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Void length

The longitudinal length of voids in PTeOX was estimated to be approximately 500 A from its half-width of meridional reflection, but the half-width of PTOX scattering could not be evaluated, the vddth of which attributed to the instrumental broadening. On the other hand, the void length of ca. 2000 A for PTOX was reported from the results with a point focusing camera with a mirror and monochrometer optical system... [Pg.85]

For simplicity, the diffraction maximum was separated from the background fairly arbitrarily, as shown in Fig. 5.7, and then the experimental curves were analyze with respect to the position and wMths of the maxima to ccxnpute the mean crystallite and void lengths. [Pg.125]

A solute s capacity factor can be determined from a chromatogram by measuring the column s void time, f, and the solute s retention time, (see Figure 12.7). The mobile phase s average linear velocity, m, is equal to the length of the column, L, divided by the time required to elute a nonretained solute. [Pg.551]

The important parameters to consider are the selectivity (dKJdlogR), the ratio of pore volume, Vp, over void volume, Vq, the plate height, H, and the column length, L. The distribution coefficient, Kq, has a slight effect on resolution (with an optimum at Kp 0.3-0.5). In addition to this, extra column effects, such as sample volume, may also contribute to the resolution. [Pg.67]

Resolution factors Column length ("f) Pore volume ( ) Column length ( ) Column length ( ) Void volume ( ) Column length ( ) Channel thickness ( i )... [Pg.609]

Reynolds number for gas S = length of corrugation side Uge = effective velocity of gas Ug = superficial velocity of gas Ui = superficial velocity of liquid Ap = pressure drop per unit packed height e = packing void fraction 0 = angle of flow channel (from horizontal) fi = viscosity p = density... [Pg.339]

Spray-up Popular system with reinforced plastic production. An air spray gun includes a roller cutter that chops usually glass fiber rovings to a controlled short length before being blown in a random pattern (manually or automatically) onto a surface of the mold simultaneously the gun sprays catalyzed TS polyester plastic. The chopped fibers are plastic coated as they exit the gun s nozzle. The resulting, rather fluffy, RP mass is consolidated with serrated rollers to squeeze out air and reduce or eliminate voids. A closed mold... [Pg.522]

ANDROGEN HORMONE INHIBITOR The nurse questions the patient at length about symptoms of BPH, such as frequency of voiding during the day and night and difficulty starting tire urinary stream. The nurse records all symptoms in the patient s chart. [Pg.542]

In 1976 the Swedish government stipulated that no new nuclear reactors should be charged until it had been shown how the radioactive waste products could be taken care of in an "absolutely safe manner" (8). Consequently, the nuclear power industry (through their joint Nuclear Fuel Supply Co, SKBF) embarked on a program referred to as the Nuclear Fuel Safety (KBS) Project (8). In one of the schemes (9) a repository for spent nuclear fuel elements in envisaged at a depth of 500 m in granitic bedrock. The repository will ultimately contain 6000 tonnes of uranium and 45 tonnes of plutonium. The spent fuel elements will be stored in copper cylinders (0.8 m in diameter and 4.7 m in length) with a wall thickness of 200 mm the void will be filled with lead. [Pg.290]

In Table 6.7, C is the Martinelli-Chisholm constant, / is the friction factor, /f is the friction factor based on local liquid flow rate, / is the friction factor based on total flow rate as a liquid, G is the mass velocity in the micro-channel, L is the length of micro-channel, P is the pressure, AP is the pressure drop, Ptp,a is the acceleration component of two-phase pressure drop, APtp f is the frictional component of two-phase pressure drop, v is the specific volume, JCe is the thermodynamic equilibrium quality, Xvt is the Martinelli parameter based on laminar liquid-turbulent vapor flow, Xvv is the Martinelli parameter based on laminar liquid-laminar vapor flow, a is the void fraction, ji is the viscosity, p is the density, is the two-phase frictional... [Pg.295]

The molar ratio of steam to ethylbenzene at the inlet is 9 1. The bed is 1 m in length and the void fraction is 0.5. The inlet pressure is set at 1 atm and the outlet pressure is adjusted to give a superficial velocity of 9 m/s at the tube inlet. (The real design problem would specify the downstream pressure and the mass flow rate.) The particle Reynolds number is 100 based on the inlet conditions 4 x 10 Pa s). Find the conversion, pressure, and velocity at the tube outlet, assuming isothermal operation. [Pg.91]

In the model equations, A represents the cross sectional area of reactor, a is the mole fraction of combustor fuel gas, C is the molar concentration of component gas, Cp the heat capacity of insulation and F is the molar flow rate of feed. The AH denotes the heat of reaction, L is the reactor length, P is the reactor pressure, R is the gas constant, T represents the temperature of gas, U is the overall heat transfer coefficient, v represents velocity of gas, W is the reactor width, and z denotes the reactor distance from the inlet. The Greek letters, e is the void fraction of catalyst bed, p the molar density of gas, and rj is the stoichiometric coefficient of reaction. The subscript, c, cat, r, b and a represent the combustor, catalyst, reformer, the insulation, and ambient, respectively. The obtained PDE model is solved using Finite Difference Method (FDM). [Pg.631]


See other pages where Void length is mentioned: [Pg.333]    [Pg.24]    [Pg.24]    [Pg.154]    [Pg.125]    [Pg.14]    [Pg.333]    [Pg.24]    [Pg.24]    [Pg.154]    [Pg.125]    [Pg.14]    [Pg.14]    [Pg.532]    [Pg.541]    [Pg.69]    [Pg.129]    [Pg.474]    [Pg.1388]    [Pg.1433]    [Pg.2406]    [Pg.180]    [Pg.370]    [Pg.184]    [Pg.317]    [Pg.222]    [Pg.458]    [Pg.247]    [Pg.1324]    [Pg.235]    [Pg.52]    [Pg.1217]    [Pg.182]    [Pg.185]    [Pg.96]    [Pg.150]    [Pg.209]    [Pg.224]    [Pg.123]    [Pg.304]    [Pg.279]    [Pg.35]   
See also in sourсe #XX -- [ Pg.165 ]

See also in sourсe #XX -- [ Pg.165 ]




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