Radon

Radon (Rn)

chemical element with the atomic number of 86
Atomic Number86
Atomic Weight222
Nombor jisim193
Group18
Period6
Blockp
proton86 p+
neutron107 n0
Elektron86 e-
Animated Model Bohr of Rn (Radon)

Sifat Fizikal

Jejari Atom
molar volume
Jejari kovalen
Metallic Radius
ionic radius
Crystal Radius
Jejari van der Waals
ketumpatan

Sifat Kimia

tenaga
proton affinity
Pertalian elektron
ionization energy
ionization energy of Rn (Radon)
Entalpi pengewapan
entalpi pelakuran
standard enthalpy of formation
Elektron
Petala elektron2, 8, 18, 32, 18, 8
Model Bohr: Rn (Radon)
Elektron valens8
Teori ion Lewis: Rn (Radon)
tatarajah elektron[Xe] 4f14 5d10 6s2 6p6
1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6 5s2 4d10 5p6 4f14 5d10 6s2 6p6
Enhanced Model Bohr of Rn (Radon)
Orbital Diagram of Rn (Radon)
Keadaan pengoksidaan2, 6
Keelektronegatifan
Electrophilicity Index
keadaan jirim asas
fasa jirimGas
gaseous state of matterMonoatomic
Boiling Point
Melting Point
critical pressure
critical temperature
triple point
rupa
warna
Colorless
rupacolorless gas, occasionally glows green or red in discharge tubes
indeks biasan
sifat bahan
Thermal Conductivity
Pengembangan terma
molar heat capacity
Specific Heat Capacity
heat capacity ratio5/3
electrical properties
type
Kekonduksian elektrik
Kerintangan dan kekonduksian elektrik
Kesuperkonduksian
kemagnetan
type
magnetic susceptibility (Mass)
magnetic susceptibility (Molar)
magnetic susceptibility (Volume)
magnetic ordering
Suhu Curie
Néel temperature
struktur
Crystal Structure (FCC)
lattice constant
Lattice Angles
mechanical property
hardness
Modulus pukal
shear modulus
Young's modulus
Nisbah Poisson
Kelajuan bunyi
pengelasan
CategoryNoble gases, Noble gases
CAS GroupVIII
IUPAC GroupVIIIA
Glawe Number6
Mendeleev Number117
Pettifor Number6
Geochemical ClassU/Th decay series
Goldschmidt classificationsynthetic

other

Gas Basicity
polarizability
C6 Dispersion Coefficient
allotrope
Neutron cross section
0.7
Neutron Mass Absorption
Nombor kuantum1S0
space group ()

Isotopes of Radon

Stable Isotopes0
Unstable Isotopes39
Natural Isotopes0

193Rn

Nombor jisim193
nombor neutron107
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
1.15 ± 0.27 ms
Spin3/2
nuclear quadrupole moment
tarikh penemuan2006
parity-

decay modeKeamatan (fizik)
α (α emission)100%

194Rn

Nombor jisim194
nombor neutron108
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
780 ± 160 us
Spin0
nuclear quadrupole moment
0
tarikh penemuan2006
parity+

decay modeKeamatan (fizik)
α (α emission)100%
β+ (β+ decay; β+ = ϵ + e+)

195Rn

Nombor jisim195
nombor neutron109
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
7 ± 3 ms
Spin3/2
nuclear quadrupole moment
tarikh penemuan2001
parity-

decay modeKeamatan (fizik)
α (α emission)100%

196Rn

Nombor jisim196
nombor neutron110
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
4.7 ± 1.1 ms
Spin0
nuclear quadrupole moment
0
tarikh penemuan1995
parity+

decay modeKeamatan (fizik)
α (α emission)100%
β+ (β+ decay; β+ = ϵ + e+)

197Rn

Nombor jisim197
nombor neutron111
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
54 ± 6 ms
Spin3/2
nuclear quadrupole moment
tarikh penemuan1995
parity-

decay modeKeamatan (fizik)
α (α emission)100%
β+ (β+ decay; β+ = ϵ + e+)

198Rn

Nombor jisim198
nombor neutron112
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
64.4 ± 1.6 ms
Spin0
nuclear quadrupole moment
0
tarikh penemuan1984
parity+

decay modeKeamatan (fizik)
α (α emission)93%
β+ (β+ decay; β+ = ϵ + e+)

199Rn

Nombor jisim199
nombor neutron113
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
590 ± 30 ms
Spin3/2
nuclear quadrupole moment
tarikh penemuan1980
parity-

decay modeKeamatan (fizik)
α (α emission)100%
β+ (β+ decay; β+ = ϵ + e+)

200Rn

Nombor jisim200
nombor neutron114
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
1.09 ± 0.16 s
Spin0
nuclear quadrupole moment
0
tarikh penemuan1971
parity+

decay modeKeamatan (fizik)
α (α emission)92%
β+ (β+ decay; β+ = ϵ + e+)

201Rn

Nombor jisim201
nombor neutron115
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
7 ± 0.4 s
Spin3/2
nuclear quadrupole moment
tarikh penemuan1967
parity-

decay modeKeamatan (fizik)
α (α emission)
β+ (β+ decay; β+ = ϵ + e+)

202Rn

Nombor jisim202
nombor neutron116
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
9.7 ± 0.1 s
Spin0
nuclear quadrupole moment
0
tarikh penemuan1967
parity+

decay modeKeamatan (fizik)
α (α emission)78%
β+ (β+ decay; β+ = ϵ + e+)

203Rn

Nombor jisim203
nombor neutron117
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
44.2 ± 1.6 s
Spin3/2
nuclear quadrupole moment
tarikh penemuan1967
parity-

decay modeKeamatan (fizik)
α (α emission)66%
β+ (β+ decay; β+ = ϵ + e+)34%

204Rn

Nombor jisim204
nombor neutron118
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
1.242 ± 0.023 m
Spin0
nuclear quadrupole moment
0
tarikh penemuan1967
parity+

decay modeKeamatan (fizik)
α (α emission)72.4%
β+ (β+ decay; β+ = ϵ + e+)

205Rn

Nombor jisim205
nombor neutron119
Jisim Atom Relatif
g-factor
0.3192 ± 0.00064
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
170 ± 4 s
Spin5/2
nuclear quadrupole moment
0.062 ± 0.006
tarikh penemuan1967
parity-

decay modeKeamatan (fizik)
β+ (β+ decay; β+ = ϵ + e+)75.4%
α (α emission)24.6%

206Rn

Nombor jisim206
nombor neutron120
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
5.67 ± 0.17 m
Spin0
nuclear quadrupole moment
0
tarikh penemuan1954
parity+

decay modeKeamatan (fizik)
α (α emission)62%
β+ (β+ decay; β+ = ϵ + e+)38%

207Rn

Nombor jisim207
nombor neutron121
Jisim Atom Relatif
g-factor
0.32496 ± 0.00064
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
9.25 ± 0.17 m
Spin5/2
nuclear quadrupole moment
0.22 ± 0.02
tarikh penemuan1954
parity-

decay modeKeamatan (fizik)
β+ (β+ decay; β+ = ϵ + e+)79%
α (α emission)21%

208Rn

Nombor jisim208
nombor neutron122
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
24.35 ± 0.14 m
Spin0
nuclear quadrupole moment
0
tarikh penemuan1955
parity+

decay modeKeamatan (fizik)
α (α emission)62%
β+ (β+ decay; β+ = ϵ + e+)38%

209Rn

Nombor jisim209
nombor neutron123
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
28.8 ± 1 m
Spin5/2
nuclear quadrupole moment
tarikh penemuan1952
parity-

decay modeKeamatan (fizik)
β+ (β+ decay; β+ = ϵ + e+)83%
α (α emission)17%

210Rn

Nombor jisim210
nombor neutron124
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
2.4 ± 0.1 h
Spin0
nuclear quadrupole moment
0
tarikh penemuan1952
parity+

decay modeKeamatan (fizik)
α (α emission)96%
β+ (β+ decay; β+ = ϵ + e+)

211Rn

Nombor jisim211
nombor neutron125
Jisim Atom Relatif
g-factor
1.1968 ± 0.0024
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
14.6 ± 0.2 h
Spin1/2
nuclear quadrupole moment
0
tarikh penemuan1952
parity-

decay modeKeamatan (fizik)
β+ (β+ decay; β+ = ϵ + e+)72.6%
α (α emission)27.4%

212Rn

Nombor jisim212
nombor neutron126
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
23.9 ± 1.2 m
Spin0
nuclear quadrupole moment
0
tarikh penemuan1950
parity+

decay modeKeamatan (fizik)
α (α emission)100%

213Rn

Nombor jisim213
nombor neutron127
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
19.5 ± 0.1 ms
Spin9/2
nuclear quadrupole moment
tarikh penemuan1967
parity+

decay modeKeamatan (fizik)
α (α emission)100%

214Rn

Nombor jisim214
nombor neutron128
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
259 ± 3 ns
Spin0
nuclear quadrupole moment
0
tarikh penemuan1970
parity+

decay modeKeamatan (fizik)
α (α emission)100%

215Rn

Nombor jisim215
nombor neutron129
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
2.3 ± 0.1 us
Spin9/2
nuclear quadrupole moment
tarikh penemuan1952
parity+

decay modeKeamatan (fizik)
α (α emission)100%

216Rn

Nombor jisim216
nombor neutron130
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
29 ± 4 us
Spin0
nuclear quadrupole moment
0
tarikh penemuan1949
parity+

decay modeKeamatan (fizik)
α (α emission)100%

217Rn

Nombor jisim217
nombor neutron131
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
593 ± 38 us
Spin9/2
nuclear quadrupole moment
tarikh penemuan1949
parity+

decay modeKeamatan (fizik)
α (α emission)100%

218Rn

Nombor jisim218
nombor neutron132
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
33.75 ± 0.15 ms
Spin0
nuclear quadrupole moment
0
tarikh penemuan1948
parity+

decay modeKeamatan (fizik)
α (α emission)100%

219Rn

Nombor jisim219
nombor neutron133
Jisim Atom Relatif
g-factor
-0.17596 ± 0.00048
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
3.96 ± 0.01 s
Spin5/2
nuclear quadrupole moment
1.15 ± 0.12
tarikh penemuan1903
parity+

decay modeKeamatan (fizik)
α (α emission)100%

220Rn

Nombor jisim220
nombor neutron134
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
55.6 ± 0.1 s
Spin0
nuclear quadrupole moment
0
tarikh penemuan1900
parity+

decay modeKeamatan (fizik)
α (α emission)100%
(double β decay)

221Rn

Nombor jisim221
nombor neutron135
Jisim Atom Relatif
g-factor
-0.0057428571428571 ± 0.00017142857142857
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
25.7 ± 0.5 m
Spin7/2
nuclear quadrupole moment
-0.47 ± 0.05
tarikh penemuan1956
parity+

decay modeKeamatan (fizik)
β (β decay)78%
α (α emission)22%

222Rn

Nombor jisim222
nombor neutron136
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
3.8215 ± 0.0002 d
Spin0
nuclear quadrupole moment
0
tarikh penemuan1899
parity+

decay modeKeamatan (fizik)
α (α emission)100%

223Rn

Nombor jisim223
nombor neutron137
Jisim Atom Relatif
g-factor
-0.22057142857143 ± 0.0022857142857143
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
24.3 ± 0.4 m
Spin7/2
nuclear quadrupole moment
0.8 ± 0.08
tarikh penemuan1964
parity+

decay modeKeamatan (fizik)
β (β decay)100%
α (α emission)

224Rn

Nombor jisim224
nombor neutron138
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
107 ± 3 m
Spin0
nuclear quadrupole moment
0
tarikh penemuan1964
parity+

decay modeKeamatan (fizik)
β (β decay)100%

225Rn

Nombor jisim225
nombor neutron139
Jisim Atom Relatif
g-factor
-0.198 ± 0.0022857142857143
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
4.66 ± 0.04 m
Spin7/2
nuclear quadrupole moment
0.84 ± 0.08
tarikh penemuan1969
parity-

decay modeKeamatan (fizik)
β (β decay)100%

226Rn

Nombor jisim226
nombor neutron140
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
7.4 ± 0.1 m
Spin0
nuclear quadrupole moment
0
tarikh penemuan1969
parity+

decay modeKeamatan (fizik)
β (β decay)100%

227Rn

Nombor jisim227
nombor neutron141
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
20.2 ± 0.4 s
Spin3/2
nuclear quadrupole moment
tarikh penemuan1986
parity+

decay modeKeamatan (fizik)
β (β decay)100%

228Rn

Nombor jisim228
nombor neutron142
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
65 ± 2 s
Spin0
nuclear quadrupole moment
0
tarikh penemuan1989
parity+

decay modeKeamatan (fizik)
β (β decay)100%

229Rn

Nombor jisim229
nombor neutron143
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
11.9 ± 1.3 s
Spin5/2
nuclear quadrupole moment
tarikh penemuan2009
parity+

decay modeKeamatan (fizik)
β (β decay)100%

230Rn

Nombor jisim230
nombor neutron144
Jisim Atom Relatif
g-factor
0
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
Spin0
nuclear quadrupole moment
0
tarikh penemuan2010
parity+

decay modeKeamatan (fizik)
β (β decay)

231Rn

Nombor jisim231
nombor neutron145
Jisim Atom Relatif
g-factor
natural abundance
Reputan radioaktif☢️ radioactive element
setengah hayat
Spin1/2
nuclear quadrupole moment
0
tarikh penemuan2010
parity+

decay modeKeamatan (fizik)
β (β decay)
Radon water apparatus P1120815.JPG
Radon spectrum visible

sejarah

penemu atau perekaFredrich Ernst Dorn
tempat penemuanGermany
tarikh penemuan1898
EtimologiVariation of the name of another element, radium.
sebutanRAY-don (Inggeris)

sumber

Abundance
Abundance in Earth's crust
natural abundance (lautan)
natural abundance (Tubuh manusia)
natural abundance (Meteoroid)
natural abundance (Matahari)
Abundance in Universe
0 %

Nuclear Screening Constants

1s1.6659
2p4.562
2s22.5864
3d13.4027
3p23.7194
3s24.9149
4d38.0572
4f37.6688
4p36.6988
4s35.85
5d58.647
5p54.029
5s52.107
6p69.9242
6s67.676