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Published equation contexts

dgLg>Cgd_gL_g>C_g

Why this formula appears here

Let gate g cost CgC_g , detect a latent defect with probability dgd_g , and avert downstream expected loss LgL_g . Run it when dgLg>Cgd_gL_g>C_g. with additional value for information and regulatory requirements. The quantities are rarely known precisely; the inequality structures the decision.

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dgd_g

Symbol d_g

dgd_g is a part of this expression. Its role is fixed by the surrounding article and by the operations shown in the formula.

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CgC_g

Symbol C_g

CgC_g is a part of this expression. Its role is fixed by the surrounding article and by the operations shown in the formula.

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How to interpret it

Read this expression with the definitions, units, and assumptions supplied by the article.

Published contexts (1)

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dgLg>Cg,d_gL_g>C_g,

Equation 12 · AI Agents & Systems

Engineering Reliable Codex Workflows with Instructions, Tests, Sandboxes, and Human Gates

This equation states a bound: one expression must stay on the indicated side of the other under the article’s assumptions.

Let gate g cost CgC_g , detect a latent defect with probability dgd_g , and avert downstream expected loss LgL_g . Run it when dgLg>Cgd_gL_g>C_g. with additional value for information and regulatory requirements. The quantities are rarely known precisely; the inequality structures the decision.

Meanings in this article

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