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BALL-1 cells

Kuramochi, K., Matsui, R., Matsubara, Y., et al. (2006). Apoptosis-inducing effect of epolactaene derivatives on BALL-1 cells. Bioorg. Med. Chem., 14, 2151-2161. [Pg.245]

Figure Bl.21.1. Atomic hard-ball models of low-Miller-index bulk-temiinated surfaces of simple metals with face-centred close-packed (fee), hexagonal close-packed (licp) and body-centred cubic (bcc) lattices (a) fee (lll)-(l X 1) (b)fcc(lO -(l X l) (c)fcc(110)-(l X 1) (d)hcp(0001)-(l x 1) (e) hcp(l0-10)-(l X 1), usually written as hcp(l010)-(l x 1) (f) bcc(l 10)-(1 x ]) (g) bcc(100)-(l x 1) and (li) bcc(l 11)-(1 x 1). The atomic spheres are drawn with radii that are smaller than touching-sphere radii, in order to give better depth views. The arrows are unit cell vectors. These figures were produced by the software program BALSAC [35]-... Figure Bl.21.1. Atomic hard-ball models of low-Miller-index bulk-temiinated surfaces of simple metals with face-centred close-packed (fee), hexagonal close-packed (licp) and body-centred cubic (bcc) lattices (a) fee (lll)-(l X 1) (b)fcc(lO -(l X l) (c)fcc(110)-(l X 1) (d)hcp(0001)-(l x 1) (e) hcp(l0-10)-(l X 1), usually written as hcp(l010)-(l x 1) (f) bcc(l 10)-(1 x ]) (g) bcc(100)-(l x 1) and (li) bcc(l 11)-(1 x 1). The atomic spheres are drawn with radii that are smaller than touching-sphere radii, in order to give better depth views. The arrows are unit cell vectors. These figures were produced by the software program BALSAC [35]-...
WebLab Viewer gives a very-high-quality display suitable for publication and presentation. Molecules can be displayed as lines, sticks, ball and stick, CPK, and polyhedrons. In addition, different atoms within the same structure may be displayed in different ways. Text can be added to the display as well as labeling parts of the structure in a variety of ways. The user has control over colors, radii, and display quality. The program can also replicate a unit cell to display a crystal structure. Several types of molecular surfaces can be displayed. [Pg.352]

Wentworth process Weston cell Wet air oxidation Wet ball mill Wet-end additives Wet etching Wetfastness Wet grinding... [Pg.1068]

There is some beneficiation of talc by froth flotation (qv), practiced especially on ultramafic-type deposits. In this process (Fig. 2), talc is milled to its hberation size (—100 mesh (ca 0.15 mm)) using ball mills or ring-type roUer mills and then slurried at 10—30% in water. Flotation is done in conventional multistage float cells using methyl amyl alcohol as a frother. Typically two to four stages are required to upgrade the ore from 50—70% talc to 90—98%. The product is filtered and then flash-dried and milled to a final product. [Pg.299]

Extraction of proteia requires breaking the cell wall to release the cytoplasmic contents. This can be achieved by high speed ball or coUoid mills or by high pressure (50—60 Mpa) extmsion. Proteia is extracted by alkaline treatment followed by precipitation after enzymatic hydrolysis of nucleic acids. Although the proteia can be spun iato fibers or texturized, such products are more expensive than those derived from soybean and there is no market for them. [Pg.394]

Nearly all the energy used in the concentrators is for electric motors driving ball mills, cmshers, pumps, and the agitators of flotation cells. About half the energy is used for grinding the ore to the proper size. [Pg.208]

Likewise, efficient interface reconstruction algorithms and mixed cell thermodynamics routines have been developed to make three-dimensional Eulerian calculations much more affordable. In general, however, computer speed and memory limitations still prevent the analyst from doing routine three-dimensional calculations with the resolution required to be assured of numerically converged solutions. As an example. Fig. 9.29 shows the setup for a test involving the oblique impact of a copper ball on a hardened steel target... [Pg.347]

Ball JC, Lange WR, Myers CP, et al Reducing the risk of AIDS through methadone maintenance treatment. J Health Soc Behav 29 214—226, 1988b Bare LA, Mansson E, Yang D Expression of two variants of the human mu opioid receptor mRNA in SK-N-SH cells and human brain. FEES Lett 354 213—216, 1994 Barr HL, Cohen A Abusers of alcohol and narcotics who are they Int J Addict 22 52 5— 541, 1987... [Pg.96]

Glatt, H., Engst, W., and Hagen, M. et al. (1997). The use of cell lines genetically engineered for human xenohiotic metahohsing enzymes. In L.F.M. van Zutphen and M. Balls (Eds.) Animal Alternatives, Welfare and Ethics. AmsX rdwu Elsevier 81-94. [Pg.349]

Fig. 14.4 ASmGeSe4 compounds viewed parallel to the SmCeSe4 layers. Dashed lines indicate unit cell boundaries in each case. CeSe4 tetrahedra are drawn as tetrahedral solids, and the SmSe environments are drawn using a ball-stick model. In all... Fig. 14.4 ASmGeSe4 compounds viewed parallel to the SmCeSe4 layers. Dashed lines indicate unit cell boundaries in each case. CeSe4 tetrahedra are drawn as tetrahedral solids, and the SmSe environments are drawn using a ball-stick model. In all...
Wang JM, Johnston PB, Ball BG, Brinton RD. The neurosteroid allopregnano-lone promotes proliferation of rodent and human neural progenitor cells and regulates cell-cycle gene and protein expression. J Neurosci 2005 25 4706-18. [Pg.164]

The rubber industry has a long and colorful history. Natural rubber is produced from latex, a milky fluid found in cells that lie between the bark and the wood of many plants. You may have seen latex flow from the broken stalks of milkweed plants, but the source of commercial rubber is the Hevea tree, a native of Brazil. When the bark of this tree is slashed, its milky white sap oozes out and can be collected in cups mounted on the tree s trunk. The people of the Amazon jungle made bouncing balls, shoes, and water Jars out of rubber, and Portuguese explorers sent waterproof boots and a rubber-coated coat back to their king. The first commercial exports included some rubber shoes shipped to Boston in 1823. [Pg.903]

Fig. 4 a IR spectra, in the OH stretching region, of from top to bottom, TS-1 samples (full line spectra) with increasing Ti content, from 0 (silicalite-1, dashed spectrum) to 2.64 atoms per imit cell. All samples have been activated at 120 °C. Adapted from [24] with permission. Copyright (2001) by the ACS. b Schematic representation of the preferential location of Ti atoms and Si vacancies in the MFI framework (upper part) and their interplay (lower part). Yellow and red sticks represents Si and O of the regular MFI lattice blue balls refer to Ti, and red and white balls to O and H of defective internal OH groups... [Pg.49]

Lu, F. Ralph, J. Non-degradative dissolution and acetylation of ball-milled plant cell walls high-resolution solution-state NMR. Plant J. 2003, 35, 535-544. [Pg.415]

Balling, R., Mutter, G., Gruss, R, and Kessel, M. (1989). Craniofacial abnormalities induced by ectopic expression of the homeobox gene Hox-1.1 in transgenic mice. Cell 58 337-347. [Pg.118]

Duprey, P., Chowdhury, K Dressier, G. R., Balling, R Simon, D., Guenet, I., and Grass, P. (1988). A mouse gene homologous to the Drosophila gene caudal is expressed in epithelial cells from the embryonic intestine. Genes Dev. 2 1647-1654. [Pg.119]

Figure 8.5 Ball-and-stick model of the unit cell of rutile structure. Figure 8.5 Ball-and-stick model of the unit cell of rutile structure.
Conidiophores dark, erect, geniculate due to sympodial development. Conidia multiseptate, cylindrical to oblong, dark, with septal walls thickened. Conidiophores hyaline to subhyaline, hyphalike or distinct. Conidiogenous cells annellides that are cylindrical to lageniform. Conidia one to several celled (one species), hyaline to pale brown, accumulating in balls at the apices of the annellides. Phaeococcomyces synanamorph often present. [Pg.59]

Phialophora cells one celled, pale brown to black pseudohyphae may be formed. May occur as a synanamorph associated with species of Exophiala, Phialophora, Wangiella, and other genera. Conidiophores absent or present, pale brown. Conidiogenous cells phialides with distinct collarettes. Conidia one celled, hyaline to pale brown, accumulating as balls at the apices of the phialides. [Pg.60]

Conidiophores hyaline, short or long. Predominant conidiogenous cells annellides with slight swelling just below the apex. Conidia one celled, obovate. truncate, subhyaline to light black, single or in balls. [Pg.61]

The conidia are one-celled in most species and accumulate in balls at the apices of the annellides. With careful study utilizing the oil immersion objective, annellations (rings) usually can be seen at the apices of the annellides. [Pg.75]

Phialophora colonies are rapid growing, cottony to woolly, and usually some shade of olive gray. When conidiophores are present, they usually are short. The conidiogenous cells are hyaline to dematiaceous phialides that are cylindrical to flask shaped. At the apices of the phialides, distinct collarettes are present. The conidia are one celled and usually hyaline, and they occur in balls that may occasionally slip down along the phialides in some species. Some species commonly produce intercalary phialides a yeast form may occur in some isolates. [Pg.78]


See other pages where BALL-1 cells is mentioned: [Pg.244]    [Pg.249]    [Pg.336]    [Pg.337]    [Pg.43]    [Pg.463]    [Pg.386]    [Pg.1785]    [Pg.1853]    [Pg.2058]    [Pg.2059]    [Pg.562]    [Pg.50]    [Pg.428]    [Pg.256]    [Pg.75]    [Pg.149]    [Pg.179]    [Pg.618]    [Pg.655]    [Pg.900]    [Pg.73]    [Pg.248]    [Pg.435]    [Pg.486]    [Pg.191]    [Pg.62]    [Pg.76]    [Pg.98]    [Pg.266]   
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