Sentence examples for binding energy associated with from inspiring English sources

Exact(3)

The changes in binding energy associated with each variation were generally additive upon combining variations, validating the basis of the algorithm.

The binding energy associated with formation of the tubules was quite low, around ∼2 RT (4.5 kJ mol−1), which is in agreement with the reversibility of the process.

Additional interactions with Met in ADAM17, GVST in ADAMTS-4 and GHHS in ADAMTS-5 may compensate for the loss of binding energy associated with the loss of interactions involving Phe.

Similar(57)

Using this platform, we measured the binding energies associated with all possible combinations of 10 nucleotides flanking the known consensus DNA target interacting with two model yeast TFs, Pho4 and Cbf1.

The performance of a set range of several density functionals from the representative families of pure generalized gradient approximation (GGA), meta-GGA, hybrid, long range corrected (LRC) and dispersion corrected functionals were considered for their assessment in calculating binding energies associated with gas molecules (CO2 and N2) with the nitrogen containing model systems.

The measurement of the Wien effect in colloidal suspensions is a straightforward and rapid method established by Li et al. [22] for determining binding energies associated with ion adsorption.

This approach enabled the authors to build a shape-to-affinity model from the shape parameters derived from unmethylated sequences of the form NNN|CGN, as well as to predict, for each DNA sequence, the change in binding free energy associated with methylation of the CpG dinucleotide downstream of the cleavage site.

The binding energy B is the energy associated with the mass difference between the Z protons and N neutrons considered separately and the nucleons bound together (Z + N) in a nucleus of mass M. The formula is B = (Zmp + Nmn − M c2, where mp and mn are the proton and neutron masses and c is the speed of light.

The binding energy B is the energy associated with the mass difference between the Z protons and N neutrons considered separately and the nucleons bound together (Z + N) in a nucleus of mass M. The formula is B = (Zmp + Nmn − M c2, where mp and mn are the proton and neutron masses and c is the speed of light.

The information resulting from our model systems is distilled into a series of selectivity maps that can be used to read off the relative free energy associated with binding of different ions, and to provide an estimate of the importance of the various factors.

Effective affinity optimization requires an accurate theoretical understanding of the free energy associated with binding, which is dependent on bonding (solvation and intermolecular interactions) and the conformations of the receptor ligand assembly (before and after binding).

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