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Signal type

Signal Type of possible injury Signal Susceptibility of materials to burning Signal Susceptibility to release of energy... [Pg.2274]

To ensure flexibility for possible later additions or changes, the instrumentation has to be selected based on standardized subproducts using national or international norms. These standards are mainly based on the measuring areas and signal types. Typical signals for input and output to the data-based controller (DDC and PTC) are... [Pg.775]

Fig. 4. Anaerobic titration of xanthine oxidase with xanthine at pH 8.2 with a reaction time of 2 min. at about 20°. The integrated intensity of the Rapid molybdenum EPR signals (in arbitrary units) is plotted against the number of moles of xanthine added per mole of active enzyme. Activity/A4jo for the enzyme samples used was 112 corresponding to an active enzyme content of 57%. Thus the molar ratios of xanthine/total xanthine oxidase have been multiplied by 1.76 to refer to the active form only. Some of the EPR spectra (recorded at about — 130° and 9.3 GHz) are reproduced to show the changes in signal type as the amount of xanthine is increased. (Data re-calculated from ref. 88, with intensities corrected for variations in tube diameter and enzyme concentration calculated in terms of active enzyme.)... Fig. 4. Anaerobic titration of xanthine oxidase with xanthine at pH 8.2 with a reaction time of 2 min. at about 20°. The integrated intensity of the Rapid molybdenum EPR signals (in arbitrary units) is plotted against the number of moles of xanthine added per mole of active enzyme. Activity/A4jo for the enzyme samples used was 112 corresponding to an active enzyme content of 57%. Thus the molar ratios of xanthine/total xanthine oxidase have been multiplied by 1.76 to refer to the active form only. Some of the EPR spectra (recorded at about — 130° and 9.3 GHz) are reproduced to show the changes in signal type as the amount of xanthine is increased. (Data re-calculated from ref. 88, with intensities corrected for variations in tube diameter and enzyme concentration calculated in terms of active enzyme.)...
Survey of Sensitivity Characteristics of Typical Delay Ignitor Flash and Signal-Type Pyrotechnic Compounds Joseph Kristal and Seymour M. Kaye Picatinny Arsenal, Dover New Jersey 439383 111... [Pg.209]

The results obtained when the network was operated with four neurons are presented in Figure 4.52. It can be seen that the concentration prohles of Si and B are of the same type as those obtained in Figure 4.51 when n = 3. However, a completely different prohle is obtained for P4, for which a repetihve signal with a hme period of 5 min is observed. Thus, this system also performs a division by 2 operation. The concentrahon prohle of P3 is a repetihve signal with a hme period of 10 min, but each 10-min period can be subdivided into two different signal types, each of which is characterized by... [Pg.96]

The results presented in Figure 4.53 were obtained with six biochemical neurons in the network. In this case the types of signal obtained are very similar to those in Figure 4.52. A repetitive signal with a time period of 5 min (that means division by 2) is obtained for Pe. The concentration prohle of P4 is a repetitive signal with a period of 10 min that can be subdivided into two different signal types, each of which is characterized with a time period of 5 min. Therefore, with respect to these prohles, division by 2 is performed by this network as well. [Pg.97]

Can produce the signal types predicted by the analytical model. [Pg.127]

The system performs information processing when the information obtained in the output is different from the information fed in the input in at least one of its characteristics (i.e., signal type, frequency, or amphtude). [Pg.165]

Lusardi (Ref 24) describes in Section 300 analytical procedures for the following compositions used in pyrotechnics igniter, first fire, flash, matchhead, delay and relay Method No 320. Igniter Composition, Aircraft Signal Type - Red lead 33-1/3, CuO 33-1/3 Si 33-1/3 [US Army Spec No 50-55-9 (1946)1... [Pg.1074]

For the process measurement and control instrumentation the loop schedule enables allocation of a unique identifier (tag number) to each instrument used in the operation of the plant. This will allow application details to be added to the schedule (e.g., range, accuracy, set-point tolerance, signal type, description, location and any other information thought necessary to provide a clear understanding of the requirements for each instrument). [Pg.585]

Control set points, alarm, and interlock switch points (as applicable) Engineering range and signal type/level Operating/calibration tolerances Fail-safe mode... [Pg.602]

Requirements such as supply voltage, signal type/levels, mounting, type of housing, cabling standards, and labeling... [Pg.609]

Modules for various signal types (analogue IN (AI), analogue OUT (AO), digital IN (DI), digital OUT (DO), temperature, frequency etc.) are available covering all the systems which are known today. The signal circuits are intrinsically safe. [Pg.379]

In general, we have c(0) = 0 for all the signal types then, we can transform the previous relation to show the transfer model function ... [Pg.73]

Installed spare capacity, including fail-safe redundancy features Future expansion with any imphcations for reduced performance Plant external I/O signals (type, format, range, accuracy, timing)... [Pg.207]

C. Of the signal types listed, digital is least suited for long distances because it degrades the most. [Pg.267]

The electron signals from each pixel of the raster are collected by a detector in order to generate a corresponding point-to-point image on a display screen. To understand signal detection, knowledge of electron signal types that are useful in an SEM is necessary backscattered electrons and secondary electrons. [Pg.123]

Signal Type of Possible Injury Susceptibility of Materials to Burning Susceptibility to Release of Energy ... [Pg.424]


See other pages where Signal type is mentioned: [Pg.208]    [Pg.120]    [Pg.121]    [Pg.140]    [Pg.7]    [Pg.83]    [Pg.90]    [Pg.96]    [Pg.127]    [Pg.63]    [Pg.76]    [Pg.133]    [Pg.84]    [Pg.195]    [Pg.483]    [Pg.251]    [Pg.253]    [Pg.147]    [Pg.230]    [Pg.49]    [Pg.435]    [Pg.179]    [Pg.88]    [Pg.838]    [Pg.579]    [Pg.609]    [Pg.657]    [Pg.733]    [Pg.178]    [Pg.479]    [Pg.482]   
See also in sourсe #XX -- [ Pg.214 ]




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Communication, types signals

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P-type signal

Signal resolved type

Signal type restriction

Types and Properties of Analytical Signals

Types of signal processing

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