← All parts of this equation

Equation 85 · Part 4 · No Particle Without a Cosigner

Symbol e^2pi u

u g(u)=24 u2/(e2πu−1)u\,g(u) = 24\,u^2/(e^{2\pi u}-1)
e2πue^{2\pi u}

What this part means

e2e^2pi u is one of the signed contributions combined to compute the quantity on the left.

Its job in the formula

e2e^2pi u is one of the signed contributions combined to compute the quantity on the left.

The passage around this formula

…zero, the integral of the absolute value of its derivative over all u is exactly twice that maximum, with no need to evaluate the integral directly. Finding the maximum of u\,g(u) = 24\,u2u^2/(e2πue^{2\pi u}-1) means solving e2πu(1−πu)e^{2\pi u}(1-\pi u)=1 , the same class of transcendental equation that fixes the peak of a Planck spectrum weighted by an extra power of frequency. Solved by Newton’s method to five-figure precision, the nontrivial root is u∗u^\ast ≈\approx 0.25363 , at which u∗u^\ast g(u∗u^\ast) ≈\approx 0.3937 . The…

Read this part in the article →

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.

Open the illustrated exponents: repeated multiplication and powers guide →

See this notation across published equations →

Sources cited in the article section

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