Kuriom

Kuriom (Cm)

chemical element with the atomic number of 96
Atomic Number96
Atomic Weight247
Niver mas231
Group
Period7
Blockf
Proton96 p+
Neutron135 n0
Elektron96 e-
Animated Bohr model of Cm (Kuriom)

Physical Property

Atomic Radius
molar volume
Covalent Radius
Metallic Radius
ionic radius
Crystal Radius
Van der Waals radius
density

Chemical Property

energiezh
proton affinity
electron affinity
ionization energy
ionization energy of Cm (Kuriom)
enthalpy of vaporization
enthalpy of fusion
standard enthalpy of formation
Elektron
electron shell2, 8, 18, 32, 25, 9, 2
Bohr model: Cm (Kuriom)
valence electron2
Lewis structure: Cm (Kuriom)
electron configuration[Rn] 5f7 6d1 7s2
1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6 5s2 4d10 5p6 6s2 4f14 5d10 6p6 5f7 6d1 7s2
Enhanced Bohr model of Cm (Kuriom)
Orbital Diagram of Cm (Kuriom)
oxidation number3, 4, 5, 6
electronegativity
Electrophilicity Index
fundamental state of matter
phase of matterSolid
gaseous state of matter
Boiling Point
Melting Point
critical pressure
critical temperature
Poent tric'hement
appearance
liv
Silver
appearancesilvery metallic, glows purple in the dark
refractive index
thermodynamic material property
Thermal Conductivity
thermal expansion
molar heat capacity
Specific Heat Capacity
heat capacity ratio
electrical properties
type
electrical conductivity
electrical resistivity
superconductivity
Gwarellegezh
type
magnetic susceptibility (Mass)
magnetic susceptibility (Molar)
magnetic susceptibility (Volume)
magnetic ordering
Curie temperature
Néel temperature
framm
Crystal StructureSimple Hexagonal ()
lattice constant
Lattice Anglesπ/2, π/2, 2 π/3
mechanical property
hardness
bulk modulus
shear modulus
Young's modulus
Poisson's ratio
speed of sound
rummatadur
CategoryActinides, Actinides
CAS Group
IUPAC Group
Glawe Number40
Mendeleev Number28
Pettifor Number41
Geochemical Class
Goldschmidt classificationsynthetic

other

Gas Basicity
polarizability
C6 Dispersion Coefficient
allotrope
Neutron cross section
60
Neutron Mass Absorption
quantum number9D2
space group194 (P63/mmc)

Isotopes of Curium

Stable Isotopes0
Unstable Isotopes22
Natural Isotopes0

231Cm

Niver mas231
niver a neutron135
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
spin3/2
nuclear quadrupole moment
time of discovery or invention
parity+

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)
α (α emission)

232Cm

Niver mas232
niver a neutron136
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
spin0
nuclear quadrupole moment
0
time of discovery or invention
parity+

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)
α (α emission)

233Cm

Niver mas233
niver a neutron137
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
27 ± 10 s
spin3/2
nuclear quadrupole moment
time of discovery or invention2001
parity+

decay modeintensity
α (α emission)20%
β+ (β+ decay; β+ = ϵ + e+)80%

234Cm

Niver mas234
niver a neutron138
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
52 ± 9 s
spin0
nuclear quadrupole moment
0
time of discovery or invention2001
parity+

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)71%
α (α emission)27%
SF (spontaneous fission)2%

235Cm

Niver mas235
niver a neutron139
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
7 ± 3 m
spin5/2
nuclear quadrupole moment
time of discovery or invention1981
parity+

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)
α (α emission)4%

236Cm

Niver mas236
niver a neutron140
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
6,8 ± 0,8 m
spin0
nuclear quadrupole moment
0
time of discovery or invention2010
parity+

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)82%
α (α emission)18%
SF (spontaneous fission)

237Cm

Niver mas237
niver a neutron141
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
spin5/2
nuclear quadrupole moment
time of discovery or invention2002
parity+

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)
α (α emission)

238Cm

Niver mas238
niver a neutron142
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
2,2 ± 0,4 h
spin0
nuclear quadrupole moment
0
time of discovery or invention1994
parity+

decay modeintensity
ϵ (electron capture)
α (α emission)3.84%
SF (spontaneous fission)0.048%

239Cm

Niver mas239
niver a neutron143
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
2,5 ± 0,4 h
spin7/2
nuclear quadrupole moment
time of discovery or invention1952
parity-

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)100%
α (α emission)6.2%

240Cm

Niver mas240
niver a neutron144
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
30,4 ± 3,7 d
spin0
nuclear quadrupole moment
0
time of discovery or invention1949
parity+

decay modeintensity
α (α emission)100%
ϵ (electron capture)
SF (spontaneous fission)3.9%

241Cm

Niver mas241
niver a neutron145
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
32,8 ± 0,2 d
spin1/2
nuclear quadrupole moment
0
time of discovery or invention1952
parity+

decay modeintensity
ϵ (electron capture)99%
α (α emission)1%

242Cm

Niver mas242
niver a neutron146
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
162,8 ± 0,2 d
spin0
nuclear quadrupole moment
0
time of discovery or invention1949
parity+

decay modeintensity
α (α emission)100%
SF (spontaneous fission)6.2%
34Si1.1%
+ (double β+ decay)

243Cm

Niver mas243
niver a neutron147
Relative Atomic Mass
g-factor
0,16 ± 0,032
natural abundance
radioactivity☢️ radioactive element
half-life
29,1 ± 0,1 y
spin5/2
nuclear quadrupole moment
time of discovery or invention1950
parity+

decay modeintensity
α (α emission)100%
ϵ (electron capture)0.29%
SF (spontaneous fission)5.3%

244Cm

Niver mas244
niver a neutron148
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
18,11 ± 0,03 y
spin0
nuclear quadrupole moment
0
time of discovery or invention1950
parity+

decay modeintensity
α (α emission)100%
SF (spontaneous fission)1.37%

245Cm

Niver mas245
niver a neutron149
Relative Atomic Mass
g-factor
0,14285714285714 ± 0,028571428571429
natural abundance
radioactivity☢️ radioactive element
half-life
8,25 ± 0,07 ky
spin7/2
nuclear quadrupole moment
time of discovery or invention1954
parity+

decay modeintensity
α (α emission)100%
SF (spontaneous fission)6.1%

246Cm

Niver mas246
niver a neutron150
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
4,706 ± 0,04 ky
spin0
nuclear quadrupole moment
0
time of discovery or invention1954
parity+

decay modeintensity
α (α emission)99.97385%
SF (spontaneous fission)0.02615%

247Cm

Niver mas247
niver a neutron151
Relative Atomic Mass
g-factor
0,08 ± 0,015555555555556
natural abundance
radioactivity☢️ radioactive element
half-life
15,6 ± 0,5 My
spin9/2
nuclear quadrupole moment
time of discovery or invention1954
parity-

decay modeintensity
α (α emission)100%

248Cm

Niver mas248
niver a neutron152
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
348 ± 6 ky
spin0
nuclear quadrupole moment
0
time of discovery or invention1956
parity+

decay modeintensity
α (α emission)91.61%
SF (spontaneous fission)8.39%
(double β decay)

249Cm

Niver mas249
niver a neutron153
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
64,15 ± 0,03 m
spin1/2
nuclear quadrupole moment
0
time of discovery or invention1956
parity+

decay modeintensity
β (β decay)100%

250Cm

Niver mas250
niver a neutron154
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
spin0
nuclear quadrupole moment
0
time of discovery or invention1966
parity+

decay modeintensity
SF (spontaneous fission)74%
α (α emission)
β (β decay)

251Cm

Niver mas251
niver a neutron155
Relative Atomic Mass
g-factor
natural abundance
radioactivity☢️ radioactive element
half-life
16,8 ± 0,2 m
spin3/2
nuclear quadrupole moment
time of discovery or invention1978
parity+

decay modeintensity
β (β decay)100%

252Cm

Niver mas252
niver a neutron156
Relative Atomic Mass
g-factor
0
natural abundance
radioactivity☢️ radioactive element
half-life
spin0
nuclear quadrupole moment
0
time of discovery or invention
parity+

decay modeintensity
β (β decay)
α (α emission)
Cm-Fluoreszenz

istor

dizoloer pe ijinerG.T.Seaborg, R.A.James, A.Ghiorso
location of discoveryUnited States
time of discovery or invention1944
EtimologiezhNamed in honor of Pierre and Marie Curie.
pronunciationKYOOR-i-em (saozneg)

mammenn

Abundance
Abundance in Earth's crust
natural abundance (meurvor)
natural abundance (human body)
0 %
natural abundance (meteoroid)
0 %
natural abundance (Heol)
0 %
Abundance in Universe
0 %

Nuclear Screening Constants