeliones campesinas, siendo una de las más grandes la organizada por Li Zicheng, quién reunió con creciente éxito año a año un gran ejército de seguidores descontentos.

  5. 19 apr 2022 · GuiYing Ma and her husband, Zhanxin Gao, had ventured out of their city of Fushun, in northeastern China, only a handful of times. They were both 56 years old, childhood schoolmates whose lives...

  6. 6 nov 2019 · Gao Guiying, combattante révoltée. Révolutionnaire chinoise, Gao Guiying(? – 1647) se révolte contre la dynastie Ming avec son mari ; elle mène des troupes entièrement féminines au combat au début du 17e siècle. Rencontre avec Li Zicheng. Palais temporaire de Li Zicheng dans le Shaanxi © Sunatnight.

  7. 16 giu 2020 · Initial protonation and hydration of methylglyoxal lead to formation of diols/tetrol, and subsequent protonation and dehydration of diols/tetrol yield carbenium ions, which represent the key intermediates for formation and propagation of oligomerization. On the other hand, our results reveal that the previously proposed oligomerization via ...