Electron Configuration of Manganese (Mn)
Manganese (Mn, Z = 25) has the electron configuration [Ar] 3d^5 4s^2, filling 4 shells with 2, 8, 13, 2 electrons.
This is the fast lane: one page, one fact, zero digressions. Read the quick answer, check the table, and if your exam needs the full derivation, the sections below walk through it step by step — in Bangla and English, like every page here. Need the whole picture instead — history, characteristics, uses, exam questions? The full Manganese page is one click away.
Manganese: every subshell, one by one
The table below unpacks [Ar] 3d^5 4s^2 line by line, so you can watch Manganese's 25 electrons take their seats in order of increasing energy.
| Subshell | Electrons | Total so far |
|---|---|---|
| [Ar] | 0 | 18 |
| 3d | 5 | 23 |
| 4s | 2 | 25 |
Electrons per shell (K, L, M…)
Grouped by principal quantum number instead of subshell, Manganese carries 2 in shell 1, 8 in shell 2, 13 in shell 3, 2 in shell 4. The outermost shell holds 2 electrons — the ones that do all the bonding.
How to derive it yourself
Follow the aufbau order (1s → 2s → 2p → 3s → 3p → 4s → 3d → …), pouring 25 electrons into orbitals of capacity 2 (s), 6 (p), 10 (d) and 14 (f) until none remain. Write the filled inner shells as the nearest noble-gas core — for Manganese that gives [Ar] 3d^5 4s^2.
Students also ask
How many electron shells does Manganese have?
Manganese is in period 4, so its electrons occupy 4 shells, holding 2, 8, 13, 2 electrons respectively.
How many valence electrons does Manganese have?
Its outermost shell holds 2 electrons, so Manganese has 2 valence electrons that take part in bonding.
What is the noble-gas shorthand for Manganese?
The shorthand form is exactly [Ar] 3d^5 4s^2.
