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Equation 37 · Part 6 · The Atlas That Refuses to Close

Symbol c^2

Δx=S×vMc2,\Delta \mathbf x = \frac{\mathbf S \times \mathbf v}{Mc^2},
c2c^2

What this part means

The square of c: multiply c by itself.

Its job in the formula

c2c^2 occurs below the fraction bar. The quantity above the bar is divided by this expression; zero is excluded as a denominator.

The passage around this formula

Fix the slicing convention that anchors the centroid to the body’s own rest frame — the choice, standard in the spinning-body literature, in which the spin tensor about the centroid satisfies SαβS^{\alpha\beta}PβP_\beta = 0 — and ask how Xμ(u,Σ)X^\mu(u,\Sigma) moves as u is varied away from the body’s own rest-frame observer to some other inertial observer boosted at velocity v\mathbf v relative to it. Costa and Natário’s synthesis of the classical spinning-body literature gives the answer in closed form: the centroid measured by the boosted observer is displaced from the rest-frame centroid by Δx=S×vMc2\Delta \mathbf x = \frac{\mathbf S \times \mathbf v}{Mc^2}. a shift transverse to both the spin and the relative velocity [ 13 ] . This is an exact…

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Learn the underlying idea

An exponent tells how a base is used in multiplication. In x³, x is the base and 3 is the exponent: x³ = x × x × x.

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Sources cited in the surrounding passage

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