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I-structure

Type-n structures are formally the out-of-phase transition states between two type-I structures, even if there is no measurable banier. [Pg.360]

CM Topham, N Snmvasan, CJ Thorpe, IP Ovenngton, NA Kalsheker. Comparative modelling of major house dust mite allergen der p I Structure validation using an extended environmental ammo acid propensity table. Protein Eng 7 869-894, 1994. [Pg.311]

Ohlsson, I., Nordstrom, B., Branden, C.-I. Structural and functional similarities within the coenzyme binding domains of dehydrogenases. /. Mol. Biol. 89 339-354, 1974. [Pg.64]

Campbell, J.W., Watson, H.C., Hodgson, G.I. Structure of yeast phosphoglycerate mutase. Nature 250 301-303, 1974. [Pg.65]

We have now connected four adjacent strands of the barrel in a simple and logical fashion requiring only short loop regions. The result is the Greek key motif described in Chapter 2, which is found in the large majority of antiparallel (i structures. The two cases represent the two possible different hands, but in all structures known to us the hand that corresponds to the case where (i strand n is linked to (3 strand n + 3 as in Figure 5.10a is present. [Pg.74]

M. Schoen, D. J. Diestler, J. H. Cushman. Fluids in micropores. I. Structure of a simple classical fluid in a slit-pore. J Chem Phys 27 5464-5476, 1987. [Pg.68]

Chemical Name 1 -Ethenyl-2-pyrrolidinone homopolymer compound with iodine Common Name PVP-I Structural Formula ... [Pg.1270]

From the obtained trajectories the following structural and electronic properties were extracted (i) structure factors, (ii) stability of Sn complexes, in particular, the Zintl anions, and (iii) the electrical conductivities - which yield answers to the questions mentioned in the first paragraph. [Pg.277]

In terms of th[Pg.620]

BurJ81 Burdett, J. K., McLarnan, T. J. A study of the arsenic, black phosphorus and other structures derived from rock salt by bond-breaking processes. I. Structural enumeration. J. Chem. Phys. 75 (1981) 5764-5773. [Pg.138]

Fig. I. Structure of the model compound. R and R represent the recognition sites.----, Hydrogen bonding... Fig. I. Structure of the model compound. R and R represent the recognition sites.----, Hydrogen bonding...
Serre, J., and Pullman, A., J. chim. phys. 50, 447, "Recherches thdoriques sur les composes ac tyleniques. I. Structure 61cctro-nique dc l acdtylene."... [Pg.336]

Goto, T., Iio, H., Inoue, S., and Kakoi, H. (1974). Squid luminescence I. Structure of Watasenia oxyluciferin, a possible light-emitter in the bioluminescence of Watasenia scintillans. Tetrahedron Lett., pp. 2321-2324. [Pg.398]

Kishi, Y., etal. (1966a). Cypridina bioluminescence I structure of Cypridina luciferin. Tetrahedron Lett., pp. 3427-3436. [Pg.410]

I Structural Chemistry of Manganese, Dioxide an Related Compounds... [Pg.90]

Fig. 4. A model representing a possible structure for TiO-i (Structured), composed of staggered strings of oclahedra (Fig. 3) combined by sharing octahedron corners only. Fig. 4. A model representing a possible structure for TiO-i (Structured), composed of staggered strings of oclahedra (Fig. 3) combined by sharing octahedron corners only.
I. Structure Types with Chain Fragments (Bj, 83, 84 Groups). [Pg.171]


See other pages where I-structure is mentioned: [Pg.285]    [Pg.359]    [Pg.360]    [Pg.362]    [Pg.9]    [Pg.19]    [Pg.23]    [Pg.29]    [Pg.37]    [Pg.231]    [Pg.1]    [Pg.6]    [Pg.1312]    [Pg.193]    [Pg.87]    [Pg.89]    [Pg.330]    [Pg.73]    [Pg.80]    [Pg.85]    [Pg.86]    [Pg.98]    [Pg.394]    [Pg.171]    [Pg.172]    [Pg.176]    [Pg.180]    [Pg.184]    [Pg.186]    [Pg.188]   
See also in sourсe #XX -- [ Pg.793 ]

See also in sourсe #XX -- [ Pg.186 ]




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