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We calculate observed agreement by calculating the frequency with which the two measurements agreed: We calculate expected agreement by first calculating the expected values of the cells in the 2×2 table using the marginal frequencies, then using those cell numbers to calculate the frequency with which the two measurements are expected to agree: For each stone, calculate Krumbein's Index as follows `"Krumbein's Index" = ((bc)/a^2)^(1/3)` Krumbein's Index (K) K must be between 0 and 1. K = 1 for a perfectly spherical pebble. The lower that K is, the less spherical the pebble. (e) Cailleux’s Flatness Index. The raw data needed for each pebble are the lengths of the a, b and c axes.

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