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M line

Bulletins concerning the Gantrez M Line (ISP) and the Lutonal M (BASF) are no longer available if interested in archival information, however, the reader can contact the prior manufacturers directly. [Pg.520]

Golde, R.H., Lightning surges on overhead disiribuii(m lines caused by direct and indirect lightning strikes. AIEE Transactions (Power Apparatus and Systemi. 437-447. June (1959) IRC. 56-HV AC Circuit Breakers. [Pg.585]

Troponin C Troponin I Troponin T Minor M protein 18 21 31 165 2 M line Ca binding Inhibits actin-myosin interaction Binds to tropomyosin Binds to myosin... [Pg.547]

Futterungs-stoff, m. lining material, -versuch, m. feeding experiment. [Pg.167]

Linien-spanntmg, /. (Elec.) line tension, line voltage, -spektnun, n. line spectrum, -vcr-sohiebung, /. displacement of lines, -zahl, /. number of lines, -zug, m. line, trace (in a graph). [Pg.279]

Relations of the type of Equation 1-18 apply for the L, M,. lines also. Wherever accessible to experiment, such relations have been verified. They are the only way of locating x-ray energy levels with respect to the norlhal state of the atom. [Pg.34]

Titin Reaches from the Z line to the M line Largest protein in body. Role in relaxation of muscle. [Pg.566]

There are also several possibilities for the temporal distribution of releases. Although some releases, such as those stemming from accidents, are best described as instantaneous release of a total amount of material (kg per event), most releases are described as rates kg/sec (point source), kg/sec-m (line source), kg/sec-m (area source). (Note here that a little dimensional analysis will often indicate whether a factor or constant in a fate model has been inadvertently omitted.) The patterns of rates over time can be quite diverse (see Figure 3). Many releases are more or less continuous and more or less uniform, such as stack emissions from a base-load power plant. Others are intermittent but fairly regular, or at least predictable, as when a coke oven is opened or a chemical vat... [Pg.10]

In this case study, 11 different extraction methods (Table 1) were applied to a 1000 m line of 15 B/C-horizon soil samples (<0.25 mm) across the Talbot VMS Cu-Zn deposit in northern Manitoba, Canada (Fig. 1), followed by ICP-MS analysis. Student s t test and minimum t probability statistics provide a tool to rank the exploration performance of each method (Stanley 2003 Stanley Noble 2008). By... [Pg.49]

Figure 5.4 X-ray tube output spectrum, showing continuous emission and line spectra of the target material (in this case gold). The K absorption edges for major elements in silicate glasses are shown below the diagram, indicating that the gold M lines are particularly effective for the analysis of the light elements Na to P. Figure 5.4 X-ray tube output spectrum, showing continuous emission and line spectra of the target material (in this case gold). The K absorption edges for major elements in silicate glasses are shown below the diagram, indicating that the gold M lines are particularly effective for the analysis of the light elements Na to P.
Figure 8 Scanning electron microscope photographs of coded 0.75 (J.m line A).5 pm space images obtained in the o-cresol novolac-PDMSX ( = 510 g/mole) (a) before and (b) after O2 RIE pattern transfer. Figure 8 Scanning electron microscope photographs of coded 0.75 (J.m line A).5 pm space images obtained in the o-cresol novolac-PDMSX (<Mn > = 510 g/mole) (a) before and (b) after O2 RIE pattern transfer.
Figure 2. SEM photograph of 0.4-/ Figure 2. SEM photograph of 0.4-/<m line-and-space pattern on a substrate with topographic features using SPP two-layer resist system. A 0.2- m-thick SPP layer was exposed with a g-line stepper (NA = 0.6) at 350 mJ/cm2 and then dip-developed in a 1.6 wt% TMAH solution for 60 s at 25 C The pattern formed in the SPP top layer was transferred to 1.5-/<m-thick bottom layer by Oz RIE.
Z line The junction between neighbouring actin filaments that forms the border between sarcomeres. It has a Z-shaped appearance on the diagram. M line The middle zone of the sarcomere, formed from the junction between neighbouring myosin filaments. There are no cross-bridges in this region. [Pg.189]

The waveguides were optically characterized at X = 632.8 nm. The effective mode indices were determined by the m-line technique, based on a standard two prism coupling set-up. The refractive index depth profiles of the fabricated waveguides were reconstructed by the means of the inverse WKB procedure . [Pg.230]

Fig. 21 a Fluorescence images of xCP-immobilized fluorescein labeled ONDs on a glass surface. The pattern size is limited only by the use of manufactured molds with the desired feature size, b AFM images of stamped 1 p.m lines of 20-bp ONDs (left) and 500bp PCR fragments (right) on mica substrates [79]. Reprinted with permission... [Pg.105]

Two types of Cr + luminescence centers have been found in steady-state natural alexandrite, characterized by J -lines at approximately 680 and 692 nm, accompanied by very many M-lines of Cr-Cr pairs (Tarashchan 1978). Those centers have been identified as connected with substitutions of AP" in different structural sites. It was found that natural alexandrites with very rare exceptions are characterized by very low CL intensities (Ponahlo 2000). Pulse CL study revealed that the spectrum consists of a relatively broad red band peaking at 685-695 nm, accompanied by narrow lines with the strongest one at 679 nm and the weaker ones at 650,655,664,700,707 and 716 nm. All lines and bands have been ascribed to several Cr + centers (Solomonov et al. 2002). The natural chrysoberyl and alexandrite in our study consisted of six samples. The laser-induced time-resolved technique enables us to detect two different Cr and possibly Mn + and V emission centers (Figs. 4.54-4.55). [Pg.100]

Steady-state liuninescence of topaz has been studied by Tarashchan (1978). At 77 K narrow lines at 680,696,712 and 730 nm have been ascribed to single Cr (R-Unes) and Cr +-pairs (M-lines). We studied two transparent, four yellow and one orange natural topaz. The two transparent precious stones have not been subjected to destructive chemical analyses. In other samples their Cr, Mn and V concentrations have been measured by ICP-AS method (Table 4.17). The absorption spectrvun typical for Cr + has been detected only in red topaz with the highest Cr content of 500 ppm. The spectrum clearly revealed two broad bands typical of the octahedrally coordinated Cr + (Gaft et al. 2003a). The bands centered at 418 and 533 nm evidently correspond to the spin-allowed A2g T2 and A2 transitions, respectively. The peak attributed to the spin-forbidden A2 Eg transition is located near 685 nm, while other very weak lines at 696 and 712 nm are also present. [Pg.172]


See other pages where M line is mentioned: [Pg.94]    [Pg.456]    [Pg.124]    [Pg.191]    [Pg.159]    [Pg.542]    [Pg.547]    [Pg.547]    [Pg.547]    [Pg.167]    [Pg.451]    [Pg.106]    [Pg.485]    [Pg.1150]    [Pg.31]    [Pg.213]    [Pg.161]    [Pg.267]    [Pg.388]    [Pg.264]    [Pg.157]    [Pg.399]    [Pg.324]    [Pg.177]    [Pg.181]    [Pg.125]    [Pg.69]    [Pg.100]    [Pg.344]    [Pg.548]    [Pg.556]    [Pg.354]   
See also in sourсe #XX -- [ Pg.161 ]




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