Identifier
F:nat-mul-comm
Proof route
kernel-lean
External status
proved
Axiom footprint
Empty

Recorded description

For all natural numbers a and b, a * b = b * a.

Formal statement
theorem Nat.mul_comm : ((x0 : AxNat) -> ((x1 : AxNat) -> Eq.{1} AxNat (AxNat.mul x0 x1) (AxNat.mul x1 x0)))

Dependencies

The graph shows direct ledger edges. Follow a node to open its artifact page.

Direct dependencies appear to the left. The current fact is in the center. Facts that depend directly on it appear to the right. (a+1) * b = a*b + b Zero is a left absorbing elemen Current fact [generated] kernel theorem Comp 1/n! is dominated by the geomet [generated] kernel theorem CRea Order passes to the integral A constant factor pulls out of The product of two nonnegative [generated] kernel theorem CRea [generated] kernel theorem CRea
2 direct dependencies 105 direct dependents Graph shows the first 8 on each side.

Evidence

kernel-Nat.mul_comm

Kind
kernel-term
Status
checked

Supports: For all natural numbers a and b, a * b = b * a.

Checker command
test "$(cargo run -q -p axeyum-lean-kernel --example nat_theorem_inventory -- mul_comm 2>/dev/null | grep -Ec '^Nat\.mul_comm[[:space:]]')" -ge 1
Evidence notes

`build_nat_prelude` admits this theorem through the trusted `Kernel::add_declaration` gate, which re-checks the proof term against the stated type, so producing the row at all is a machine-checked proof. TIGHTENED 2026-08-16: the command was `cargo test -p axeyum-lean-kernel --lib nat_prelude`, a whole-suite run that passes or fails identically for every fact citing it and would stay green if THIS theorem were deleted. It now names its own subject twice over -- `nat_theorem_inventory` exits non-zero for a name that does not exist, and the `grep -q` requires the admitted declaration to be printed.

footprint-Nat.mul_comm

Kind
exhaustive-enumeration
Status
checked

Supports: axiom_footprint: [] -- the Nat prelude's trusted surface is empty

Checker command
cargo run -q -p axeyum-lean-kernel --example nat_axiom_inventory -- --require-axiom-free nat
Evidence notes

`nat_axiom_inventory` enumerates the built Nat environment and reports `nat: axiom=0 opaque=0 quotient=0 total_trusted=0` (re-run 2026-08-14 by this lane). That is the whole environment, not this theorem, and that is what makes it sound as a footprint: a theorem cannot depend on a trusted declaration the environment does not contain, so an empty trusted surface bounds every individual footprint by []. Counting `Declaration::Axiom` alone would NOT have sufficed -- `Opaque` has no proof body and `Quotient` admits `Quot.sound`, one of Lean's own axioms -- so the enumeration covers all three.

Provenance

{
  "date": "2026-08-14",
  "established_by": "axeyum-lean-kernel build_nat_prelude, re-measured by lane facts-number",
  "source": "proposition extracted from the S:number / S:arithmetic-structure strands of the math-education concept graph; statement authored here, nothing copied"
}