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Gate Bar

In the CarDio process this is accomplished with the specifically designed lay down device [20, 21] which is called a Cate Bar (see Figure 2.1). The gate bar essentially consists of a metal bar with a pressure drop slot connecting the outside with a feeding tube inside the bar. Through a liquid mix injection point formulation components with the pressurised liquid carbon dioxide enter the gate bar. [Pg.88]

A variation of the original gate bar design was introduced with the CarDiolOOO featuring a pressure adjustable lay down device [22]. It allows adjustment of the slot width in response to the output and the liquid carbon dioxide percentage (see Figure 2.2). [Pg.89]

The status bar displays information about the current status of the acquisition system the position of each of the four axes of the probe position monitor the maximum amplitude of the signal within the gate for both the coupling channel and the signal (flaw detection) channel and the current operating mode of the system, which may be record-... [Pg.768]

The AND gate is a vertical bar with inputs as arrows the OR gate is a circle with anows at angular incidence. [Pg.123]

Rakes, Gates Spirals, Anchors, Paddles Propellers Axial Flow Turbines Flat Blade Turbine Bar Turbine Bladeless Impeller Close Clearance Impeller and Stator... [Pg.297]

The first molecule, the Ca2+ channel, is required for coupling at the triad. Skeletal muscle contains higher concentrations of this L-type Ca2+ channel that can be accounted for on the basis of measured voltage-dependent Ca2+ influx because much of the Ca2+ channel protein in the T-tubular membrane does not actively gate calcium ion movement but, rather, acts as a voltage transducer that links depolarization of the T-tubular membrane to Ca2+ release through a receptor protein in the SR membrane. The ryanodine receptor mediates sarcoplasmic reticulum Ca2+ release. The bar-like structures that connect the terminal elements of the SR with the T-tubular membrane in the triad are formed by a large protein that is the principal pathway for Ca2+ release from the SR. This protein, which binds the... [Pg.718]

Fig. 4, Gate function of a pseudorandom sequence of slots and bars and a schematic intensity distribution. Fig. 4, Gate function of a pseudorandom sequence of slots and bars and a schematic intensity distribution.
Fig. 17. NMR spectrum obtained using a single 90° pulse without H decoupling in pure DPPC bilayers at 50 °C and 1 bar (a) and P NMR spectra obtained using a fully phase-cycled Hahn echo sequence with inversely gated H decoupling in pure DPPC bilayers at 50 °C and 1 bar in the LC phase (b), 1 kbar in the GI phase (c), 1.75 kbar in the interdigitated Gi gel phase (d), 2.5 kbar in the GII gel phase (e), 3.7 kbar in the GUI gel phase (f), and 5.1 kbar in the GX gel phase (g) (after Refs. 4, 18). Fig. 17. NMR spectrum obtained using a single 90° pulse without H decoupling in pure DPPC bilayers at 50 °C and 1 bar (a) and P NMR spectra obtained using a fully phase-cycled Hahn echo sequence with inversely gated H decoupling in pure DPPC bilayers at 50 °C and 1 bar in the LC phase (b), 1 kbar in the GI phase (c), 1.75 kbar in the interdigitated Gi gel phase (d), 2.5 kbar in the GII gel phase (e), 3.7 kbar in the GUI gel phase (f), and 5.1 kbar in the GX gel phase (g) (after Refs. 4, 18).
Fig. 13.13 Typical selective field ionization data for laser excited Na 50d atoms (a) data with electron beam gated off ( ), data following collisions with 25 eV electrons (+) corrected for electron-induced background signals (b) net signal due to electron impact. The horizontal bars indicate the range of field strengths over which n = 50 atoms are expected to ionize adiabatically and diabatically (from ref. 36). Fig. 13.13 Typical selective field ionization data for laser excited Na 50d atoms (a) data with electron beam gated off ( ), data following collisions with 25 eV electrons (+) corrected for electron-induced background signals (b) net signal due to electron impact. The horizontal bars indicate the range of field strengths over which n = 50 atoms are expected to ionize adiabatically and diabatically (from ref. 36).
A typical injection pack/hold pressure during injection molding of polyamide 66 components is 1,000 bar and the injection temperature is 280°C. The gate freezes shut when the average temperature inside the mold reaches 225°C. [Pg.107]

The micro flow cell Golden Gate [125] can tolerate up to 66 bar at temperatures up to 200 °C. The cell volume amounts to 28 ml and fluidic interfaces are 1/16 in Swagelok capillary fittings. While the dimensions of the actual flow cell are only a few centimeters, the actual optical interface to a spectrometer consist of a macroscale table-top device with a clamping mechanism which positions the flow cell in the optical pathway. [Pg.590]

Fig. 6.2. Decrease of mobility with increasing e, as observed in rubrene single crystal FET with different gate insulators. The bars give a measure of spread of mobility values. Inset ... Fig. 6.2. Decrease of mobility with increasing e, as observed in rubrene single crystal FET with different gate insulators. The bars give a measure of spread of mobility values. Inset ...
Once the result of the ballot was announced, triumphant [male] undergraduates marched to Newnham [the closer woman s college], there to be faced down by the grim-faced women dons, assembled behind barred gates. They turned back to the construction of a huge celebratory bonfire in the Market Square, doing hundreds of pounds worth of damage.2(a)... [Pg.219]


See other pages where Gate Bar is mentioned: [Pg.342]    [Pg.347]    [Pg.242]    [Pg.90]    [Pg.229]    [Pg.342]    [Pg.347]    [Pg.242]    [Pg.90]    [Pg.229]    [Pg.1872]    [Pg.426]    [Pg.348]    [Pg.27]    [Pg.105]    [Pg.116]    [Pg.198]    [Pg.157]    [Pg.234]    [Pg.57]    [Pg.7]    [Pg.220]    [Pg.198]    [Pg.51]    [Pg.568]    [Pg.231]    [Pg.386]    [Pg.386]    [Pg.398]    [Pg.164]    [Pg.157]    [Pg.22]    [Pg.29]    [Pg.407]    [Pg.412]    [Pg.413]    [Pg.415]    [Pg.536]    [Pg.221]    [Pg.77]    [Pg.223]   
See also in sourсe #XX -- [ Pg.88 ]




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