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Published equation contexts

πs=cL(s)−cA(s)cL(s)\pi_s = \frac{c_L(s) - c_A(s)}{c_L(s)}

Why this formula appears here

where αs\alpha_s is the baseline economic share of task s and πs\pi_s = cL(s)−cA(s)cL(s)\frac{c_L(s) - c_A(s)}{c_L(s)} represents the proportional cost reduction achieved on that task [ 2 ] .

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With a fixed numerator, increasing a nonzero denominator reduces the fraction. Read it with the definitions, units, and assumptions supplied by the article.

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Published contexts (1)

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πs=cL(s)−cA(s)cL(s)\pi_s = \frac{c_L(s) - c_A(s)}{c_L(s)}

Equation 13 · AI Economics & Systems

The Jagged Frontier Fallacy: Deconstructing Harvard's Canonical AI Productivity Study

This equation states an equality: the expressions on both sides have the same value under the article’s assumptions.

where αs\alpha_s is the baseline economic share of task s and πs\pi_s = cL(s)−cA(s)cL(s)\frac{c_L(s) - c_A(s)}{c_L(s)} represents the proportional cost reduction achieved on that task [ 2 ] .

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