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Height of measurement

Instrument Name Height of measurement Target Species Platform... [Pg.305]

The measure of the inductance variation observed during of the movement of the product in the solenoid generator allows to calculate directly the surface of the straight section of the defect of greater lengtli that the solenoid. More, tlie variation of the resistance allows to determine the height of the defect. [Pg.350]

This study was in real time measured that the reflective echo height of the bonding interface in the solid phase diffused bonding process of carbon steel and titanium using ultrasonic testing method. As a result, the following were made discernment. [Pg.848]

The echo height of side drilled holes was measured at a constant beam path length as shown in Fig. 1. [Pg.903]

Fig. 1 Measuring method of echo height of side drill hole Fig. 2 Calculation Method of Echo Directivity [or SH Wave Probes... Fig. 1 Measuring method of echo height of side drill hole Fig. 2 Calculation Method of Echo Directivity [or SH Wave Probes...
The echo directivity for surface SH Wave probes and SH Wave angle probes was measured. The experiment was carried out by measuring the echo height from side drilled holes of different depths at a constant beam path length. The calculation of echo height was based on a point sound source on the test surface in different phases. The experiment and the calculation were compared. The effects of the frequency, height of... [Pg.907]

As is evident firom the theory of the method, h must be the height of rise above a surface for which AP is zero, that is, a flat liquid surface. In practice, then, h is measured relative to the surface of the liquid in a wide outer tube or dish, as illustrated in Fig. n-6, and it is important to realize that there may not be an appreciable capillary rise in relatively wide tubes. Thus, for water, the rise is 0.04 mm in a tube 1.6 cm in radius, although it is only 0.0009 mm in one of 2.7-cm radius. [Pg.16]

The measurement of the current for a redox process as a fiinction of an applied potential yields a voltaimnogram characteristic of the analyte of interest. The particular features, such as peak potentials, halfwave potentials, relative peak/wave height of a voltaimnogram give qualitative infonnation about the analyte electrochemistry within the sample being studied, whilst quantitative data can also be detennined. There is a wealth of voltaimnetric teclmiques, which are linked to the fonn of potential program and mode of current measurement adopted. Potential-step and potential-sweep... [Pg.1926]

The air may be collected directly into a Hempel gas-burette (Fig. 76) and there measured. This burette consists of a glass tube H calibrated in ml. from the tap E downwards, and connected by a piece of rubber tubing to the reservoir R, the height of which can be adjusted. The tap E is a 3-way tap. by which the tube H can be connected directly through to the capillary tube above, or either tube can be connected through the left- hand end of the tap to the atmosphere. [Pg.427]

An interesting historical application of the Boltzmann equation involves examination of the number density of very small spherical globules of latex suspended in water. The particles are dishibuted in the potential gradient of the gravitational field. If an arbitrary point in the suspension is selected, the number of particles N at height h pm (1 pm= 10 m) above the reference point can be counted with a magnifying lens. In one series of measurements, the number of particles per unit volume of the suspension as a function of h was as shown in Table 3-3. [Pg.74]

Assuming a Gaussian profile, the extent of band broadening is measured by the variance or standard deviation of a chromatographic peak. The height of a theoretical plate is defined as the variance per unit length of the column... [Pg.553]

Gombining equations 12.13 through 12.15 gives the height of a theoretical plate in terms of the easily measured chromatographic parameters and w. [Pg.553]

A mass spectrum consists of peaks corresponding to ions. The position of a peak on the x-axis is proportional to its mass (strictly, its m/z value), while the height of the peak on the y-axis gives the number of ions (abundances) at a particular m/z. The ions giving rise to the spectrum are formed in an ion source and are passed through an analyzer for measurement of m/z and into a detector for measurement of abundance (Figure 32.1). [Pg.225]

Example of a mass spectrum showing the peaks (or lines) corresponding to ions measured at various m/z values by the spectrometer the heights of the peaks relate to the abundance of the ions. [Pg.226]


See other pages where Height of measurement is mentioned: [Pg.91]    [Pg.408]    [Pg.169]    [Pg.169]    [Pg.170]    [Pg.170]    [Pg.167]    [Pg.2203]    [Pg.219]    [Pg.91]    [Pg.408]    [Pg.169]    [Pg.169]    [Pg.170]    [Pg.170]    [Pg.167]    [Pg.2203]    [Pg.219]    [Pg.159]    [Pg.240]    [Pg.260]    [Pg.902]    [Pg.29]    [Pg.42]    [Pg.198]    [Pg.242]    [Pg.344]    [Pg.1338]    [Pg.1930]    [Pg.1931]    [Pg.2268]    [Pg.479]    [Pg.122]    [Pg.114]    [Pg.144]    [Pg.89]    [Pg.177]    [Pg.436]    [Pg.438]    [Pg.610]    [Pg.203]   
See also in sourсe #XX -- [ Pg.34 , Pg.83 ]




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Measurement of wave heights

Of height

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