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Equation 72 · Part 7 · The Clock That Comes Back Wrong by Exactly Its Mass

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mop=−(ℏ/c2) ∂Δϕ/∂Δτm_{\rm op}=-(\hbar/c^2)\,\partial\Delta\phi/\partial\Delta\tau
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What this part means

Capital delta attached to a quantity marks a difference between two values of that quantity; the article’s sign convention determines the order.

Its job in the formula

Capital delta attached to a quantity marks a difference between two values of that quantity; the article’s sign convention determines the order.

The passage around this formula

The sign convention on the proper-time form follows the phase of a free relativistic particle, Δ\Deltaϕ\phi=-mc2c^2Δ\Deltaτ\tau/ℏ\hbar , so that mopm_{\rm op}=-(ℏ\hbar/c2c^2)\,∂\partialΔ\Deltaϕ\phi/∂\partialΔ\Deltaτ\tau recovers m identically when Δ\Deltaϕ\phi has no other dependence. Both forms require sweeping the loop’s own parameter — hold time, translation distance, boost velocity — across at least two settings and fitting the slope, exactly as a spectroscopist extracts an energy gap from a swept detuning rather than from one photon count. A single unswept measurement cannot report a mass gauge at all; it can only report a phase.

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Learn the underlying idea

Addition combines quantities; subtraction measures the signed difference between them. Parentheses show what is combined before the rest of the expression is evaluated.

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Sources cited in the article section

These citations provide research context; check each source for the exact claim it supports.