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Ti

Titanium

Titanium (Ti) is a transition metal with atomic number 22 and an atomic mass of 47.867. Its electron configuration is [Ar] 3d2 4s2.

Titanium key data

Symbol Ti
Atomic number 22
Atomic mass (standard atomic weight) 47.867
Molar mass 47.867 g/mol
Protons 22
Neutrons (most abundant isotope, titanium-48) 26
Electrons (neutral atom) 22
Category Transition metal
Period 4
Group 4
Block d-block
Noble gas notation [Ar] 3d2 4s2
Full electron configuration 1s2 2s2 2p6 3s2 3p6 3d2 4s2
Electrons per shell 2, 8, 10, 2

Atomic mass: IUPAC CIAAW abridged standard atomic weights, 2024. Most abundant isotope: NIST Atomic Weights and Isotopic Compositions.

The values are facts and free to use; this page’s selection and presentation are © 2026 ScienceQuest.

Measured properties of titanium

From PubChem, the US National Institutes of Health. Public domain.

Melting point 1941 K (1667.9 °C), 19th of 103 by melting point
Boiling point 3560 K (3286.9 °C), 25th of 93 by boiling point
Density 4.5 g/cm³, 66th of 96 by density
State at room temperature Solid
Electronegativity 1.54 (Pauling), 53rd of 95 by electronegativity
Van der Waals radius 187 pm, joint 74th of 99 by atomic radius
First ionisation energy 6.828 eV (658.8 kJ/mol), 52nd of 102 by first ionisation energy
Electron affinity 0.079 eV (7.62 kJ/mol), 57th of 57 by electron affinity
Common oxidation states +4, +3, +2
Discovered 1791

Each rank counts down from the highest value, among the elements PubChem’s table gives one for, and links to that property ranked across the whole table. All of them are collected under periodic trends.

Titanium electron configuration

The full electron configuration of titanium is 1s2 2s2 2p6 3s2 3p6 3d2 4s2. With the noble-gas core collapsed it is [Ar] 3d2 4s2, and the outermost subshell is 4s2.

Bohr model of titanium (Ti): a nucleus and four shells holding 2, 8, 10 and 2 electrons from the inside out.
Bohr model of titanium (Ti). Image © ScienceQuest, CC BY 4.0: free to reuse with credit to ScienceQuest and a link to this page, as the image licence explains.
Orbital box diagram of titanium (Ti), 1s2 2s2 2p6 3s2 3p6 3d2 4s2: one box per orbital, filled by Hund’s rule, showing two unpaired electrons, in 3d.
Orbital diagram of titanium (Ti). Image © ScienceQuest, CC BY 4.0: free to reuse with credit to ScienceQuest and a link to this page, as the image licence explains.

Why group and block follow from this is set out in how the periodic table maps electron configuration, and the electron configuration of every element is listed on one page.

Mass of one titanium atom

A molar mass is grams per mole, so dividing by the Avogadro constant gives the mass of a single atom, or for an element with more than one natural isotope the average mass of its atoms, and the reciprocal gives how many atoms sit in a gram.

Mass of one atom

  1. one atom = 47.867 / (6.02214076 × 10²³)
  2. = 7.9485 × 10⁻²³ g

Atoms in one gram

  1. atoms per gram = 6.02214076 × 10²³ / 47.867
  2. = 1.2581 × 10²² atoms

Titanium on the periodic table

Titanium is in period 4, group 4, in the d-block.

The other elements of group 4 are zirconium, hafnium and rutherfordium.

The rest of period 4

Work with titanium