← All parts of this equation

Equation 6 · Part 4 · Radioactive Clocks: How Nuclear Physics Gave Evolution Its Time

Symbol N_207

N206N238=eλ238t−1,N207N235=eλ235t−1,\frac{N_{206}}{N_{238}} = e^{\lambda_{238} t} - 1, \qquad \frac{N_{207}}{N_{235}} = e^{\lambda_{235} t} - 1,
N207N_{207}

What this part means

the radiogenic lead atoms accumulated from each chain and N238N_{238}.

Its job in the formula

N2N_207 occurs above the fraction bar. The numerator is divided by the entire denominator below it.

Where the article explains it

where N206N_{206} and N207N_{207} are the radiogenic lead atoms accumulated from each chain and N238N_{238} , N235N_{235} are the surviving parent uranium atoms.

The passage around this formula

…the same mineral grain simultaneously, from the same crystallization event, a single zircon crystal reports two ages that must agree if nothing has disturbed the system since: N206N238=eλ238t−1,N207N235=eλ235t−1\frac{N_{206}}{N_{238}} = e^{\lambda_{238} t} - 1, \qquad \frac{N_{207}}{N_{235}} = e^{\lambda_{235} t} - 1. where N206N_{206} and N207N_{207} are the radiogenic lead atoms accumulated from each chain and N238N_{238} , N235N_{235} are the surviving parent uranium atoms. Plotting these two ratios against each other traces a curve, the concordia, on which a grain that has behaved as a closed system since crystallization must fall; a grain…

Read this part in the article →

Learn the underlying idea

A subscript is a label attached below a symbol. It often selects a time step, component, category, or member of a sequence.

Open the illustrated subscripts: which member of a family? guide →

See this notation across published equations →

Sources cited in the surrounding passage

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