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Equation 15 · Part 7 · A Horizon Is a Toll Booth, Not a Loophole

≤

N≤2πℏ(⟨H⟩−E0)tN \leq \frac{2}{\pi\hbar}\left(\langle H\rangle-E_0\right) t
≤

What this part means

Less than or equal to.

Its job in the formula

Less than or equal to.

The passage around this formula

where ⟨\langle H⟩\rangle is the mean energy in the evolving state and E0E_0 is the ground-state energy of H [ 2 , 1 ] . Inverting this gives a maximum rate of orthogonal state changes per unit proper time, 2(⟨\langle H⟩\rangle-E0E_0)/π\piℏ\hbar , and Giovannetti, Lloyd, and Maccone showed that for a periodic evolution this rate integrates cleanly: a system with mean energy ⟨\langle H⟩\rangle-E0E_0 above its ground state can pass through at most N≤2πℏ(⟨H⟩−E0)tN \leq \frac{2}{\pi\hbar}\left(\langle H\rangle-E_0\right) t. mutually orthogonal states in elapsed time t [ 3 ] . Lloyd used the same bound to price computation itself: no amount of clever engineering lets a system with energy E execute logical operations faster than about 2E/π\piℏ\hbar per second, a…

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Learn the underlying idea

An inequality compares values without claiming they are equal. It describes a range, threshold, or bound that a quantity may satisfy.

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Sources cited in the surrounding passage

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