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Livermorium
Livermorium

Iron
Iron



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Livermorium vs Iron

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Periodic Table

Symbol

Lv
Fe

Group Number

168
0 17
👆🏻

Period Number

74
2 7
👆🏻

Block

p block
d block

Element Family

Probably Post-​Transition
Transition Metal

CAS Number

541007197439896
7429905 54386242
👆🏻

Space Group Name

-
Im_ 3m

Space Group Number

166.00229.00
11 276
👆🏻

Facts

Interesting Facts

Livermorium was first synthesized in 2000 by a joint Russian-American research team.
  • Iron is not always magnetic in nature, its allotrope are ferromagnetic and the B allotrope is nonmagnetic.
  • The blood consists Iron in hemoglobin molecules to transfer Oxygen in the body.

Sources

Synthetically Produced
Earth's crust, Found in Minerals

History

Who Discovered

Joint Institute for Nuclear Research and Lawrence Livermore National Laboratory
-

Discovery

In 2000
Before 5000 BC

Abundance

Abundance In Universe

0.00 %0.11 %
0 0.11
👆🏻

Abundance In Sun

-0.10 %
0 0.1
👆🏻

Abundance In Meteorites

0.00 %22.00 %
0 22
👆🏻

Abundance In Earth's Crust

-6.30 %
1E-37 8.1
👆🏻

Abundance In Oceans

-0.00 %
0 1.1
👆🏻

Abundance In Humans

-0.01 %
0 1.4
👆🏻

Uses

Uses & Benefits

  • Currently known uses of Livermorium metal are limited to research purpose only.
  • Iron metal alloy steel is used in the application of civil engineering and manufacturing.
  • Alloys of iron with nickel, vanadium, chromium, tungsten and manganese have very useful properties.

Industrial Uses

-
Aerospace Industry, Automobile Industry, Chemical Industry, Electrical Industry, Electronic Industry

Medical Uses

-
Pharmaceutical Industry, Surgical Instruments Manufacturing

Other Uses

Research Purposes
Alloys, Sculptures, Statues

Biological Properties

Toxicity

-
Non Toxic

Present in Human Body

In Blood

0.00 Blood/mg dm-3447.00 Blood/mg dm-3
0 1970
👆🏻

In Bone

0.50 p.p.m.380.00 p.p.m.
0 170000
👆🏻

Physical

Melting Point

-1,535.00 °C
-38.83 3410
👆🏻

Boiling Point

3,500.00 °C2,750.00 °C
0 5660
👆🏻

Appearance

Physical State

Solid
Solid

Color

-
Gray

Luster

Unknown Luster
Metallic

Hardness

Mohs Hardness

-4.00
0.2 8.5
👆🏻

Brinell Hardness

350.00 MPa200.00 MPa
0.14 3490
👆🏻

Vickers Hardness

400.00 MPa608.00 MPa
0 3920
👆🏻

Speed of Sound

4,600.00 m/s5,120.00 m/s
818 16200
👆🏻

Optical Properties

Refractive Index

1.902.60
0.155 3.41
👆🏻

Reflectivity

66.00 %65.00 %
5 97
👆🏻

Allotropes

α Allotropes

-
Ferrite (alpha Iron)

β Allotropes

-
beta Iron

γ Allotropes

-
gamma Iron

Chemical

Chemical Formula

Lv
Fe

Isotopes

Known Isotopes

526
0 38
👆🏻

Electronegativity

Pauling Electronegativity

2.001.83
0 2.6
👆🏻

Sanderson Electronegativity

1.902.20
0.22 2.56
👆🏻

Allred Rochow Electronegativity

1.901.64
0.86 1.9
👆🏻

Mulliken-Jaffe Electronegativity

1.901.83
0.62 2.48
👆🏻

Allen Electronegativity

1.901.80
0.659 2.7
👆🏻

Electropositivity

Pauling Electropositivity

2.002.17
1.46 3.3
👆🏻

Ionization Energies

1st Energy Level

723.60 kJ/mol762.50 kJ/mol
375.7 26130
👆🏻

2nd Energy Level

1,331.50 kJ/mol1,561.90 kJ/mol
392.8 28750
👆🏻

3rd Energy Level

2,846.30 kJ/mol2,957.00 kJ/mol
392.8 34230
👆🏻

4th Energy Level

3,811.20 kJ/mol5,290.00 kJ/mol
375.7 37066
👆🏻

5th Energy Level

6,078.60 kJ/mol7,240.00 kJ/mol
392 97510
👆🏻

6th Energy Level

7,090.00 kJ/mol9,560.00 kJ/mol
1007 105800
👆🏻

7th Energy level

7,090.00 kJ/mol12,060.00 kJ/mol
1007 114300
👆🏻

8th Energy Level

7,090.00 kJ/mol14,580.00 kJ/mol
730 125300
👆🏻

9th Energy Level

7,090.00 kJ/mol22,540.00 kJ/mol
1007 134700
👆🏻

10th Energy Level

5,800.00 kJ/mol25,290.00 kJ/mol
392 144300
👆🏻

11th Energy Level

6,200.00 kJ/mol28,000.00 kJ/mol
392 169988
👆🏻

12th Energy Level

7,090.00 kJ/mol31,920.00 kJ/mol
0 189368
👆🏻

13th Energy Level

7,090.00 kJ/mol34,830.00 kJ/mol
1007 76015
👆🏻

14th Energy Level

1,168.00 kJ/mol37,840.00 kJ/mol
380 86450
👆🏻

15th Energy Level

70,900.00 kJ/mol44,100.00 kJ/mol
33000 100700
👆🏻

16th Energy Level

58,000.00 kJ/mol47,206.00 kJ/mol
375.7 109480
👆🏻

17th Energy Level

1,085.00 kJ/mol122,200.00 kJ/mol
375.7 122200
👆🏻

18th Energy Level

7,090.00 kJ/mol131,000.00 kJ/mol
0 134810
👆🏻

19th Energy Level

1,169.70 kJ/mol140,500.00 kJ/mol
375.7 148700
👆🏻

20th Energy Level

870.00 kJ/mol152,600.00 kJ/mol
0 171200
👆🏻

21st Energy Level

709.00 kJ/mol163,000.00 kJ/mol
375.7 179100
👆🏻

22nd Energy Level

370.00 kJ/mol173,600.00 kJ/mol
330 184900
👆🏻

23rd Energy Level

5,800.00 kJ/mol188,100.00 kJ/mol
357.6 198800
👆🏻

24th Energy Level

548.90 kJ/mol195,200.00 kJ/mol
297.3 195200
👆🏻

25th Energy Level

709.00 kJ/mol762.00 kJ/mol
0 121900
👆🏻

26th Energy Level

709.00 kJ/mol762.50 kJ/mol
357.6 127700
👆🏻

27th Energy Level

709.00 kJ/mol762.50 kJ/mol
0 133800
👆🏻

28th Energy Level

709.00 kJ/mol762.50 kJ/mol
297.3 139800
👆🏻

29th Energy Level

709.00 kJ/mol762.50 kJ/mol
0 148100
👆🏻

30th Energy Level

709.00 kJ/mol762.00 kJ/mol
0 154500
👆🏻

Electrochemical Equivalent

3.00 g/amp-hr0.69 g/amp-hr
0.16812 8.3209
👆🏻

Electron Work Function

4.90 eV4.70 eV
2.14 6
👆🏻

Other Chemical Properties

Chemical Stability, Ionization
Corrosion, Ionization, Solubility

Atomic

Atomic Number

11626
3 117
👆🏻

Electron Configuration

[Rn] 5f14 6d10 7s2 7p4
[Ar] 3d6 4s2

Crystal Structure

Not Known
Body Centered Cubic (BCC)

Crystal Lattice

Atom

Number of Protons

11626
3 117
👆🏻

Number of Neutrons

16030
4 285
👆🏻

Number of Electrons

11626
3 117
👆🏻

Radius of an Atom

Atomic Radius

183.00 pm126.00 pm
0 348
👆🏻

Covalent Radius

183.00 pm132.00 pm
0 260
👆🏻

Van der Waals Radius

0.00 pm200.00 pm
0 348
👆🏻

Atomic Weight

293.00 amu55.85 amu
6.94 294
👆🏻

Atomic Volume

22.90 cm3/mol7.10 cm3/mol
1.39 71.07
👆🏻

Adjacent Atomic Numbers

Previous Element

Next Element

Valence Electron Potential

0.00 (-eV)67.00 (-eV)
0 392.42
👆🏻

Lattice Constant

362.15 pm286.65 pm
0 891.25
👆🏻

Lattice Angles

-
π/2, π/2, π/2

Lattice C/A Ratio

1.601.35
0.423 1.9
👆🏻

Mechanical

Density

Density At Room Temperature

12.90 g/cm37.87 g/cm3
0.534 40.7
👆🏻

Density When Liquid (at m.p.)

12.90 g/cm36.98 g/cm3
0.512 41
👆🏻

Tensile Strength

80.00 MPa11,000.00 MPa
0.1 11000
👆🏻

Viscosity

0.000.00
1.5E-05 0.0035
👆🏻

Vapor Pressure

Vapor Pressure at 1000 K

0.00 (Pa)0.00 (Pa)
0 121
👆🏻

Vapor Pressure at 2000 K

0.00 (Pa)36.80 (Pa)
0 774
👆🏻

Elasticity properties

Shear Modulus

28.50 GPa82.00 GPa
1.3 222
👆🏻

Bulk Modulus

42.00 GPa170.00 GPa
0 462
👆🏻

Young's Modulus

12.50 GPa211.00 GPa
0 528
👆🏻

Poisson Ratio

0.300.29
0.032 0.47
👆🏻

Other Mechanical Properties

-
Ductile, Malleable, Weldable

Magnetic

Magnetic Characteristics

Specific Gravity

12.007.20
0.53 4500
👆🏻

Magnetic Ordering

Paramagnetic
Ferromagnetic

Permeability

0.00 H/m0.01 H/m
1.25643E-06 0.0063
👆🏻

Susceptibility

0.00200,000.00
-0.000166 200000
👆🏻

Electrical Properties

Electrical Property

-
Conductor

Resistivity

0.50 nΩ·m96.10 nΩ·m
0.1 961
👆🏻

Electrical Conductivity

0.00 106/cm Ω0.10 106/cm Ω
0 0.63
👆🏻

Electron Affinity

50.00 kJ/mol15.70 kJ/mol
0 222.8
👆🏻

Thermal

Specific Heat

0.13 J/(kg K)0.44 J/(kg K)
0.1 3.6
👆🏻

Molar Heat Capacity

27.00 J/mol·K25.10 J/mol·K
13.1 62.7
👆🏻

Thermal Conductivity

0.00 W/m·K80.40 W/m·K
0 429
👆🏻

Critical Temperature

1,323.00 K1,811.00 K
26.3 3695
👆🏻

Thermal Expansion

9.70 µm/(m·K)11.80 µm/(m·K)
4.5 97
👆🏻

Enthalpy

Enthalpy of Vaporization

722.00 kJ/mol351.00 kJ/mol
7.32 799.1
👆🏻

Enthalpy of Fusion

-14.90 kJ/mol
2.1 35.23
👆🏻

Enthalpy of Atomization

380.50 kJ/mol414.20 kJ/mol
61.5 837
👆🏻

Standard Molar Entropy

50.20 J/mol.K27.30 J/mol.K
9.5 198.1
👆🏻