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Sectional representation

Fig. 9. Cucurbituril inclusion chemistry (a) tridimensional stmcture of cucurbit[6]uril (b) conjectured cross-sectional representation of a host—guest... Fig. 9. Cucurbituril inclusion chemistry (a) tridimensional stmcture of cucurbit[6]uril (b) conjectured cross-sectional representation of a host—guest...
Gelbard, F., Tambour, Y. and Seinfeld, J.H., 1980. Sectional representations for simulating aerosol dynamics. Journal of Colloid and Interfacial Science, 76, 541. [Pg.307]

Fig. 20.6 (a) XRD of as-synthesized AgSCi2H25 precursor with indexes of reflections, (b) Cross-sectional representation of the layered crystal structure of AgSCi2H25. (c) TEM image of... [Pg.301]

Fig. 7. Cross-sectional representation of the cavities in 8 when crystallised with benzene. The cavities, which are linked along two-fold axes parallel to c, are shown as the van der Waals surfaces due to the hydrogen atoms of the host molecules. Benzene guest molecules are shown in their major orientation 13>... Fig. 7. Cross-sectional representation of the cavities in 8 when crystallised with benzene. The cavities, which are linked along two-fold axes parallel to c, are shown as the van der Waals surfaces due to the hydrogen atoms of the host molecules. Benzene guest molecules are shown in their major orientation 13>...
Figure 13.1 A cross-sectional representation of the ocular surface, highlighting the conjunctival tissue as a thick black contour. Three distinct areas of the conjunctiva are labeled along with adjacent ocular tissues. Figure 13.1 A cross-sectional representation of the ocular surface, highlighting the conjunctival tissue as a thick black contour. Three distinct areas of the conjunctiva are labeled along with adjacent ocular tissues.
Figure 6. Evolution of the membrane structure as a function of water content, 1 (moles of water per mole of sulfonic acid sites). The pictures are cross-sectional representations of the membrane where the gray area is the fluorocarbon matrix, the black is the polymer side chain, the light gray is the liquid water, and the dotted line is a collapsed channel. (Reproduced with permission from ref 89. Copyright 2003 The Electrochemical Society, Inc.)... Figure 6. Evolution of the membrane structure as a function of water content, 1 (moles of water per mole of sulfonic acid sites). The pictures are cross-sectional representations of the membrane where the gray area is the fluorocarbon matrix, the black is the polymer side chain, the light gray is the liquid water, and the dotted line is a collapsed channel. (Reproduced with permission from ref 89. Copyright 2003 The Electrochemical Society, Inc.)...
Fig. 4 A schematic illustration of the cross-sectional representation of the DNA hybridization reaction occurring between a pair of electrode digits... Fig. 4 A schematic illustration of the cross-sectional representation of the DNA hybridization reaction occurring between a pair of electrode digits...
Fig. 7 Topographic images, SFM scan lines, and schematic cross-sectional representation of glass slides with chromium patterns and the formation of the polymer and copolymer layer A cleaned sample, B sample modified with SBDC, C after photopolymerization of styrene for 5h, D after photopolymerization of styrene for 15 h, and E after photopolymerization of styrene for 15 h and subsequently methyl methacrylate for 10 h. (Reproduced with permission from [45] American Chemical Society)... Fig. 7 Topographic images, SFM scan lines, and schematic cross-sectional representation of glass slides with chromium patterns and the formation of the polymer and copolymer layer A cleaned sample, B sample modified with SBDC, C after photopolymerization of styrene for 5h, D after photopolymerization of styrene for 15 h, and E after photopolymerization of styrene for 15 h and subsequently methyl methacrylate for 10 h. (Reproduced with permission from [45] American Chemical Society)...
Fig. 4. Conjectured cross-sectional representation of complexes of cucurbituril plus n-butylam-monium ion, as well as with cyclopentanemethylammonium ion. Outlines are drawn to van der Waals radii (maximum projection for all atoms upon axial rotation of the rewptor, crystallographi-cally determined interatomie distances for cucurbituril). Two N-H- 0=C hydrogen bonds may form, but the third projects incorrectly for coordination to the receptor from [7] with... Fig. 4. Conjectured cross-sectional representation of complexes of cucurbituril plus n-butylam-monium ion, as well as with cyclopentanemethylammonium ion. Outlines are drawn to van der Waals radii (maximum projection for all atoms upon axial rotation of the rewptor, crystallographi-cally determined interatomie distances for cucurbituril). Two N-H- 0=C hydrogen bonds may form, but the third projects incorrectly for coordination to the receptor from [7] with...
Fig. 5. Conjectured cross-sectional representation of complex for cucur-bituril plus C HjNHfCHjj NH-(CHjj NHj in acidic and in alkaline solution. Outlines are drawn as for Fig, 4. In all probability a slight buckling of the hexyl chain actually occurs in the upper situation, better filling the cavity and bringing the ammonium ions into improved alignment with the carbonyl dipoles of the receptor, from [8] with permission... Fig. 5. Conjectured cross-sectional representation of complex for cucur-bituril plus C HjNHfCHjj NH-(CHjj NHj in acidic and in alkaline solution. Outlines are drawn as for Fig, 4. In all probability a slight buckling of the hexyl chain actually occurs in the upper situation, better filling the cavity and bringing the ammonium ions into improved alignment with the carbonyl dipoles of the receptor, from [8] with permission...
Fig. 7. Conjectured cross-sectional representation of intermediate cycloaddition complexes substrates + cucurbituril and product -t- cucurbituril (R = H or t-Bu). Outlines are drawn as for Fig. 4. Shaded region corresponds to strain-induced compression of substrates, promoting reaction (cf. Sect. 3.2) from [15] with permission... Fig. 7. Conjectured cross-sectional representation of intermediate cycloaddition complexes substrates + cucurbituril and product -t- cucurbituril (R = H or t-Bu). Outlines are drawn as for Fig. 4. Shaded region corresponds to strain-induced compression of substrates, promoting reaction (cf. Sect. 3.2) from [15] with permission...
Scheme 2 shows a cross-sectional representation of a two-stranded a-helical coiled coil of 35 residues per polypeptide chain. The design of this idealized coiled coil incorporated the factors that maximize coiled-coil stability, for example, the hydrophobicity and packing effects in the hydrophobic core, intrachain electrostatic attractions, helical propensity contribution s[2324 from residues outside of the hydrophobic interface, and interchain electrostatic interactions.125 ... [Pg.69]

Scheme 2 Cross-Sectional Representation of a Two-Stranded a-Helical Coiled Coil Formed by the Homodimerization of 35-Residue Polypeptide ChainsI26111... Scheme 2 Cross-Sectional Representation of a Two-Stranded a-Helical Coiled Coil Formed by the Homodimerization of 35-Residue Polypeptide ChainsI26111...
Scheme 7 Amino Acid Sequences of Parallel Homostranded Coiled Coils C2A16 (a) and C33A16 (b) and Antiparallel Heterostranded Coiled Coil C2A16/C33A16 (c), with Cross-Sectional Representations of Disulfide-Bridged Parallel (d) and Antiparallel (e) Coiled Coilsl35la b a 15 21... Scheme 7 Amino Acid Sequences of Parallel Homostranded Coiled Coils C2A16 (a) and C33A16 (b) and Antiparallel Heterostranded Coiled Coil C2A16/C33A16 (c), with Cross-Sectional Representations of Disulfide-Bridged Parallel (d) and Antiparallel (e) Coiled Coilsl35la b a 15 21...
An enlarged cross-sectional representation of a segment of the cell membrane. Also shown (upper left) is a general depiction of the cell. [Pg.286]

Fig. 14.24 Detailed cross-sectional representation of the die exit and the parison formed in the blow molding process, with the key design variables and the thickness and outer diameter swell. Fig. 14.24 Detailed cross-sectional representation of the die exit and the parison formed in the blow molding process, with the key design variables and the thickness and outer diameter swell.
Schematic cross-sectional representations of the flow of Newtonian (left, N) and polymeric (right, P) fluids in select geometries. The fluid is shaded in all cases. Top N exhibits a vortex near the rod, while P climbs the rod. Center N contracts upon exiting the die, while P swells. Bottom N coating does not provide restoring force to center wire being pulled through it, while P does. Schematic cross-sectional representations of the flow of Newtonian (left, N) and polymeric (right, P) fluids in select geometries. The fluid is shaded in all cases. Top N exhibits a vortex near the rod, while P climbs the rod. Center N contracts upon exiting the die, while P swells. Bottom N coating does not provide restoring force to center wire being pulled through it, while P does.
The book is divided into two main sections - Representations and Realities . Of course, I am aware that the realities that I offer in the second part of the book are simply my representations of the realities as I see and reconstruct them. My hope is that others will find them a persuasive, or at least a suggestive, account, not that they will be treated as the end of history so far as my subject is concerned. [Pg.8]

Fig. 11 Tentative, idealised, sectional representation of microphase separation and organization in a PMPS-h-PI film... Fig. 11 Tentative, idealised, sectional representation of microphase separation and organization in a PMPS-h-PI film...
Figure 2.54. Cross-section representation of a powdered cement particle. Dicalcium silicate (Ca2Si04), tricalcium silicate (Ca3Si05), tricalcium aluminate (Ca3Al20g), and tetracalcium aluminoferrite (Ca4Al Fe(2-n)07) crystallites are abbreviated as C2S, C3S, C3A, and C4AF, respectively. Reproduced with permission from Chem. Mater. 2003, 15,3074. Copyright 2003 American Chemical Society. Figure 2.54. Cross-section representation of a powdered cement particle. Dicalcium silicate (Ca2Si04), tricalcium silicate (Ca3Si05), tricalcium aluminate (Ca3Al20g), and tetracalcium aluminoferrite (Ca4Al Fe(2-n)07) crystallites are abbreviated as C2S, C3S, C3A, and C4AF, respectively. Reproduced with permission from Chem. Mater. 2003, 15,3074. Copyright 2003 American Chemical Society.
To construct a cross-sectional representation of these observations, the data were considered to lie along chords across a circle. The chords were assembled as if they lay in a single vertical plane to do this, they were translated so that the closest point of approach (CPA) to the ring center for each... [Pg.343]

Fig. 3 Model of the surface topography of a PZLL-PB-PZLL film A top and side view B cross sectional representation. The shaded areas represent PB domains. (Reproduced with permission from [31]. Copyright 1982. The Society of Polymer Science, Japan)... Fig. 3 Model of the surface topography of a PZLL-PB-PZLL film A top and side view B cross sectional representation. The shaded areas represent PB domains. (Reproduced with permission from [31]. Copyright 1982. The Society of Polymer Science, Japan)...
Fig. 8.7 Sectional representation of a marumerizer-type sphero-nizer (courtesy LCI Corp., Charlotte, NC. USA). Fig. 8.7 Sectional representation of a marumerizer-type sphero-nizer (courtesy LCI Corp., Charlotte, NC. USA).
Rgure 2.3. Schematic cross-section representation of the construction of some typical commercial calomel electrodes A) fiber or porous-ceramic Junction type and (B) ground glass-sleeve type. The electrolyte leak rate of the fiber or porous-ceramic junction type is quite low, typically 1-10 fJ/Ar that for the sleeve type around 100 ft//Ar. [Pg.20]

Fig. 6 (continued) diagrams. The arrows inside the wheels in the open state represent distance changes from close to open (outward is increase and inward, decrease), (e) Modeling the conformational rearrangements in TM2. Up, graphical representation showing the type and extent of individual helical movements (red = closed and blue = open), bottom, calibrated cross-sectional representation of the conformational changes. Adapted from [76]... [Pg.146]

Figure 9. Cross-section representation of an altm-thin (asymmetric) liquid... Figure 9. Cross-section representation of an altm-thin (asymmetric) liquid...
The drawing is a cross-sectional representation of a superficially porous particle made by the process of this invention. [Pg.224]

FIGURE 5.2 A cross-sectional representation of one turn of the cochlea. [Pg.77]

Fig. 21.13 (a) Scheme of cross-sectional representation of cellulose nanocrystal indicating the occurrence of the surface TEMPO-mediated oxidation of available hydroxyl groups (stuface crystal representations), (b) aqueous 0.53% (w/v) suspensions of cellulose whiskers observed between crossed polarizer s (a) before and (b) after TEMPO-mediated oxidation. Reproduced with permission from Habibi et al. (2006). Copyright 2006 Springer... [Pg.560]

The TART," ALICE, and MCN" codes were used to determine the critical radius of a sphere of UH, where the U enrichment varied from 20 to 100%. All codes derived their cross-section information from the same evaluated library." The TART and ALICE codes use continuous energy neutrons and the same 175-group cross-section structure, while MCN is continuous in both neutron energy and cross-section representation. The results" of these calculations are in Fig. 1. The ALICE. and TART codes were used to calculate 41 fast" and 4 slow experimental critical assemblies." " Forty of the fast assemblies have Keff between 0.984 and 1.014 for... [Pg.529]

E. F. PLECHATY, Monte Carlo Calculations of Hydrogen Moderated Uranium Systems Using the Probability Table Method and Multigroup Cross Section Representations, UCID-17455, Lawrence Livermore Lab. (1977). [Pg.530]


See other pages where Sectional representation is mentioned: [Pg.17]    [Pg.48]    [Pg.446]    [Pg.7]    [Pg.153]    [Pg.295]    [Pg.296]    [Pg.371]    [Pg.345]    [Pg.78]    [Pg.19]    [Pg.23]    [Pg.88]   
See also in sourсe #XX -- [ Pg.300 ]




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