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Properties of Plutonium and Molybdenum


Properties of Molybdenum & Plutonium


Physical Properties

Melting Point
639.50 °C   
99+
2,617.00 °C   
5

Boiling Point
3,235.00 °C   
24
4,612.00 °C   
9

Hardness
  
  

Mohs Hardness
Not Available   
5.50   
7

Brinell Hardness
Not Available   
1,370.00 MPa   
7

Vickers Hardness
Not Available   
1,400.00 MPa   
6

Optical Properties
  
  

Refractive Index
Not Available   
Not Available   

Reflectivity
Not Available   
58.00 %   
15

Speed of Sound
2,260.00 m/s   
99+
5,400.00 m/s   
6

Allotropes
No   
No   

α Allotropes
Not Available   
Not Available   

β Allotropes
Not Available   
Not Available   

γ Allotropes
Not Available   
Not Available   

Chemical Properties

Chemical Formula
Pu   
Mo   

Isotopes
  
  

Known Isotopes
20   
19
25   
14

Electronegativity
  
  

Pauling Electronegativity
1.28   
33
2.16   
5

Sanderson Electronegativity
Not Available   
1.15   
19

Allred Rochow Electronegativity
1.22   
26
1.30   
24

Mulliken-Jaffe Electronegativity
Not Available   
Not Available   

Allen Electronegativity
Not Available   
2.16   
3

Electropositivity
  
  

Pauling Electropositivity
2.72   
21
1.84   
99+

Ionization Energies
  
  

1st Energy Level
584.70 kJ/mol   
99+
684.30 kJ/mol   
37

2nd Energy Level
1,128.00 kJ/mol   
99+
1,560.00 kJ/mol   
37

3rd Energy Level
2,084.00 kJ/mol   
99+
2,618.00 kJ/mol   
99+

Electrochemical Equivalent
2.28 g/amp-hr   
22
0.89 g/amp-hr   
99+

Electron Work Function
Not Available   
4.60 eV   
12

Other Chemical Properties
?
Corrosion is a process which converts refined metals to their more stable forms, for example, its oxide and hydroxide. This process of metals getting corroded is a gradual destruction of metals by chemical reactions.Corrosion, 
?
Ionization is the process by which an atom or a molecule acquires a negative or positive charge by gaining or losing electrons to form ions, often in conjunction with other chemical changes.Ionization, 
?
Radioactive metals emit particles and radiation from their nuclei. This process comes in the picture because their nuclei experience the intense conflict between two strong forces. This metal also have radioactive isotopes.Radioactive Isotopes, 
?
Radioactive metals emit particles and radiation from their nuclei. This process comes in the picture because their nuclei experience the intense conflict between two strong forces.Radioactivity
  
?
Anti-corrosion metals have the protection on their surfaces which protect them from corroding in corrosive environments.Anti Corrosion, 
?
Ionization is the process by which an atom or a molecule acquires a negative or positive charge by gaining or losing electrons to form ions, often in conjunction with other chemical changes.Ionization, 
?
Radioactive metals emit particles and radiation from their nuclei. This process comes in the picture because their nuclei experience the intense conflict between two strong forces. This metal also have radioactive isotopes.Radioactive Isotopes, 
?
Solubility is a chemical property referring to the ability for a given substance, the solute, to dissolve in a solvent.Solubility
  

Mechanical Properties

Density
  
  

Density At Room Temperature
19.82 g/cm3   
13
10.28 g/cm3   
36

Density When Liquid (at m.p.)
16.63 g/cm3   
8
9.33 g/cm3   
20

Vapor Pressure
  
  

Vapor Pressure at 1000 K
0.00 (Pa)   
26
Not Available   

Vapor Pressure at 2000 K
2.20 (Pa)   
12
0.00 (Pa)   
26

Tensile Strength
Not Available   
324.00 MPa   
13

Viscosity
Not Available   
Not Available   

Elasticity properties
  
  

Shear Modulus
43.00 GPa   
18
126.00 GPa   
8

Bulk Modulus
Not Available   
230.00 GPa   
6

Young's Modulus
96.00 GPa   
21
329.00 GPa   
6

Poisson Ratio
0.21   
32
0.31   
13

Other Mechanical Properties
?
Ductility of metals defines their ability to deform under tensile stress; this is often characterized by the metals ability to be stretched into a wire.Ductile, 
?
Malleability of metals defines their ability to deform under compressive stress; this is often characterized by the metals ability to form a thin sheet by hammering or rolling.Malleable
  
?
Ductility of metals defines their ability to deform under tensile stress; this is often characterized by the metals ability to be stretched into a wire.Ductile, 
?
Weldability of metals defines their ability to be welded.This property of metals also known as joinability.Weldable
  

Periodic Table

Symbol
Pu   
Mo   

Group Number
0   
18
6   
12

Period Number
7   
5   

Block
?
The f-block is in the center-left of a 32-column periodic table but in the footnoted appendage of 18-column tables. These elements are not generally considered as part of any group. They are often called inner transition metals.f block
  
?
The d-block is on the middle of the periodic table and includes elements from columns 3 through 12. These elements are also known as the transition metals because they show a transitivity in their properties i.e. they show a trend in their properties.d block
  

Element Family
?
Total 15 metals are included in actinide series, from Actinium to Lawrencium. Actinide series is located under f and d block of the periodic table.Actinide
  
?
What is Transition Metal? All transition metals are placed under the d-block from group number 3 to 12. Transition metals show characteristics like malleability, ductility and are good conductor of electricity.Transition Metal
  

Atomic Properties

Atomic Number
94   
24
42   
99+

Atomic Weight
244.00 amu   
19
95.95 amu   
99+

Atomic Volume
12.32 cm3/mol   
99+
9.40 cm3/mol   
99+

Electron Configuration
[Rn] 5f6 7s2   
[Kr] 4d5 5s1   

Valence Electron Potential
64.90 (-eV)   
21
88.60 (-eV)   
13

Atom
  
  

Number of Protons
94   
24
42   
99+

Number of Neutrons
150   
11
54   
99+

Number of Electrons
94   
24
42   
99+

Crystal Structure
?
The mono-clinic crystal structure is one of the seven lattice point groups. Here vectors of crystal have unequal lengths. Here vectors of crystal have unequal lengths and have two vectors perpendicular to the 3rd oneMonoclinic (MON)
  
?
BCC is a basis type of cubic crystal structure. In crystallography, the cubic crystals structure is a crystal system where the unit cell has a cube shaped structure. This is one of the simplest crystal structure found in crystals of metal.Body Centered Cubic (BCC)
  

Crystal Lattice
MON-Crystal-Structure-of-Plutonium.jpg#100   
BCC-Crystal-Structure-.jpg#100   

Radius of an Atom
  
  

Atomic Radius
159.00 pm   
28
139.00 pm   
39

Covalent Radius
187.00 pm   
20
154.00 pm   
32

Van der Waals Radius
200.00 pm   
28
200.00 pm   
28

Lattice Constant
618.30 pm   
4
314.70 pm   
99+

Lattice Angles
NA   
π/2, π/2, π/2   

Lattice C/A Ratio
Not Available   
Not Available   

Adjacent Atomic Numbers
  
  

Next Element
Americium
  
Technetium
  

Previous Element
Neptunium
  
Niobium
  

Magnetic Properties

Electrical Properties
  
  

Resistivity
1.46 nΩ·m   
99+
53.40 nΩ·m   
99+

Electrical Conductivity
0.01 106/cm Ω   
99+
0.19 106/cm Ω   
11

Electron Affinity
Not Available   
71.90 kJ/mol   
14

Electrical Property
?
Poor conductor metals have moderate resistance to electric currents. They can conduct electric current through them with very low efficiency.Poor Conductor
  
?
Semiconductor metals have conductivity between that of a conductor and an insulator.Semiconductor
  

Magnetic Characteristics
  
  

Specific Gravity
19.84   
7
10.22   
27

Magnetic Ordering
?
Paramagnetic metals are slightly attracted by magnet, but they can’t retain the magnetic effect once they are removed from the magnetic field.Paramagnetic
  
?
Paramagnetic metals are slightly attracted by magnet, but they can’t retain the magnetic effect once they are removed from the magnetic field.Paramagnetic
  

Permeability
Not Available   
Not Available   

Susceptibility
Not Available   
Not Available   

Thermal Properties

Specific Heat
0.13 J/(kg K)   
39
0.25 J/(kg K)   
21

Thermal Conductivity
6.74 W/m·K   
99+
138.00 W/m·K   
12

Critical Temperature
Not Available   
Not Available   

Molar Heat Capacity
35.50 J/mol·K   
3
24.06 J/mol·K   
99+

Thermal Expansion
46.70 µm/(m·K)   
6
4.80 µm/(m·K)   
99+

Standard Molar Entropy
Not Available   
28.70 J/mol.K   
99+

Enthalpy
  
  

Enthalpy of Vaporization
344.00 kJ/mol   
25
594.10 kJ/mol   
8

Enthalpy of Fusion
2.82 kJ/mol   
99+
27.61 kJ/mol   
5

Enthalpy of Atomization
360.00 kJ/mol   
26
653.00 kJ/mol   
7

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