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The cellulose-urea interaction is dependent of temperature, in which hydrogen bonding between cellulose and urea decreased gradually with temperature increasing at temperature above 265 K and it reached a plateau phase with temperature above 283 K.
Cellulose-urea interaction energy and hydrogen bond number were also calculated as a function of temperature and the result of calculation further proved the hypothesis that there exists a dominative hydrogen bonding pattern between cellulose and urea, in which oxygen atoms of urea as proton-acceptors and hydroxyl hydrogen atoms of cellulose as proton-donors.
In ternary solution, presence of TMAO makes protein-urea electrostatic interaction more unfavorable when compared to that for binary urea solution.
The results revealed that the year, WRA, urea, and their interactions had significant effects on N and water use efficiencies, yield and benefits.
It thus appears that 3M urea also disrupts interactions stabilizing the association of the three U snRNAs with C complex.
Based on these results, we hypothesized that 3M urea disrupts key interactions stabilizing C complex and leads to its separation into at least two sub-complexes, one of which contains the 5' exon and other containing the lariat-intron intermediate.
It also supports our hypothesis that 3M urea treatment disrupts interactions that hold the 5' exon and lariat-intron intermediate together in C complex after the first step of chemistry.
These endcapped polymers are able to self-assemble via complementary supramolecular interactions, specifically urea-urea and nitro-urea hydrogen bonding, to afford materials with dramatically increased mechanical and thermal properties when compared to those of the uncapped polyethylene glycol precursors.
The self-recognition model based on the interaction between urea and carboxylate anion could induce the molecules to assemble into a highly organized form.
The 4% urea × 4% molasses interaction resulted in maximum DM, CP, TP, NH3-N after 40 days of fermentation period and this combination was used for large scale production of FWS to evaluate its feeding value for calves.
Moreover, the interaction of urea with the metal film is modified by the addition of Mn, switching from solid-like to liquid-like at the Mn-alloying potential threshold.
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