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Secondary line

Some friction materials may contain other potentially harmfiil materials. Lead has been found in some secondary linings. Class B and C organic disk pads, and other friction materials as lead metallic particles, oxides, and sulfides. Several original equipment and aftermarket suppHers are known to have a pohcy against incorporation of lead or other potentially harmfiil materials in thek products. [Pg.275]

Neben-hoden, m. Anat.) epididymis, -kem, m. Biol.) paranucleus, -kette,/. side chain, subordinate chain, -klasse, f. subsidiary class, -kosten, f.pl. extra costs, extras, -leiter, m. Elec.) branch conductor, -leitung, /. bypass branch line, -linie, /. secondary line branch line, -luft, /. admixed air secondary air, supplementary air. -niere, /. suprarenal capsule. [Pg.315]

If naloxone is given by IV infusion, die primary healdi care provider orders die IV fluid and amount, the drug dosage and die infusion rata Giving the drag by IV infusion requires use of a secondary line or IV piggyback. [Pg.182]

O-methylation of DA is a secondary line of metabolism and its inhibition has little effect on the removal of DA but drugs that block this enzyme are gaining a place in prolonging the action of levodopa. [Pg.305]

Spectral interferences are due to substances in the flame that absorb the same wavelength as the analyte, causing the absorbance measurement to be high. The interfering substance is rarely an element, however, because it is rare for another element to have a spectral line at exactly the same wavelength, or near the same wavelength, as the primary line of the analyte. However, if such an interference is suspected, the analyst can tune the monochromator to a secondary line of the analyte to solve the problem. [Pg.258]

Define what is meant by the primary and secondary lines in a fine spectrum. [Pg.272]

The primary line is the line in the line spectrum that is used most often for analyzing for that element because it is the most sensitive and useful. Secondary lines are other lines that are sometimes used for various reasons. [Pg.525]

In atomic absorption, confusion seldom occurs, but the technique is still vulnerable to the superposition of two lines the line of the chosen element and a secondary line of another element. This is why it is suggested that a second measurement is performed at another wavelength. In atomic emission, this problem is more frequent because spectra are more complex. [Pg.268]

An excellent introduction to the common features observed in electron spectra of non metallic surfaces and a simple discussion of the physical processes giving rise to these features is included in the review article by Holm and Storp (7). A good discussion from a practical introductory viewpoint is included in a Handbook of XPS (22). More exotic effects that lead to secondary lines of lower intensity such as multicomponent structure are more often encountered in transition metals and metallic oxides or transition compounds. These effects are discussed in more detail in Carlson (3) and Wertheim (23). [Pg.145]

The amount of the N-oxyl radicals in tertiary amine, however, is much less than that in the secondary one. Another difference between the N-oxyl radicals formed from the different kind of amines is that by decreasing the amount of the oxygen above the sample, the signal of the radicals formed from the tertiary amine splits into secondary lines (Figure 3), while the ESR spectrum of the radicals formed from the TINUVIN 770 remains unchanged. [Pg.110]

There is never total impossibility of the superimposition of two absorption lines such as that chosen for the measurement and that coming from a secondary line belonging to another element. Confusions are rare but it is sometimes advisable to undertake a second measurement at another wavelength. In atomic emission this problem is frequent, not least as the spectrum is more complex (cf. Chapter 14). [Pg.303]

Character 1= main spicule type abruptly pointed, 2= ectosomal skeleton organized, 3= choanosomal skeleton isotropic, 4= ectosomal skeleton multispicular, 5= peripheral choanosomal skeleton condensed, 6= ectosomal double meshwork, 7= choanosomal primary multispicular tracts, 8= choanosomal unispicular secondary lines, 9= choanosomal paucispicular primary lines, 10= choanosomal skeleton alveolar, 11 = reinforcing spicule tracts, 12= viviparity. [Pg.346]

From these calculations, we notice the nonconvergence of the secondary line near 16,168 cm. This line position is only known within 0.5 cm. Usually, such a precision would be very satisfactory because the potential surface used is quite approximate. But if we would like to access the eigenvector, this slow convergence becomes a critical problem. If we compare this Lanczos calculation with an exact one, we conclude that the energy near 16,168 cm 1 converges slowly because it corresponds to two very close eigenenergies equal to 16,168.5 and 16,169.1 cm""1. [Pg.96]

The upper bridge is fed by a Dyll delta-star transformer which has a 30° phase shift between the primary and secondary line currents. The lower transformer Ti has zero phase shift. See sub-section 6.4 for an explanation of phase shifts in transformer windings. [Pg.417]

It is interesting to note that the secondary lines for Cr, Mg, Mo, and Si, chosen to avoid iron interference, do alleviate or reduce the effects of Fe line overlap. For Cr and Mo, standard deviation of the background for the secondary lines is lower for the Fe matrix blank than for the dilute acid blank. This is probably caused by matrix suppression of the calibration curve as described by Mr. Midkiff."... [Pg.305]

In many cases, opening and closing the vent lines must be done carefully to reduce sudden changes in pressure that could destroy the instrument. To bring the instrument back on service, for example, a secondary line may be attached to the vent line to pressurize the instrument slowly. The line may be overpressurized so that when the valve to the process line is opened, the purge fluid flows into the process instead of process fluid entering the instrument line. [Pg.137]

Quality assurance, it will be seen, is critical to establishing mechanical integrity. The OSHA rule covering PSM states that the quality assurance program is an essential part of the mechanical integrity program and will help to maintain the primary and secondary lines of defense..These lines of defense are the protective systems and procedures that one adopts to prevent hazardous releases. They might include ... [Pg.1427]

There are two classes of Robinson-Patman violations (cf American Bar Association Antitmst Section (1992)). One is termed primary line price discrimination. An example is when manufacturer 1 claims that manufacturer 2 offered discriminatory prices to retailers. For this suit to succeed, manufacturer 1 must prove that it has been harmed and that competition has been injured. This generally entails proving that manufacturer 2 s prices are predatory and below-cost (most courts apply a marginal-cost test). This form of Robinson-Patman violation is not relevant with a single manufacturer. The second class is secondary line price discrimination. An example of this would be retailer 1 suing a manufecturer for giving a lower price to retailer 2. For this suit to succeed, retailer 1 must prove it has been harmed and competition has been injured. The latter can only occur when the retailers compete in the same market. [Pg.596]

O Brien, D.P. and G. Shaffer, The Welfare Effects Of Forbidding Discriminatory Discounts A Secondary-Line Analysis Of The Robinson-Patman Act, Journal of Law, Economics, and Organization, 10, 2 (1994), 296-318. [Pg.604]


See other pages where Secondary line is mentioned: [Pg.274]    [Pg.264]    [Pg.91]    [Pg.255]    [Pg.255]    [Pg.3]    [Pg.274]    [Pg.162]    [Pg.163]    [Pg.202]    [Pg.60]    [Pg.95]    [Pg.166]    [Pg.2593]    [Pg.145]    [Pg.294]    [Pg.262]    [Pg.2573]    [Pg.424]    [Pg.408]    [Pg.465]    [Pg.353]    [Pg.63]    [Pg.246]    [Pg.126]    [Pg.127]    [Pg.134]    [Pg.1734]    [Pg.128]    [Pg.1426]   
See also in sourсe #XX -- [ Pg.61 , Pg.73 , Pg.91 ]




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