Transition metal

Electron Configuration of Silver (Ag)

Quick answer

Silver (Ag, Z = 47) has the electron configuration [Kr] 4d¹⁰ 5s¹, filling 5 shells with 2, 8, 18, 18, 1 electrons.

Teachers call it "one fact, fully handled" — exactly what this page does for Silver. The answer sits at the top in bold; scroll for the working, the shell-by-shell breakdown and the two questions students ask most. Need the whole picture instead — history, characteristics, uses, exam questions? The full Silver page is one click away.

Silver: every subshell, one by one

Start from 1s and follow the running total: this is exactly how examiners expect you to build Silver's configuration on paper.

SubshellElectronsTotal so far
[Kr]036
4d1046
5s147

Electrons per shell (K, L, M…)

Grouped by principal quantum number instead of subshell, Silver carries 2 in shell 1, 8 in shell 2, 18 in shell 3, 18 in shell 4, 1 in shell 5. The outermost shell holds 1 electron — the ones that do all the bonding.

How to derive it yourself

Follow the aufbau order (1s → 2s → 2p → 3s → 3p → 4s → 3d → …), pouring 47 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 Silver that gives [Kr] 4d¹⁰ 5s¹.

Note: Silver is one of the textbook exceptions to strict aufbau filling — a half-filled or fully-filled d subshell buys extra stability, so its ground-state configuration is [Kr] 4d¹⁰ 5s¹.

Students also ask

How many electron shells does Silver have?

Silver is in period 5, so its electrons occupy 5 shells, holding 2, 8, 18, 18, 1 electrons respectively.

How many valence electrons does Silver have?

Its outermost shell holds 1 electron, so Silver has 1 valence electron that take part in bonding.

What is the noble-gas shorthand for Silver?

The shorthand form is exactly [Kr] 4d¹⁰ 5s¹.