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Vibrational spectroscopy shows that isotopically heavier diatomic molecules have higher bond energies.
Light molecules have higher average speeds than do heavy molecules at the same temperature.
The percent inhibition efficiencies (P%) increase if the molecules have higher HOMO energies and lower LUMO energies [58].
Fluorinated molecules have higher oxidation potentials than their non-fluorinated counterparts due to the strong electron-withdrawing effect of the fluorine atom.
At a higher temperature of 75 °C, the CO2 molecules have higher energy and, hence, can escape from the surface easily.
This hydrophobicity favors the growth of long micelles, since hydrophobic molecules have higher end-cap energies, and end-cap energy is exponentially proportional to the micellar length (Berret 2006; Raghavan and Kaler 2001; Raghavan et al. 2002).
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Molecular weight: In general, liquids with large molecules have high viscosity.
Carbon nanotubes can be filled with DNA or peptide molecules, have high potential in gene or peptide storage, and delivery system in molecular therapy of diseases [57].
Hemoglobin molecules have high affinity to gases as CO or CO2; therefore, if they are retained they should work as an efficient retainer and catalyst.
The low boiling point of water did not favor the growth and ripening of crystals (Figure 4). 2) Molecular weight: In general, liquids with large molecules have high viscosity.
All of the three acceptor-donor-acceptor type molecules have high conjugations and planar energy-minimized conformations, which are beneficial to forming ordered molecular packing and facilitating charge transport in thin films.
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