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Rutherfordium

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Rutherfordi   104Rf
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Hafni

Rutherfordi

(Uph)
LawrenciRutherfordiDubni
gái-huóng
miàng-cê·hù-hô̤·sê̤ṳ-só Rutherfordi (rutherfordium)·Rf·104
nguòng-só lôi-biék guó-dô gĭng-sṳ̆k
cŭk·ciŭ-gĭ·kṳ̆ 4·7·d
nguòng-cṳ̄-liông [267]
diêng-cṳ̄ bà̤-buó

[Rn] 5f14 6d2 7s2
2, 8, 18, 32, 32, 10, 2

Rutherfordi gì diêng cṳ̄ cèng (2, 8, 18, 32, 32, 10, 2)
Rutherfordi gì diêng cṳ̄ cèng (2, 8, 18, 32, 32, 10, 2)
Lĭk-sṳ̄
huák-hiêng Joint Institute for Nuclear Research(1964 nièng)
ŭk-lī séng-cék
ŭk-tái gó-tā̤(predicted)[1][2]
mĭk-dô̤ (ciék-gê̤ṳng sék-ŭng)
23.2 g·cm−3
iòng-diēng 2400 K,2100 °C,3800 °F
bé-diēng 5800 K,5500 °C,9900 °F
cĭng-ké-ák
nguòng-cṳ̄ séng-cék
iōng-huá-tái 4,[1] (3), (2)[2][3]
((parenthesized numbers are predictions))
diêng-liê-nèng

dâ̤ 1: {{{1st ionization energy}}} kJ·mol−1
dâ̤ 2: {{{2nd ionization energy}}} kJ·mol−1

dâ̤ 3: {{{3rd ionization energy}}} kJ·mol−1
nguòng-cṳ̄ buáng-géng 150 pm
gê̤ṳng-gá buáng-géng 157 pm
((estimated)[1])
gì-tă
cĭng-tā̤ giék-gáiu

hexagonal close-packed


(predicted)[4]
CAS hô̤ 53850-36-5
có̤i ūng-diâng gì dùng-ôi-só


dùng-ôi-só hŭng-dô buáng-sŏi-gĭ huŏng-sék nèng-liôngMeV sāng-ŭk
261Rf syn 70 s[5] >80% α 8.28 257No
<15% ε 261Lr
<10% SF
263Rf syn 15 min[5] <100% SF
~30% α 7.90 ? 259No
265Rf syn 1.0模板:Su min[6][7][8] SF
266Rf? syn 10? h SF?/α?
267Rf syn 1.3 h[5] SF
268Rf? syn 6? h SF?/α?

Rutherfordium sê siŏh cṳ̄ng gĭng-sṳ̆k, iâ sê siŏh cṳ̄ng huá-hŏk nguòng-só. Nguòng-cṳ̄ sê̤ṳ-só sê 104, huá-hŏk hù-hô̤ sê Rf.

Huá-hŏk séng-cék

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Éng-ê̤ṳng

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Cié-chṳ̄

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Chăng-kō̤ cṳ̆-lâiu

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  1. 1.0 1.1 1.2 Īng-ê̤ṳng chó̤-nguô: Ù-hâu gì <ref> biĕu-chiĕng; gó muôi dêng-ngiê miàng-cê sê rsc gì chăng-kō̤ ùng-hióng nó̤i-ṳ̀ng ùng-cê.
  2. 2.0 2.1 Īng-ê̤ṳng chó̤-nguô: Ù-hâu gì <ref> biĕu-chiĕng; gó muôi dêng-ngiê miàng-cê sê Haire gì chăng-kō̤ ùng-hióng nó̤i-ṳ̀ng ùng-cê.
  3. Īng-ê̤ṳng chó̤-nguô: Ù-hâu gì <ref> biĕu-chiĕng; gó muôi dêng-ngiê miàng-cê sê BFricke gì chăng-kō̤ ùng-hióng nó̤i-ṳ̀ng ùng-cê.
  4. Östlin, A.; Vitos, L. First-principles calculation of the structural stability of 6d transition metals. Physical Review B. 2011, 84 (11). Bibcode:2011PhRvB..84k3104O. doi:10.1103/PhysRevB.84.113104. 
  5. 5.0 5.1 5.2 模板:Citeweb
  6. Ellison, P.; Gregorich, K.; Berryman, J.; Bleuel, D.; Clark, R.; Dragojević, I.; Dvorak, J.; Fallon, P. dēng. New Superheavy Element Isotopes: 242Pu(48Ca,5n)285114. Physical Review Letters. 2010, 105 (18): 182701. Bibcode:2010PhRvL.105r2701E. PMID 21231101. doi:10.1103/PhysRevLett.105.182701. 
  7. http://cyclotron.tamu.edu/she2015/assets/pdfs/presentations/Utyonkov_SHE_2015_TAMU.pdf
  8. Utyonkov, V. K.; Brewer, N. T.; Oganessian, Yu. Ts.; Rykaczewski, K. P.; Abdullin, F. Sh.; Dmitriev, S. N.; Grzywacz, R. K.; Itkis, M. G.; Miernik, K.; Polyakov, A. N.; Roberto, J. B.; Sagaidak, R. N.; Shirokovsky, I. V.; Shumeiko, M. V.; Tsyganov, Yu. S.; Voinov, A. A.; Subbotin, V. G.; Sukhov, A. M.; Sabel'nikov, A. V.; Vostokin, G. K.; Hamilton, J. H.; Stoyer, M. A.; Strauss, S. Y. Experiments on the synthesis of superheavy nuclei 284Fl and 285Fl in the 239,240Pu + 48Ca reactions. Physical Review C. 15 September 2015, 92 (3). doi:10.1103/PhysRevC.92.034609.