Commutative Algebra/Spectrum with Zariski topology
On , we will define a topology, turning into a topological space. This topology will be called Zariski topology, although only Alexander Grothendieck gave the definition in the above generality.
Closed sets
The sets , where ranges over subsets of , satisfy the following equations:
Proof:
The first two items are straightforward. For the third, we use induction on . is clear; otherwise, the direction is clear, and the other direction follows from lemma 14.20.