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Only one of two independent molecules is shown.
Transient motion of the diffusing molecules is shown to violate the Fick's law.
A submonolayer equivalent of DCM molecules is shown to absorb and re-emit 2.2% of the incident resonant photons when coupled to the JCCR enhancement structure, compared to 0.1% for the bare film of same thickness on quartz.
The property of graphene to quench fluorescence of these aromatic molecules is shown to be associated with photo-induced electron transfer, on the basis of fluorescence decay and time-resolved transient absorption spectroscopic measurements.
Finally, the key ingredient of the Electron Localization Function (ELF) of DFT, which has been designed to visualize the electronic shells and the distribution of bonding and nonbonding pairs of the valence electrons in molecules, is shown to measure the non-additive Fisher information in the MO resolution.
Overall structure of the two interlocked Fc molecules is shown in pink and blue.
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The observed water molecules are shown as b.
Backbone-coordinated water molecules are shown as in c.
Water molecules are shown as red spheres and bound Na+ ions are shown as purple spheres.
The two independent molecules are shown in black and red, respectively.
The initial positions of the 19 TDG molecules are shown in van der Waal spheres.
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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