Лоуренси

Лоуренси (Lr)

chemical element with symbol Lr and atomic number 103
Atomic Number103
Atomic Weight262
mass number251
Group
Period7
Blockf
Протон103 p+
Нейтрон148 n0
Электрон103 e-
Animated Атăмăн Бор моделĕ of Lr (Лоуренси)

Физикăлла Палăрăм

Атом Радиусĕ
molar volume
Ковалентла радиус
Metallic Radius
ionic radius
Crystal Radius
Van der Waals radius
density

Chemical Property

Энерги
proton affinity
electron affinity
ionization energy
ionization energy of Lr (Лоуренси)
Пăсланнин тата конденсациленнин пайлавла ăшши
Шăраннин пайлавла ăшши
standard enthalpy of formation
Электрон
electron shell2, 8, 18, 32, 32, 8, 3
Атăмăн Бор моделĕ: Lr (Лоуренси)
valence electron2
Lewis structure: Lr (Лоуренси)
electron configuration[Rn] 5f14 6d1 7s2
1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6 5s2 4d10 5p6 6s2 4f14 5d10 6p6 5f14 6d1 7s2
Enhanced Атăмăн Бор моделĕ of Lr (Лоуренси)
Orbital Diagram of Lr (Лоуренси)
Оксидлав капашĕ3
Электронегативлăх
Electrophilicity Index
fundamental state of matter
phase of matterSolid
gaseous state of matter
Boiling Point
Melting Point
critical pressure
critical temperature
Виççĕлле пăнчă
appearance
Тӗс
Colorless
appearance
Хуçăлу кăтартăшĕ
thermodynamic material property
Thermal Conductivity
thermal expansion
molar heat capacity
Specific Heat Capacity
heat capacity ratio
electrical properties
type
electrical conductivity
Пайлавла электро хирĕçтăру
superconductivity
Магнетизм
type
magnetic susceptibility (Mass)
magnetic susceptibility (Molar)
magnetic susceptibility (Volume)
magnetic ordering
Curie temperature
Néel temperature
structure
Crystal Structure{ERROR}
Решетке константти
Lattice Angles
mechanical property
hardness
bulk modulus
shear modulus
Юнг модулĕ
Poisson's ratio
Сасă хăвăртлăхĕ
classification
CategoryActinides, Transition metals
CAS Group
IUPAC Group
Glawe Number47
Mendeleev Number42
Pettifor Number34
Geochemical Class
Goldschmidt classificationsynthetic

other

Gas Basicity
Поляризациленеслĕх
C6 Dispersion Coefficient
allotrope
Neutron cross section
Neutron Mass Absorption
quantum number2P1/2
space group ()

Isotopes of Lawrencium

Stable Isotopes0
Unstable Isotopes16
Natural Isotopes0

251Lr

mass number251
neutron number148
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
spin
nuclear quadrupole moment
time of discovery or invention
Ыт-тĕкел (физика)

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

252Lr

mass number252
neutron number149
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
369 ± 75 ms
spin7
nuclear quadrupole moment
time of discovery or invention2001
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)98%
SF (spontaneous fission)2%
β+ (β+ decay; β+ = ϵ + e+)

253Lr

mass number253
neutron number150
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
632 ± 46 ms
spin7/2
nuclear quadrupole moment
time of discovery or invention1985
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)90%
SF (spontaneous fission)1%
β+ (β+ decay; β+ = ϵ + e+)

254Lr

mass number254
neutron number151
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
12 ± 0,9 s
spin4
nuclear quadrupole moment
time of discovery or invention1981
Ыт-тĕкел (физика)+

decay modeintensity
α (α emission)71.7%
β+ (β+ decay; β+ = ϵ + e+)28.3%
SF (spontaneous fission)0.1%

255Lr

mass number255
neutron number152
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
31,1 ± 1,1 s
spin1/2
nuclear quadrupole moment
0
time of discovery or invention1971
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)99.7%
β+ (β+ decay; β+ = ϵ + e+)0.3%
SF (spontaneous fission)

256Lr

mass number256
neutron number153
Relative Atomic Mass
g-factor
0
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
27,9 ± 1 s
spin0
nuclear quadrupole moment
0
time of discovery or invention1965
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)85%
β+ (β+ decay; β+ = ϵ + e+)15%
SF (spontaneous fission)0.03%

257Lr

mass number257
neutron number154
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
6 ± 0,4 s
spin7/2
nuclear quadrupole moment
time of discovery or invention1971
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)100%
β+ (β+ decay; β+ = ϵ + e+)
SF (spontaneous fission)

258Lr

mass number258
neutron number155
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
3,92 ± 0,33 s
spin
nuclear quadrupole moment
time of discovery or invention1971
Ыт-тĕкел (физика)

decay modeintensity
α (α emission)97.4%
β+ (β+ decay; β+ = ϵ + e+)2.6%

259Lr

mass number259
neutron number156
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
6,2 ± 0,3 s
spin1/2
nuclear quadrupole moment
0
time of discovery or invention1971
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)78%
SF (spontaneous fission)22%
β+ (β+ decay; β+ = ϵ + e+)

260Lr

mass number260
neutron number157
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
3 ± 0,5 m
spin
nuclear quadrupole moment
time of discovery or invention1971
Ыт-тĕкел (физика)

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

261Lr

mass number261
neutron number158
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
39 ± 12 m
spin1/2
nuclear quadrupole moment
0
time of discovery or invention1987
Ыт-тĕкел (физика)-

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

262Lr

mass number262
neutron number159
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
spin
nuclear quadrupole moment
time of discovery or invention1987
Ыт-тĕкел (физика)

decay modeintensity
β+ (β+ decay; β+ = ϵ + e+)
SF (spontaneous fission)10%
α (α emission)

263Lr

mass number263
neutron number160
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
spin1/2
nuclear quadrupole moment
0
time of discovery or invention
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)

264Lr

mass number264
neutron number161
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
spin
nuclear quadrupole moment
time of discovery or invention
Ыт-тĕкел (физика)

decay modeintensity
α (α emission)
SF (spontaneous fission)

265Lr

mass number265
neutron number162
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
spin1/2
nuclear quadrupole moment
0
time of discovery or invention
Ыт-тĕкел (физика)-

decay modeintensity
α (α emission)
SF (spontaneous fission)

266Lr

mass number266
neutron number163
Relative Atomic Mass
g-factor
natural abundance
Радиоактивлă аркану☢️ radioactive element
Çурма аркану тапхăрĕ
22 ± 14 h
spin
nuclear quadrupole moment
time of discovery or invention2014
Ыт-тĕкел (физика)

decay modeintensity
SF (spontaneous fission)100%
Lawrencium
Electron shell 103 Lawrencium

истори

discoverer or inventorA.Ghiorso, T.Sikkeland, A.E.Larsh, R.M.Latimer
location of discoveryUnited States
time of discovery or invention1961
etymologyNamed in honor of Ernest O. Lawrence, inventor of the cyclotron.
pronunciationlor-ENS-i-em (акӑлчан)

source

Abundance
Abundance in Earth's crust
natural abundance (океан)
natural abundance (Этем ӳт-пĕвĕ)
0 %
natural abundance (meteoroid)
0 %
natural abundance (Хĕвел)
0 %
Abundance in Universe
0 %

Nuclear Screening Constants