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As in photodissociation, this is caused by the electron distribution in the excited state being quite different from that in the ground state; hence, the structure of the initially created excited singlet (by absorption of light) is most stable at 90°, or halfway between the cis and trans forms.
Xylanases were most stable at pH 8 10.
We have found that within each series armchair nanotubes are the most stable at short lengths, while zigzag nanotubes are the most stable at long lengths.
Chemical stability studies indicated that MTX cIBR was most stable at pH 6.0.
The purified GlyDH displayed an optimum activity at pH 7.0 7.5 and was the most stable at pH 8.5 9.5.
The GDH showed the highest activity towards hexanol at pH 4.0 and 30 °C, and was the most stable at pH 2.2 7.0 and ≤40 °C.
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Chromosomal analysis of the most stable line at passage 41 was added at 60 passage.
For example, at low speeds, trotting is the most stable, and at high speeds galloping is the most stable [13].
A Darwinian-like logic can be used to build such protonated AA complexes, as the most stable complex at any stage gives the best structure at the next generation.
Interestingly, MnP4 appears as the most stable POD at both acidic and moderately alkaline pH, and VP2 was stable at pH 3 but unstable at pH 9 (Additional file 1: Figure S4B).
From the free energy diagram it is also deduced that the crystal phase is thermodynamically the most stable one at any temperature below its melting point, although at low undercoolings the mesophase is always formed first for kinetic reasons.
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