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Equation 102 · The Clock That Comes Back Wrong by Exactly Its Mass

What does this equation mean?

M=M0+Hint/c2M=M_0+H_{\rm int}/c^2

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Inputs and operationsM_0+H_rm int/c^2
Result or conditionM
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This equation states an equality: the expressions on both sides have the same value under the article’s assumptions. Read the equation part by part below; each part has a contextual explanation and a link to its mathematical background.

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MM

Symbol M

M is part of the quantity the equation computes from the expression on the right.

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M0M_0

Symbol M_0

M0M_0 is one of the signed contributions combined to compute the quantity on the left.

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HintH_{\rm int}

Symbol H_rm int

HrH_rm int is one of the signed contributions combined to compute the quantity on the left.

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c2c^2

Symbol c^2

The square of c: multiply c by itself.

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=

=

The expressions on both sides represent the same quantity under the stated assumptions.

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subscript

subscript

The lower label selects a particular version, component, or indexed member of the quantity. For example, x₀ and xₜ can be values at different positions.

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superscript

superscript

A raised number can be a power. When it is a label or bound, it selects a case or the upper limit of a sum; the formula’s structure distinguishes these uses.

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How to interpret it

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What the article says around this equation

The proper-time loop LP\mathcal L_{\rm P} is where mass stops being a fixed label and becomes something an object can carry a little more or less of depending on what it is doing internally. A composite system with an internal excitation of energy Δ\Delta E above its ground configuration carries additional rest mass Δ\Delta E/c2c^2 , by ordinary mass–energy equivalence — no redefinition of either the relativistic or the everyday meaning of mass, simply the standard bookkeeping in which a system’s total rest energy Mc2c^2 includes whatever internal energy HintH_{\rm int} it holds: M=M0M_0+HintH_{\rm int}/c2c^2 . If the same object is sent along two paths that differ in proper time by Δ\Deltaτ\tau , and its…
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The proper-time loop LP\mathcal L_{\rm P} is where mass stops being a fixed label and becomes something an object can carry a little more or less of depending on what it is doing internally. A composite system with an internal excitation of energy Δ\Delta E above its ground configuration carries additional rest mass Δ\Delta E/c2c^2 , by ordinary mass–energy equivalence — no redefinition of either the relativistic or the everyday meaning of mass, simply the standard bookkeeping in which a system’s total rest energy Mc2c^2 includes whatever internal energy HintH_{\rm int} it holds: M=M0M_0+HintH_{\rm int}/c2c^2 . If the same object is sent along two paths that differ in proper time by Δ\Deltaτ\tau , and its internal state differs between the two paths — ground on one, excited on the other — then the two branches’ free-particle phases differ by

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