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Samarium vs Gadolinium


Gadolinium vs Samarium


Periodic Table

Symbol
Sm   
Gd   

Group Number
Not Available   
0   
18

Period Number
6   
6   

Block
f block   
f block   

Element Family
Lanthanide   
Lanthanide   

CAS Number
7440199   
99+
7440542   
33

Space Group Name
R_ 3m   
P63/mmc   

Space Group Number
166.00   
6
194.00   
5

Facts

Interesting Facts
  • Samarium metals helps stimulating body metabolism.
  • Samarium metals was 1st observed by Jean Charles Galissard de Marignac in Dydimia in 1853.
  
  • Gadolinium is not found free in nature, hence it is not a native metal.
  • Gadolinium metal found in minerals like Monazite and Bastnaesite.
  

Sources
Found in Minerals, Mining, Ores of Minerals   
Found in Minerals, Mining   

History
  
  

Who Discovered
Lecoq de Boisbaudran   
Jean Charles Galissard de Marignac   

Discovery
In 1879   
In 1880   

Abundance
  
  

Abundance In Universe
5 * 10-7 %   
19
2 * 10-7 %   
22

Abundance In Sun
~0.0000001 %   
26
~0.0000002 %   
25

Abundance In Meteorites
0.00 %   
37
0.00 %   
34

Abundance In Earth's Crust
0.00 %   
29
0.00 %   
30

Abundance In Oceans
0.00 %   
40
0.00 %   
38

Uses

Uses & Benefits
  • Magnets of Samarium cobalt alloy are stronger than that of Iron and hence, they are used in microwave application.
  • Samarium metal also used in optical lasers and infrared absorbing glasses and as a neutron absorber.
  
  • Its alloys are also used in making Magnets, electronic components and Data storage devices.
  • Compound of Gadolinium metal are used in magnetic resonance imaging (MRI).
  

Industrial Uses
Aerospace Industry, Automobile Industry, Chemical Industry, Electrical Industry, Electronic Industry   
Aerospace Industry, Electrical Industry, Electronic Industry   

Medical Uses
NA   
NA   

Other Uses
Alloys, In Nuclear Reactors   
Alloys   

Biological Properties
  
  

Toxicity
Slightly Toxic   
Non Toxic   

Present in Human Body
Yes   
No   

In Blood
0.01 Blood/mg dm-3   
22
Not Available   

Physical Properties

Melting Point
1,072.00 °C   
99+
1,311.00 °C   
35

Boiling Point
1,900.00 °C   
99+
3,233.00 °C   
25

Appearance
  
  

Physical State
Solid   
Solid   

Color
Silvery White   
Silvery White   

Luster
Lustrous   
Metallic   

Hardness
  
  

Brinell Hardness
441.00 MPa   
27
Not Available   

Vickers Hardness
412.00 MPa   
24
510.00 MPa   
22

Speed of Sound
2,130.00 m/s   
99+
2,680.00 m/s   
34

Optical Properties
  
  

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
Sm   
Gd   

Isotopes
  
  

Known Isotopes
30   
9
26   
13

Electronegativity
  
  

Pauling Electronegativity
1.17   
40
1.20   
39

Allred Rochow Electronegativity
1.07   
32
1.11   
29

Electropositivity
  
  

Pauling Electropositivity
2.83   
14
2.80   
15

Ionization Energies
  
  

1st Energy Level
544.50 kJ/mol   
99+
593.40 kJ/mol   
99+

2nd Energy Level
1,070.00 kJ/mol   
99+
1,170.00 kJ/mol   
99+

3rd Energy Level
2,260.00 kJ/mol   
99+
1,990.00 kJ/mol   
99+

4th Energy Level
3,990.00 kJ/mol   
37
4,250.00 kJ/mol   
30

Electrochemical Equivalent
1.87 g/amp-hr   
34
1.96 g/amp-hr   
32

Electron Work Function
2.70 eV   
99+
3.10 eV   
35

Other Chemical Properties
Ionization, Radioactive Isotopes   
Corrosion, Flammable, Ionization, Radioactive Isotopes   

Atomic Properties

Atomic Number
62   
99+
64   
99+

Electron Configuration
[Xe] 4f6 6s2   
[Xe] 4f7 5d1 6s2   

Crystal Structure
Rhombohedral (RHO)   
Hexagonal Close Packed (HCP)   

Crystal Lattice
RHO-Crystal-Structure-of-Samarium.jpg#100   
HCP-Crystal-Structure-of-Gadolinium.jpg#100   

Atom
  
  

Number of Protons
62   
99+
64   
99+

Number of Neutrons
88   
39
93   
37

Number of Electrons
62   
99+
64   
99+

Radius of an Atom
  
  

Atomic Radius
180.00 pm   
14
180.00 pm   
14

Covalent Radius
198.00 pm   
13
196.00 pm   
14

Van der Waals Radius
229.00 pm   
20
237.00 pm   
15

Atomic Weight
150.36 amu   
99+
47.87 amu   
99+

Atomic Volume
19.95 cm3/mol   
19
19.90 cm3/mol   
20

Adjacent Atomic Numbers
  
  

Previous Element
Promethium
  
Europium
  

Next Element
Europium
  
Terbium
  

Valence Electron Potential
44.80 (-eV)   
37
46.10 (-eV)   
34

Lattice Constant
362.10 pm   
33
363.60 pm   
32

Lattice Angles
π/2, π/2, 2 π/3   
π/2, π/2, 2 π/3   

Lattice C/A Ratio
Not Available   
1.59   
9

Mechanical Properties

Density
  
  

Density At Room Temperature
7.52 g/cm3   
99+
7.90 g/cm3   
99+

Density When Liquid (at m.p.)
7.16 g/cm3   
32
7.40 g/cm3   
31

Tensile Strength
Not Available   
Not Available   

Viscosity
Not Available   
Not Available   

Vapor Pressure
  
  

Vapor Pressure at 1000 K
0.94 (Pa)   
9
0.00 (Pa)   
30

Vapor Pressure at 2000 K
Not Available   
7.39 (Pa)   
9

Elasticity properties
  
  

Shear Modulus
19.50 GPa   
34
21.80 GPa   
33

Bulk Modulus
37.80 GPa   
35
37.90 GPa   
34

Young's Modulus
49.70 GPa   
37
54.80 GPa   
35

Poisson Ratio
0.27   
19
0.26   
23

Other Mechanical Properties
NA   
Ductile, Malleable   

Magnetic Properties

Magnetic Characteristics
  
  

Specific Gravity
7.52   
99+
7.90   
40

Magnetic Ordering
Paramagnetic   
Ferromagnetic   

Electrical Properties
  
  

Electrical Property
Conductor   
Conductor   

Resistivity
0.94 nΩ·m   
99+
1.31 nΩ·m   
99+

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

Electron Affinity
50.00 kJ/mol   
21
50.00 kJ/mol   
21

Thermal Properties

Specific Heat
0.20 J/(kg K)   
31
0.23 J/(kg K)   
27

Molar Heat Capacity
29.54 J/mol·K   
7
37.03 J/mol·K   
2

Thermal Conductivity
13.30 W/m·K   
99+
10.60 W/m·K   
99+

Critical Temperature
Not Available   
Not Available   

Thermal Expansion
12.70 µm/(m·K)   
30
9.40 µm/(m·K)   
99+

Enthalpy
  
  

Enthalpy of Vaporization
166.40 kJ/mol   
99+
359.40 kJ/mol   
21

Enthalpy of Fusion
8.62 kJ/mol   
40
10.05 kJ/mol   
36

Enthalpy of Atomization
209.00 kJ/mol   
99+
352.00 kJ/mol   
27

Standard Molar Entropy
69.60 J/mol.K   
15
68.10 J/mol.K   
16

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