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Seaborgium

Chhiùng Wikipedia lòi
(Chhùng-thin-hiong chhṳ Hí (𨭎))
Seaborgium,  106Sg
Kî-pún sin-sit
Miàng, fù-ho Seaborgium, Sg
Seaborgium chhai chû-khì-péu ke vi-chi
Khiâng (sûng-ngièn-chṳ́ fî-kîm-su̍k)
Hoi (hî-yù hi-thí)
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Beryllium (kán-thú kîm-su̍k)
Phìn (lui-kîm-su̍k)
Than (tô-ngièn-chṳ́ fî-kîm-su̍k)
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Fuk (sûng-ngièn-chṳ́ fî-kîm-su̍k)
Nái (hî-yù hi-thí)
Na̍p (kán-kîm-su̍k)
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Technetium (ko-thu kîm-su̍k)
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Cerium (lanthanum-hi)
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Samarium (lanthanum-hi)
Europium (lanthanum-hi)
Gadolinium (lanthanum-hi)
Terbium (lanthanum-hi)
Dysprosium (lanthanum-hi)
Holmium (lanthanum-hi)
Erbium (lanthanum-hi)
Thulium (lanthanum-hi)
Ytterbium (lanthanum-hi)
Lutetium (lanthanum-hi)
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Pha̍k-kîm (ko-thu kîm-su̍k)
Kîm (ko-thu kîm-su̍k)
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Yèn (heu-ko-thu kîm-su̍k)
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Astatine (lui-kîm-su̍k)
Radon (hî-yù hi-thí)
Francium (kán-kîm-su̍k)
Radium (kán-thú kîm-su̍k)
Actinium (actinium-hi)
Thorium (actinium-hi)
Protactinium (actinium-hi)
Uranium (actinium-hi)
Neptunium (actinium-hi)
Plutonium (actinium-hi)
Americium (actinium-hi)
Curium (actinium-hi)
Berkelium (actinium-hi)
Californium (actinium-hi)
Einsteinium (actinium-hi)
Fermium (actinium-hi)
Mendelevium (actinium-hi)
Nobelium (actinium-hi)
Lawrencium (actinium-hi)
Rutherfordium (ko-thu kîm-su̍k)
Dubnium (ko-thu kîm-su̍k)
Seaborgium (ko-thu kîm-su̍k)
Bohrium (ko-thu kîm-su̍k)
Hassium (ko-thu kîm-su̍k)
Meitnerium (unknown chemical properties)
Darmstadtium (unknown chemical properties)
Roentgenium (unknown chemical properties)
Copernicium (ko-thu kîm-su̍k)
Nihonium (unknown chemical properties)
Flerovium (heu-ko-thu kîm-su̍k)
Moscovium (unknown chemical properties)
Livermorium (unknown chemical properties)
Tennessine (unknown chemical properties)
Oganesson (unknown chemical properties)
W

Sg

(Upo)
dubniumSeaborgiumbohrium
ngièn-chṳ́ sì-sú 106
ngièn-chṳ́-liòng [269]
ngièn-su lui-phe̍t   ko-thu kîm-su̍k
Chhu̍k, fûn-khî 6 chhu̍k, d-block
chû-khì period 7
thien-chṳ́ phài-lie̍t [Rn] 5f14 6d4 7s2 (predicted)[1]
per shell 2, 8, 18, 32, 32, 12, 2 (predicted)
vu̍t-lî sin-chṳt
Siông ku-thí (predicted)[2]
Me̍t-thu near Sit-vûn 35.0 g·cm−3 (predicted)[1][3]
Ngièn-chṳ́ sin-chṳt
Yông-fa-su 6, (5), (4), (3), 0[1][3] ​(parenthesized oxidation states are predictions)
Thien-lì-nèn 1st: 757.4 kJ·mol−1
2nd: 1732.9 kJ·mol−1
3rd: 2483.5 kJ·mol−1
(more) (all estimated)[1]
Ngièn-chṳ́ pan-kang empirical: 132 pm (predicted)[1]
Khiung-ka pan-kang 143 pm (estimated)[4]
Miscellanea
Chîn-thí keu-chhobody-centered cubic (bcc)
Body-centered cubic crystal structure for Seaborgium

(predicted)[2]
CAS Registry Number 54038-81-2
Le̍k-sú
Hí-miàng after Glenn T. Seaborg
Fat-hien Lawrence Berkeley National Laboratory (1974)
Chui vún-thin ke thùng-vi-su
Chú vùn-chông: Seaborgium ke thùng-vi-su
iso NA half-life DM DE (MeV) DP
271Sg syn 1.9 min 67% α 8.54 267Rf
33% SF
269Sg syn 3.1+3.7
−1.1
 min
α 8.50(6) 265Rf
267Sg syn 1.4 min 17% α 8.20 263Rf
83% SF
265mSg syn 16.2 s α 8.70 261mRf
265Sg syn 8.9 s α 8.90, 8.84, 8.76 261Rf

Seaborgium (Hon-ngî: 𨭎 ) he yit-chúng fa-ho̍k ngièn-su, fa-ho̍k fù-ho vì Sg, ngièn-chṳ́ su-muk he 106.

Chhâm-kháu chṳ̂-liau

[phiên-siá | kói ngièn-sṳ́-mâ]
  1. 1.0 1.1 1.2 1.3 1.4 Hoffman, Darleane C.; Lee, Diana M.; Pershina, Valeria (2006). "Transactinides and the future elements". In Morss; Edelstein, Norman M.; Fuger, Jean. The Chemistry of the Actinide and Transactinide Elements (3rd pán.). Dordrecht, The Netherlands: Springer Science+Business Media. ISBN 1-4020-3555-1. 
  2. 2.0 2.1 Östlin, A.; Vitos, L. (2011). "First-principles calculation of the structural stability of 6d transition metals". Physical Review B 84 (11). Bibcode:2011PhRvB..84k3104O. doi:10.1103/PhysRevB.84.113104. 
  3. 3.0 3.1 Fricke, Burkhard (1975). "Superheavy elements: a prediction of their chemical and physical properties". Recent Impact of Physics on Inorganic Chemistry 21: 89–144. doi:10.1007/BFb0116498. 4 October 2013 chhà-khon. 
  4. Chemical Data. Seaborgium – Sg, Royal Chemical Society