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Rainbow colors

Turning, the western wall behind you is also without a tapestry. It has a low archway cut through it that is veiled by a strangely quiescent mist. This mist sparkles with rainbow-colored light. On the same wall, above the arched doorway, hangs another shield but this shield is concealed from view by a black cloth that hangs over it. [Pg.58]

Then, with the elven queen on one side and the Regent upon the other, process through the rainbow colored mists and forward to your destiny. [Pg.207]

Figure 10 N M R structural analysis of carrier domains. Three conformations of the PCP domain from tyrocidine synthetase (brown box) and the NMR structure of the related AGP domain from a polyketide synthase. The star symbol signifies the position of the conserved phosphopantetheinylated serine residue. The protein ribbon representations are rainbow colored from red (N-terminus) to violet. PDB codes A/H state, 2GDW H-state, 2GDX A-state, 2GDY AGP, 2AF8. Figure 10 N M R structural analysis of carrier domains. Three conformations of the PCP domain from tyrocidine synthetase (brown box) and the NMR structure of the related AGP domain from a polyketide synthase. The star symbol signifies the position of the conserved phosphopantetheinylated serine residue. The protein ribbon representations are rainbow colored from red (N-terminus) to violet. PDB codes A/H state, 2GDW H-state, 2GDX A-state, 2GDY AGP, 2AF8.
The thickness decreases with time, and one starts to observe rainbow colors as the reflected light is of the same wavelength as the thickness of the bubble (a few hundred Angstroms). [Pg.21]

The thickness of the water phase can vary from over 100 pm to less than 100 nm. Foams are thermodynamically unstable since there is a decrease in total free energy when they collapse. As the thickness increases around the wavelength of light (nm), one starts to observe rainbow colors (arising from the interference). The TLF forms at an even smaller thickness (50 A or 5 nm). [Pg.163]

The film looks black-gray, and its thickness is around 50 A (5 nm), which is almost the size of the bilayer structure of the detergent (i.e., twice the length [ca. 25 A] of a typical detergent molecule). Actually, it is a remarkable fact that one can see two molecules thin structure. The rainbow colors are observed since the light is reflected by the varying thickness of the TLF of the bubble. [Pg.163]

The quality of rainbow colors is not uniform across the bow the reasons for this are given by Fraser (1972). [Pg.180]

SPECTRO INSTRUMENTS. Spectro is used as a prefix for a wide assortment of analytical instruments. Spectro is derived from spectrum, which originally referred to the component colors that make up visible light, the so-called rainbow colors of violet, indigo, blue, green, yellow, orange, and red. A very simple device made up of a glass prism to break up sunlight into color bands is referred to as a spectroscope. Much more sophisticated instruments are available for manual manipulation and observation, which still rely on this basic, simple principle these are termed visual spectroscopes, and the field is called visual spectroscopy. [Pg.1531]

Iridescence A display of softly bright rainbow colors that may shift over time or depending on viewing light or viewing angle. [Pg.101]

Miss Muxdrdozol smiles as she strokes her silky, rainbow-colored hair. Cecilia is one of my heroes. I have a photo of her in my bedroom. She was the first person, either male or female, to get a Ph.D. in astronomy from work done at the Harvard College Observatory. ... [Pg.41]

Colors Lights The creature sees a twisting pattern of rainbow colored clouds and sparkles in the air. This pattern causes the creature to become fascinated and he/she gazes at the display as if hypnotized. Treat as the Rainbow Pattern spell for game purposes. [Pg.8]

Problem Metals cannot easily be visibly crystallized because they form very small crystallites and thus arbitrary conglomerates. Sometimes, zinc crystals can be found on polished zinc posts that look like ice flowers on a window-pane. One often finds beautiful rainbow-colored crystallized cubes of crystal... [Pg.130]

Peacock, yellow or rainbow colors signifying change... [Pg.72]

Fig. C11.5 Three examples of knots in proteins, including the very complex knot 5i in a protein called human ubiquitin hydrolase (the rightmost image). In each case, a simple model of sticks shows the same knot as in the protein. To help the eye, each chain is colored in rainbow colors from one end to the other. The figure is reproduced, with kind permission by the authors, from the paper P. Virnau, L. Mirny and M. Kardar, Intricate Knots in Proteins Function and Evolution, PLoS Computational Biology, v. 2, pp. 1074-1079, 2006. Fig. C11.5 Three examples of knots in proteins, including the very complex knot 5i in a protein called human ubiquitin hydrolase (the rightmost image). In each case, a simple model of sticks shows the same knot as in the protein. To help the eye, each chain is colored in rainbow colors from one end to the other. The figure is reproduced, with kind permission by the authors, from the paper P. Virnau, L. Mirny and M. Kardar, Intricate Knots in Proteins Function and Evolution, PLoS Computational Biology, v. 2, pp. 1074-1079, 2006.
Electrostatic potential map of the HsO ion. In the rainbow color spectrum representation, the most electron-rich region is red and the most electron-poor region is blue. [Pg.558]

Bassam Z. Shakhashiri, Rainbow Colors with Mixed Add-Base Indicators, Chemical Demonstrations A Handbook for Teachers of Chemistry, Vol. 3 (The University of Wisconsin Press, Madison, DC, 1989) pp. 41—46. [Pg.141]

Fig. 25.6. Cockroach ca prepared with dried-droplet matrix deposition (a) before matrix addition, (b) after matrix addition, (c, d) MALDI LTQ Orbitrap images green color represents selected lipid ion at m/z 610.444 (c), and Pea-PK-I peptide MH+ ion at m/z 1,010.587 (d). Dark blue color shows intense DHB matrix crystals from the overlaid photograph (optical image). In contrast to the 610.444 ion, the PK-I peptide is clearly diffused out of the tissue into the matrix droplet. The MS image is indicated using the Rainbow color scheme, where relative abundance is coded as red>yellow>green>blue = zero intensity (see Notes 6 and 7). Fig. 25.6. Cockroach ca prepared with dried-droplet matrix deposition (a) before matrix addition, (b) after matrix addition, (c, d) MALDI LTQ Orbitrap images green color represents selected lipid ion at m/z 610.444 (c), and Pea-PK-I peptide MH+ ion at m/z 1,010.587 (d). Dark blue color shows intense DHB matrix crystals from the overlaid photograph (optical image). In contrast to the 610.444 ion, the PK-I peptide is clearly diffused out of the tissue into the matrix droplet. The MS image is indicated using the Rainbow color scheme, where relative abundance is coded as red>yellow>green>blue = zero intensity (see Notes 6 and 7).
The thickness decreases with time and one starts to observe rainbow colors, as the reflected light is of the same wavelength as the thickness of the bubble (few hundreds of Angstroms). The thinnest liquid film consists mainly of the bilayer of surface-active substance (SAS) (such as soap = 50 A) and some layers of water. The light interference and reflection studies show many aspects of these TLFs. [Pg.26]

Thin bubble film (shows rainbow colors) ... [Pg.26]

The iridescent colors of the soap bubble arise from the interference of reflected light waves. The reflected light from the outer surface and the inner layer gives rise to this interference effect (Figure 1.17). The rainbow colors are observed as the bubble thickness decreases (and reaches magnitudes corresponding to that in the light waves) due to the evaporation of water. [Pg.26]


See other pages where Rainbow colors is mentioned: [Pg.157]    [Pg.361]    [Pg.60]    [Pg.207]    [Pg.21]    [Pg.161]    [Pg.362]    [Pg.71]    [Pg.343]    [Pg.403]    [Pg.11]    [Pg.262]    [Pg.193]    [Pg.187]    [Pg.211]    [Pg.208]    [Pg.65]    [Pg.126]    [Pg.43]    [Pg.300]    [Pg.219]    [Pg.1]    [Pg.1]    [Pg.290]    [Pg.388]    [Pg.131]    [Pg.434]    [Pg.27]   
See also in sourсe #XX -- [ Pg.125 ]




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