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ca. 300 400 m, growing on the crevices of peridotite breccia rock face in an ultramafic area.
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From these beginnings, health economics at LSH&TM grew to international prominence.
Small birches (h < 0.4 m) grew a bit faster than spruces having the same height.
In case where M grows asymptotically large, we have lim M → ∞ γ M, x Γ ( M ) = 0. (33).
Plants at 175 m grow best, as this altitude has extended the drawdown period for plants to grow.
From Figs. 1 5, it can be concluded that the approximate solutions approach the analytical solutions well as m grows.
This fact allows us to study how the upper and lower bounds of zmax scales as M grows large.
We may also see from Figure 2, the absolute error is smaller and smaller when m grows.
It is obvious from (9.7) and (10.8) that lim m → ∞ M m = 0 and, hence, the right-hand side of inequality (10.7) vanishes when m grows to +∞.
The LS solution is close to the Stansfield solution for M = 3, but it becomes much more suboptimal as M grows.
These so-called deterministic equivalents are tight as M grows large due to channel hardening but are usually also very accurate at small values of M and K.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com