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Titanium Dysprosium Comparison


Dysprosium Titanium comparison


Periodic Table

Symbol
Ti  
Dy  

Group Number
4  
14
3  
15

Period Number
4  
6  

Block
d block  
f block  

Element Family
Transition Metal  
Lanthanide  

CAS Number
7440326  
99+
7429916  
99+

Space Group Name
P63/mmc  
P63/mmc  

Space Group Number
194.00  
7
194.00  
7

Facts

Interesting Facts
  • The only metal which burns in Nitrogen is Titanium.
  • Titanium is also known as corrosion resistant metal.
  
  • Dysprosium acts stable in air at room temperature.
  • Dysprosium behaves very much like paramagnetic metal.
  

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

History
  
  

Who Discovered
W. Gregor & J. Berzelius  
Lecoq de Boisbaudran  

Discovery
In 1791  
In 1886  

Abundance
  
  

Abundance In Universe
0.00 %  
10
0.00 %  
23

Abundance In Sun
0.00 %  
9
0.00 %  
25

Abundance In Meteorites
0.05 %  
11
0.00 %  
33

Abundance In Earth's Crust
0.66 %  
7
0.00 %  
28

Abundance In Oceans
0.00 %  
15
0.00 %  
35

Abundance In Humans
0.57 %  
2
0.00 %  
24

Uses

Uses & Benefits
  • Its alloys are used in spacecraft, aircraft and ammunition industry.
  • Its pipes are used in distillation plants, submarines, hulls of big ships, etc.
  
  • Dysprosium metal is highly reactive due to which it pure form is not as usual as its alloy.
  • Thi metals alloy is used in magnate as it is resistance to high temperature.
  

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

Medical Uses
Dentistry, Surgical Instruments Manufacturing  
-  

Other Uses
Alloys, Jewellery, Sculptures, Statues  
Alloys, Nuclear Research  

Biological Properties
  
  

Toxicity
Non Toxic  
Mildly Toxic  

Present in Human Body
Yes  
No  

In Blood
0.05 Blood/mg dm-3  
16
0.00 Blood/mg dm-3  
40

In Bone
0.60 p.p.m.  
21
0.00 p.p.m.  
99+

Physical

Melting Point
1,660.00 °C  
18
1,407.00 °C  
32

Boiling Point
3,287.00 °C  
23
2,562.00 °C  
99+

Appearance
  
  

Physical State
Solid  
Solid  

Color
Silvery Gray-White  
Silvery White  

Luster
Metallic  
Metallic  

Hardness
  
  

Mohs Hardness
6.00  
6
5.00  
8

Brinell Hardness
716.00 MPa  
16
500.00 MPa  
28

Vickers Hardness
830.00 MPa  
21
540.00 MPa  
32

Speed of Sound
5,090.00 m/s  
13
2,710.00 m/s  
99+

Optical Properties
  
  

Refractive Index
2.40  
7
1.78  
23

Reflectivity
56.00 %  
26
35.00 %  
34

Allotropes
No  
No  

α Allotropes
-  
-  

β Allotropes
-  
-  

γ Allotropes
-  
-  

Chemical

Chemical Formula
Ti  
Dy  

Isotopes
  
  

Known Isotopes
23  
16
29  
10

Electronegativity
  
  

Pauling Electronegativity
1.54  
27
1.22  
39

Sanderson Electronegativity
1.09  
39
1.22  
31

Allred Rochow Electronegativity
1.32  
24
1.10  
31

Mulliken-Jaffe Electronegativity
1.54  
24
1.22  
38

Allen Electronegativity
1.38  
36
1.22  
99+

Electropositivity
  
  

Pauling Electropositivity
2.46  
28
2.78  
16

Ionization Energies
  
  

1st Energy Level
658.80 kJ/mol  
39
573.00 kJ/mol  
99+

2nd Energy Level
1,309.80 kJ/mol  
99+
1,130.00 kJ/mol  
99+

3rd Energy Level
2,652.50 kJ/mol  
99+
2,200.00 kJ/mol  
99+

4th Energy Level
4,174.60 kJ/mol  
99+
3,990.00 kJ/mol  
99+

5th Energy Level
9,581.00 kJ/mol  
5
5,730.00 kJ/mol  
99+

6th Energy Level
11,533.00 kJ/mol  
8
5,730.00 kJ/mol  
99+

7th Energy level
13,590.00 kJ/mol  
6
5,730.00 kJ/mol  
99+

8th Energy Level
16,440.00 kJ/mol  
8
5,730.00 kJ/mol  
99+

9th Energy Level
18,530.00 kJ/mol  
11
6,340.00 kJ/mol  
99+

10th Energy Level
20,833.00 kJ/mol  
15
5,730.00 kJ/mol  
99+

11th Energy Level
25,575.00 kJ/mol  
14
5,730.00 kJ/mol  
99+

12th Energy Level
28,125.00 kJ/mol  
37
5,730.00 kJ/mol  
99+

13th Energy Level
76,015.00 kJ/mol  
1
5,730.00 kJ/mol  
99+

14th Energy Level
83,280.00 kJ/mol  
2
5,730.00 kJ/mol  
99+

15th Energy Level
90,880.00 kJ/mol  
4
57,300.00 kJ/mol  
99+

16th Energy Level
100,700.00 kJ/mol  
4
57,300.00 kJ/mol  
99+

17th Energy Level
109,100.00 kJ/mol  
5
573.30 kJ/mol  
99+

18th Energy Level
117,800.00 kJ/mol  
6
5,730.00 kJ/mol  
99+

19th Energy Level
129,900.00 kJ/mol  
7
573.30 kJ/mol  
99+

20th Energy Level
137,530.00 kJ/mol  
9
573.00 kJ/mol  
99+

21st Energy Level
658.80 kJ/mol  
99+
5,730.00 kJ/mol  
23

22nd Energy Level
658.00 kJ/mol  
31
573.00 kJ/mol  
99+

23rd Energy Level
658.80 kJ/mol  
99+
573.00 kJ/mol  
99+

24th Energy Level
658.80 kJ/mol  
30
573.00 kJ/mol  
99+

25th Energy Level
658.80 kJ/mol  
32
573.00 kJ/mol  
99+

26th Energy Level
658.80 kJ/mol  
31
573.00 kJ/mol  
99+

27th Energy Level
658.80 kJ/mol  
32
573.00 kJ/mol  
99+

28th Energy Level
658.80 kJ/mol  
37
573.00 kJ/mol  
99+

29th Energy Level
658.80 kJ/mol  
38
573.00 kJ/mol  
99+

30th Energy Level
658.80 kJ/mol  
34
573.00 kJ/mol  
99+

Electrochemical Equivalent
0.45 g/amp-hr  
99+
2.02 g/amp-hr  
33

Electron Work Function
4.33 eV  
24
4.30 eV  
25

Other Chemical Properties
Chemical Stability, Ionization  
Anti Corrosion, Ionization, Radioactive Isotopes, Solubility  

Atomic

Atomic Number
22  
99+
66  
99+

Electron Configuration
[Ar] 3d2 4s2  
[Xe] 4f9 6s2  

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

Crystal Lattice
HCP-Crystal-Structure-of-Titanium.jpg#100  
HCP-Crystal-Structure-of-Dysprosium.jpg#100  

Atom
  
  

Number of Protons
22  
99+
66  
99+

Number of Neutrons
26  
99+
96  
36

Number of Electrons
22  
99+
66  
99+

Radius of an Atom
  
  

Atomic Radius
147.00 pm  
36
178.00 pm  
18

Covalent Radius
160.00 pm  
32
192.00 pm  
17

Van der Waals Radius
200.00 pm  
35
229.00 pm  
25

Atomic Weight
47.87 amu  
99+
162.50 amu  
99+

Atomic Volume
10.64 cm3/mol  
99+
19.00 cm3/mol  
35

Adjacent Atomic Numbers
  
  

Previous Element
Scandium
  
Terbium
  

Next Element
Vanadium
  
Holmium
  

Valence Electron Potential
95.20 (-eV)  
10
47.40 (-eV)  
33

Lattice Constant
295.08 pm  
99+
359.30 pm  
99+

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

Lattice C/A Ratio
1.59  
30
1.57  
38

Mechanical

Density
  
  

Density At Room Temperature
4.51 g/cm3  
99+
8.54 g/cm3  
99+

Density When Liquid (at m.p.)
4.11 g/cm3  
99+
8.37 g/cm3  
99+

Tensile Strength
434.00 MPa  
10
120.00 MPa  
27

Viscosity
0.00  
22
0.00  
25

Vapor Pressure
  
  

Vapor Pressure at 1000 K
0.00 (Pa)  
37
0.00 (Pa)  
22

Vapor Pressure at 2000 K
0.98 (Pa)  
14
0.00 (Pa)  
30

Elasticity properties
  
  

Shear Modulus
44.00 GPa  
17
24.70 GPa  
39

Bulk Modulus
110.00 GPa  
15
40.50 GPa  
36

Young's Modulus
116.00 GPa  
20
61.40 GPa  
35

Poisson Ratio
0.32  
12
0.25  
25

Other Mechanical Properties
Ductile  
Sectile  

Magnetic

Magnetic Characteristics
  
  

Specific Gravity
4.51  
99+
8.55  
99+

Magnetic Ordering
Paramagnetic  
Paramagnetic  

Permeability
0.00 H/m  
17
0.00 H/m  
17

Susceptibility
0.00  
24
0.00  
24

Electrical Properties
  
  

Electrical Property
Poor Conductor  
Conductor  

Resistivity
420.00 nΩ·m  
12
926.00 nΩ·m  
2

Electrical Conductivity
0.02 106/cm Ω  
99+
0.01 106/cm Ω  
99+

Electron Affinity
7.60 kJ/mol  
99+
50.00 kJ/mol  
26

Thermal

Specific Heat
0.52 J/(kg K)  
9
0.17 J/(kg K)  
35

Molar Heat Capacity
25.06 J/mol·K  
99+
27.70 J/mol·K  
17

Thermal Conductivity
21.90 W/m·K  
99+
10.70 W/m·K  
99+

Critical Temperature
1,941.00 K  
21
1,680.00 K  
36

Thermal Expansion
8.60 µm/(m·K)  
99+
9.90 µm/(m·K)  
99+

Enthalpy
  
  

Enthalpy of Vaporization
429.00 kJ/mol  
20
230.00 kJ/mol  
99+

Enthalpy of Fusion
15.48 kJ/mol  
19
11.05 kJ/mol  
38

Enthalpy of Atomization
468.60 kJ/mol  
20
301.00 kJ/mol  
99+

Standard Molar Entropy
27.30 J/mol.K  
99+
75.60 J/mol.K  
7

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