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Large cells

Selection. The widely used cathode materials iaclude Hg, Pb, Al, Zn, Ni, Fe, Cu, Sn, Cd, and C. Because of mechanical iaconvenience, mercury is not an attractive electrode material for large cells. The preferred material is lead or an amalgam. Because Pb is soft and has a tendency to deform, however, it presents some mechanical problems. The problems can be overcome by hot dip or electroplating on steel, copper, or other rigid base material. [Pg.86]

Large cell volume can also have a very serious effect on solute resolution, but this can be examined theoretically. The situation is depicted in Figure 14. It is the elution profile of a peak eluted from a column 3 cm long, 3 mm I.D. packed with particles 3 pm in diameter. [Pg.308]

Baker et al. analyzed only six cases, including three different overpressures and three ratios of specific heat, each at ambient temperature. In addition, they had to use a large cell size because of limitations in computer power. They found that overpressures along the line of the jet could be predicted by a method similar to the one they presented for spherical bursts, which is described in Section 6.3.3. The main difference is that the starting point must be chosen at a lower overpressure. [Pg.197]

It has also to be mentioned, however, that the larger number of cells in a battery will increase the cost. Compared with the large cells which are very sensitive against freeze/thaw cycles, the small PB cells have survived around 150 thermal cycles between room temperature and 350 °C, suggesting that the system can stand occasional cool-down without detriment to reliability [14]. [Pg.573]

But there are those in my lab who believe that the excitation is being seen by a bias toward large cells and that they represent a large cell population in the neostriatum. I don t necessarily believe that. I don t know why, in the anesthetized animal, you can flip a nerve cell that is inhibited by amphetamine by increasing the dose. It has been postulated that the excitation is related to the occurrence of both the stereotyped behaviors, and that this may be provoked at doses that produce neurotoxicity. We have also done a number of studies looking at the neurotoxicity of amphetamine administration in animals, most of which replicate Lou Seiden s work. [Pg.139]

The pathophysiology of HL is defined by the presence of the RS cell in a grouping of lymph nodes. The RS cell is a large cell morphologically with a multinucleated structure with pronounced eosinophilic nucleoli.5 In the affected lymph nodes, the RS cells are contained in a reactive milieu of T lymphocytes, eosinophils, histiocytes, and plasma cells, which makes them difficult to distinguish from these background cells. The natural course of the disease, if left untreated, is less than a 5% probability of surviving 5 years. [Pg.1373]

Anaplastic large-cell lymphoma, T or null cell, primary cutaneous type... [Pg.1374]

F. Diffuse, mixed small and large cell 75% B cell, 20% T cell, 5% null cell... [Pg.1376]

G. Diffuse, large cell High Grade 70% B cell, 20%T cell, 10% null cell... [Pg.1376]

Lymphomas not included in Working Formulation mycosis fungoides, mantle cell lymphoma, monocytoid B-cell lymphoma, mucosa-associated lymphoid tissue (MALT), anaplastic large cell lymphoma, angiocentric lymphoma, angioimmunoblastic lymphadenopathy (AILD), Castleman s disease, adult T-cell leukemia/lymphoma. [Pg.1376]

LL, a 47-year-old man, was diagnosed with high-risk diffuse large cell B-cell non-Hodgkin s lymphoma (NHL) 12 months ago. LL had a complete response to his initial treatment of six cycles of RCHOP (rituximab, cyclophosphamide, doxorubicin, vincristine, and prednisone). LL is participating in a clinical trial and is randomized to receive a myeloablative autologous HCT TBI days 8 to 5, etoposide day 4, rest day 3, cyclophosphamide day 2, rest day 1, with infusion of autologous PBPC on day 0. [Pg.1452]

Large cell Base of the triple cell. The z coordinates of the spheres refer to c = c. The dots labeled , (2) and mark six octahedral voids atz = 0 andZ= ... [Pg.219]

Edgar Can Purkinje cells proliferate as large cells ... [Pg.37]

Nasmyth There is a classic experiment to address whether there is size control. That is to transiently delay the cell cycle so that you produce abnormally large cells. Then you look at the cell division time of subsequent cycles. If these experiments are done with bacteria or yeast, the subsequent cycles are greatly accelerated. These experiments could be done by Bruce Edgar and his imaginal discs. They are technically harder, but they could be done. [Pg.97]

Red algae and metaphytes Large cells. Endosymbiosis. Aerobic respiration. Meiosis. Genetic recombination 0.5%... [Pg.278]


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See also in sourсe #XX -- [ Pg.82 ]




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