Regime
Set by the heat release — one step, in equilibrium, and no chemistry in it
Every figure drawn under this hypothesis — 12 of them — with the essay each one belongs to and the generator that drew it.
12 figure placements state this regime. The strip along the foot of every figure names two things — the model that produced it and the regime it holds in — and this listing is read back out of the finished drawing rather than from what produced it.
- A gas that has not decided to react yet — air at 300 K, activation temperature 15,000 K — one-step heat release · what-a-gas-carries-forward
- A gas that has not decided to react yet — air at 300 K — one-step heat release; the factor of thirty is empirical · what-a-gas-carries-forward
- A gas that has not decided to react yet — γ = 1.4, q/RT₁ = 6 — a single-step release, in equilibrium · reactive-shock
- The other branch of the same curve — γ = 1.4, q/RT₁ = 6 — a single-step release, in equilibrium · reactive-shock · hero
- The other branch of the same curve — γ = 1.4, q/RT₁ = 6 — a single-step release, in equilibrium · reactive-shock
- The other branch of the same curve — γ = 1.4, q/RT₁ = 4 — a single-step release, in equilibrium · reactive-shock
- The other branch of the same curve — γ = 1.4, q/RT₁ = 6 · reactive-shock
- The other branch of the same curve — γ = 1.4, q/RT₁ = 6, T₁ = 300 K · reactive-shock
- The other branch of the same curve — γ = 1.4, q/RT₁ = 8, T₁ = 300 K · reactive-shock
- The other branch of the same curve — the same gas, the same three conservation laws, two answers · reactive-shock
- The other branch of the same curve — γ = 1.4, q/RT₁ = 4 · reactive-shock
- The other branch of the same curve — q = 3.4 MJ/kg, T₁ = 300 K — no chemistry, no dissociation, one γ · reactive-shock