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Equation 105 · Part 6 · No Particle Without a Cosigner

Symbol K

TU=ℏa/(2πckB)∼3×103 KT_U = \hbar a/(2\pi c k_B) \sim 3\times10^3\,\mathrm K
KK

What this part means

K is an input to the expression that computes the quantity on the left.

Its job in the formula

K is an input to the expression that computes the quantity on the left.

The passage around this formula

…with γ\gamma of order 2×\times10^5 and r of order several kilometers, this works out to a ∼\sim 8×\times10^{23}\,m s−2\mathrm{m\,s^{-2}} , corresponding by the Unruh formula to TUT_U = ℏ\hbar a/(2π\pi c kBk_B) ∼\sim 3×\times10^3\,K\mathrm K — a temperature scale that is, remarkably, not astronomically small, unlike the roughly 10^{-19}\,K\mathrm K an Earth-bound laboratory accelerometer would need a planet’s worth of gravity to approach. Bell and Leinaas pointed out that the relevant observable is not a literal thermometer reading…

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A variable is a named place for a value. Its letter is a local label: x can mean position in one formula and a data point in another.

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Sources cited in the surrounding passage

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