Sentence examples for system n is from inspiring English sources

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Although the system N is incompletable and undecidable, it has been discovered by the Polish logician M. Presburger and by Skolem (both in 1930) that arithmetic with addition alone or multiplication alone is decidable (with regard to truth) and therefore has complete formal systems.

Note that we have N unit cells in the device region (i = 1,…,N) and that in our system, N is equal to 5. The retarded and advance Green functions, Gr and Ga, are defined by G r [ ( E + i η ) S − H ] = I Open image in new window (2).

As mentioned, QC methods are computationally expensive: the scaling of the computer effort and storage of high-level computations with the size of the system (N) is harsh, reaching, for example, N7, for the most expensive and most accurate wavefunction-based methods, such as Coupled Cluster [10 12].

The SVD of the weighted oblique projection is calculated and the order of the system (N) is determined as the number of principal singular vales in Σ, leading to the identification of the principal subspaces U1 and V1, W 1 O i W 2 = U Σ V = ( U 1 U 2 ) Σ 1 0 0 Σ 2 V 1 T V 2 T = U 1 Σ 1 V 1 T (6).

According to the theory of thermodynamics [31], the total kinetic energy of all the atoms of the system generally satisfies the following equation: {E}_{mathrm{k}}=sum limits_{i=1}^Nfrac{1}{2}{mv_i}^2=frac{3}{2}{Nk}_BT (2)whEke Ek is the total kinetic energy of the system; N is the total number of atoms; KB is the Boltzmann constant; T is the thermodynamic temperature.

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where Etotal(n) is the cohesive energy of the system, n was the number of H atoms removed from a graphane sheet, and μH (μgraphane) is the chemical potential of the constituent H (graphane) at a given state.

Least-squares regressions on small-world-ness S and number of edges m against size of system n were performed on log10-transformed data to normalize magnitude of errors across range of n.

Following the procedure used in [38], we fit the average internal energy per peptide with an equation of the form: e(N) = e∞+ANα, where e∞ is the asymptotic value of the internal energy for infinite systems, N is the system size (i.e. the number of peptides or proteins used in the simulation) and α is the scaling exponent.

For a large simulation system where n is big, this algorithm could be intolerably slow.

This is illustrated in Figure 5 where the amplitude σ of the common signal is kept fixed but the system size N is varied.

Father: It is funny in terms of the, whether it is family or I assume, in a sense, whether it's the system, that 'N' is not the only fourteen year old incontinent child.

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