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Clusters cables

The carbon black in semiconductive shields is composed of complex aggregates (clusters) that are grape-like stmctures of very small primary particles in the 10 to 70 nanometer size range (see Carbon, carbon black). The optimum concentration of carbon black is a compromise between conductivity and processibiUty and can vary from about 30 to 60 parts per hundred of polymer (phr) depending on the black. If the black concentration is higher than 60 phr for most blacks, the compound is no longer easily extmded into a thin continuous layer on the cable and its physical properties are sacrificed. Ionic contaminants in carbon black may produce tree channels in the insulation close to the conductor shield. [Pg.329]

When the bomb equipped with Ml29 fu2e is released from the cluster, the butterfly wings snap open and ride to the top of the cable attached to the arming stem. The... [Pg.1001]

C. Femoni, F. Kaswalder, M. C. Iapalucci, G. Longoni, and S. Zacchini, Infinite Molecular [Pt3n(CO)6n]2 Joo Conductor Wires by Self-Assembly of [Pt3n(CO)gn]2 (n = 5-8) Cluster Dianions Formally Resembling CO-Sheathed Three-Platinum Cables, Eur. J. Inorg. Chem. 2007, 1483-1486. [Pg.126]

V.P. Skulachev, Mitochondrial filaments and clusters as intracellular power-transmitting cables. Trends Biochem. Sci. 26 (2001), 23-29. [Pg.7]

The determination of clustered water and water molecule clusters trapped in polyethylene have been described by Baker (209). This water has been related lo a loss in the dielectric properties of polyethylene used in a submarine cable core. When DSC is employed, as shown by the curve in Figure... [Pg.440]

Given the R matrix for the cable manufacturing facility, the literal space is portioned into mutually exclusive AECs using ECFA. Each cluster of AECs constitutes literals that need to be considered simultaneously. AECs obtained from using ECFA are shown in Table 4. [Pg.66]

Cluster bar. A terminal temporarily attached to a structure that provides a means for the attachment and bonding of grounding and bonding cables to the structure. [Pg.790]

On the other hand, an example of prescriptive requirements is that for penetration of a floor, wall or ceiling by a cable or cluster of wires. This requires penetrations to have a specified maximum cross-sectioa Refer also to Alternative methods further on in this ehapter for a note on the issue of performance versus prescription. [Pg.281]

The considered system is a 240 MW wind farm composed of 80 generic wind turbines each one having a rated power of 3 MW, one offshore substation and submarine cables. Turbines are grouped in 8 clusters (radials) that each contains 10 WT and cables. The farm is located at a medium distance of 30 km... [Pg.1250]

Figure 5.92. Reflected light image of a defect in cable insulation. The defect appears rougher in texture than the surrounding matrix (dotted outline) (A). Reflected light image of the thick section shown in (A) following three local thermal analysis cluster measurements using SThM (B). Intermittent contact mode AFM phase images of (C) the cross linked PE/EBA matrix and (D) the defect shown in (A). The defect is devoid of discrete EBA phases. The thermomechanical response of the heated probe in contact with the defect (solid curves) and matrix (dashed curves of [A]) are seen to melt at different temperatures (E). (From Bar and Meyers [170] used with permission of the MRS Bulletin.)... Figure 5.92. Reflected light image of a defect in cable insulation. The defect appears rougher in texture than the surrounding matrix (dotted outline) (A). Reflected light image of the thick section shown in (A) following three local thermal analysis cluster measurements using SThM (B). Intermittent contact mode AFM phase images of (C) the cross linked PE/EBA matrix and (D) the defect shown in (A). The defect is devoid of discrete EBA phases. The thermomechanical response of the heated probe in contact with the defect (solid curves) and matrix (dashed curves of [A]) are seen to melt at different temperatures (E). (From Bar and Meyers [170] used with permission of the MRS Bulletin.)...
For the endcap region, cluster broadening will be the main effect except at very low energies. For example, a 200 MeV conversion originating 25 cm before reaching the outer endcap radius will deviate from the photon impact point by about 3 cm. However, the conversion probability must also include the drift chamber endplates and (in the backward direction) readout cards and cables. [Pg.136]


See other pages where Clusters cables is mentioned: [Pg.157]    [Pg.157]    [Pg.325]    [Pg.325]    [Pg.1003]    [Pg.467]    [Pg.703]    [Pg.85]    [Pg.32]    [Pg.14]    [Pg.186]    [Pg.48]    [Pg.345]    [Pg.478]    [Pg.7]    [Pg.234]    [Pg.51]    [Pg.270]    [Pg.121]    [Pg.308]    [Pg.188]    [Pg.47]    [Pg.792]    [Pg.64]    [Pg.621]    [Pg.37]    [Pg.833]    [Pg.7]    [Pg.57]    [Pg.51]    [Pg.215]   
See also in sourсe #XX -- [ Pg.157 ]




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