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Length, comparison

Primer Ampli- Length Comparison with Anderson ... [Pg.165]

The lignin contents and monomeric compositions were also compared between fractions of internodes as follows Each of the upper and lower internodes previously studied was divided into three parts of equal length. Comparison of lignin contents and monomeric compositions of upper and lower parts of each internode revealed only weak differences (data not shown). [Pg.189]

Results from local density models and BP, BLYP and EDF 1 density functional models are, broadly speaking, comparable to those from 6-3IG models, consistent with similarity in mean absolute errors. As with bond length comparisons, BLYP models stand out as inferior to the other non-local models. Both B3LYP/6-31G and MP2/6-31G models provide superior results, and either would appear to be a suitable choice where improved quality is required. [Pg.118]

Consistent with earlier remarks made for bond length comparisons, little if any improvement results in moving from the 6-3IG to the 6-311+G basis set for Hartree-Fock, local density and density functional models, but significant improvement results for MP2 models. [Pg.118]

Fig. 31. Molecular structure of Ba5(thd)9(H20)3(0H) showing the pyramidal Ba5 unit (t-Bu groups have been omitted for clarity). In this formulation 0(10-0(13) are assigned as HiO ligands and 0(10) as an OH ligand. Assignment of hydrogen atom locations was based on bond length comparisons. (Redrawn from Ref. 157.)... Fig. 31. Molecular structure of Ba5(thd)9(H20)3(0H) showing the pyramidal Ba5 unit (t-Bu groups have been omitted for clarity). In this formulation 0(10-0(13) are assigned as HiO ligands and 0(10) as an OH ligand. Assignment of hydrogen atom locations was based on bond length comparisons. (Redrawn from Ref. 157.)...
Table 4.2. Effect of offset corrections on agreement between theoretical and experimental bond lengths. Comparison of N-N and C-N bond lengths in 1,2,4-triazole, between HF/3-21G theoretical calculations and single crystal neutron diffraction analysis at 15 K. [199]. (For atomic notation see Fig. 3.2)... Table 4.2. Effect of offset corrections on agreement between theoretical and experimental bond lengths. Comparison of N-N and C-N bond lengths in 1,2,4-triazole, between HF/3-21G theoretical calculations and single crystal neutron diffraction analysis at 15 K. [199]. (For atomic notation see Fig. 3.2)...
Table 4. Static stabilization at constant length comparison of different copolymers (250 °C, 1 hour)... Table 4. Static stabilization at constant length comparison of different copolymers (250 °C, 1 hour)...
Comparison of determinantal and CSF expansion lengths. Comparison of the numberof determinants and the number of CSFs for full Cl and RCI wavefunction expansions. All wavefunctions are singlets with the number of orbitals equal to the number of electrons. Higher fractions of open-shell CSFs result in higher expansion length ratios for a particular wavefunction type. Expressions for these expansion lengths are given in... [Pg.95]

Because the inch-centimeter relationship is defined to be exact, all English-metric unit comparisons of length are also exact when used with the number of digits shown below. This exactness is only true for length comparisons. [Pg.21]

Table 6.3 Wire length comparison of standard cell placements... Table 6.3 Wire length comparison of standard cell placements...
In Table 6.5 and Fig. 6.11, we list the wire length comparison between 2-D and 2.5-D mixed placements. We observe 21.2% and 28.9% reductions in total wire length and worst-case length, respectively. [Pg.138]

Boundary Slip of Liquids, Fig. 2 The slip velocity and slip length comparison between hydrophilic and hydrophobic surfaces as a function of shear rate... [Pg.197]

Competitive benchmarking generally focuses on direct competitors within the same industry and with specific comparable business operations, or on indirect competitors in related industries (perhaps key customers or suppliers) having complementary business operations. There are often practical difficulties with sourcing information, and activities maybe limited to arm s-length comparisons. [Pg.101]

Figure 6.13 Length comparison of thermal images at 3.0 V power supply. Figure 6.13 Length comparison of thermal images at 3.0 V power supply.
Figure 1.6 [a] Cost per weight and (b) cost per unit length comparison... [Pg.11]


See other pages where Length, comparison is mentioned: [Pg.139]    [Pg.485]    [Pg.292]    [Pg.243]    [Pg.140]    [Pg.141]    [Pg.26]    [Pg.186]    [Pg.100]    [Pg.398]    [Pg.422]    [Pg.304]    [Pg.130]    [Pg.92]    [Pg.81]    [Pg.144]    [Pg.579]    [Pg.13]    [Pg.32]    [Pg.313]    [Pg.247]   
See also in sourсe #XX -- [ Pg.293 , Pg.294 , Pg.294 , Pg.295 ]




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