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Highest

At pressures above the highest real data point, the extrapolated data were generated by the correlation of Lyckman et al. (1965), modified slightly to eliminate any discontinuity between the real and generated data. This modification is small, only a few percent, well within the uncertainties of the Lyckman method. The Lyckman correlation was always used within its recommended limits of validity--that is, at reduced temperatures no greater than 1.5 to 2.0. [Pg.139]

At temperatures above those corresponding to the highest experimental pressures, data were generated using the Lyckman correlation all of these were assigned an uncertainty of 5% of the standard-state fugacity at zero pressure. Frequently, this uncertainty amounts to one half or more atmosphere for the lowest point, and to 1 to 5 atmospheres for the highest point. [Pg.142]

The arrangement which gives the highest overall selectivity can only be deduced by detailed sizing and costing calculations specific to the reaction system. [Pg.33]

Fixed-bed reactors in the form of gas absorption equipment are used commonly for noncatalytic gas-liquid reactions. Here the packed bed serves only to give good contact between the gas and liquid. Both cocurrent and countercurrent operations are used. Countercurrent operation gives the highest reaction rates. Cocurrent operation is preferred if a short liquid residence time is required. [Pg.58]

Relief systems are expensive and introduce considerable environmental problems. Sometimes it is possibly to dispense with relief valves and all that comes after them by using stronger vessels, strong enough to withstand the highest pressures that can be reached. For example, if the vessel can withstand the pump delivery pressure, then a relief valve for overpressurization by the pump may not be needed. However, there may still be a need for a small relief device to guard against overpressurization in the event of a fire. It may be possible to avoid the need for a relief valve on a distillation column... [Pg.265]

When there are three solutions, the smallest in value corresponds to the liquid phase and the highest value corresponds to the vapor phase. [Pg.155]

In practice, the user prefers the densest possible motor fuel that is compatible with the specifications, for it gives him the best volume NHV and highest fuel economy. It is estimated that an increase in density of 4 to 5% brings a reduction in consumption of 3 to 5%. Finally for the refiner, a margin of 50 thousandths accorded for the density of each type of gasoline, makes an acceptable compromise, while a tightening of the specification would be too constraining. [Pg.188]

As of 1 July 1991 all new vehicles registered in Europe should have been adapted for using Eurosuper. However, another quality of unleaded fuel had already appeared in 1988 and has since been well established in some countries, notably France. It is called Superplus, the highest octane level, RON 98, MON 88. Superplus is suitable for vehicles having catalytic converters as well as for a large part of the former automotive fleet requiring an RON of 97 and higher. [Pg.210]

For purposes of information one can compare these levels with those of plants (0.1 to 0.4%), mollusks (0.4%) and the human body (0.14%), but the highest levels are observed in marine algae (13% in Macrocytis pyrifera), and in the tissues of certain bacteria which can even contain elemental sulfur (25% in Beggiatoa Albea tissues). [Pg.320]

Tension load Caused by the string weight during running in it will be highest at the top joints... [Pg.54]

A well known example of capillary-buoyancy equilibrium is the experiment in which a number of glass tubes of varying diameter are placed into a tray of water. The water level rises up the tubes, reaching its highest point in the narrowest of the tubes. The same observation would be made if the fluids in the system were oil and water rather than air and water. [Pg.120]

For decision nodes, it is assumed that good management will lead us to decide on the action which will result in the highest NPV. Hence the value of the decision node is the optimum of the values of its actions. [Pg.180]

The type of development, type and number of development wells, recovery factor and production profile are all inter-linked. Their dependency may be estimated using the above approach, but lends itself to the techniques of reservoir simulation introduced in Section 8.4. There is never an obvious single development plan for a field, and the optimum plan also involves the cost of the surface facilities required. The decision as to which development plan is the best is usually based on the economic criterion of profitability. Figure 9.1 represents a series of calculations, aimed at determining the optimum development plan (the one with the highest net present value, as defined in Section 13). [Pg.214]

A test separator is provided on each drilling platform and Is used to test the wells sequentially. The capacity of the test separator would have to be equal to the production from the highest rate well. [Pg.283]

During the inspection of an unknown object its surface is scanned by the probe and ultrasonic spectra are acquired for many discrete points. Disbond detection is performed by the operator looking at some simple features of the acquired spectra, such as center frequency and amplitude of the highest peak in a pre-selected frequency range. This means that the operator has to perform spectrum classification based on primitive features extracted by the instrument. [Pg.109]

To find now the optimum excitation frequency, we calculate the first derivative of Equ. (3.1) to find the maximum value of the response field of cracks in different depths (Fig. 3,1). For example a crack (20 x 0.6 x 0,2 mm) in a depth of 9 mm in an aluminium sample (a = 20 MS/m) could be found with highest SNR when using a frequency of 260 Hz Here a double-D... [Pg.257]

The development of these systems first led to the u.sc of differential rcsp. multi-differential probes. These probes offer the highest possible sensitivity towards gradual influences, but... [Pg.307]

In addition to the distortions caused by the probes, there were also distortions caused by filtering the signals within the eddy-current test instruments. To achieve the highest possible dynamics with the test instruments, high-pass filters with a high rate of rise, but also a long reverberation time were used. Thus, the recorded C-scan pictures sometimes shows strong echo effects. [Pg.309]

This is visible in the behaviour of the impulse responses as well (fig, 7), There the amplitude of curve (1) (gWng, )) is the highest, of curve (2) ig(L,)) the lowest, but the maxima are not located at the same place. [Pg.371]

If improvements should be achieved by an automation of the inspection process this requires a control of the process parameters of the whole equipment by an integrated "intelligent" system and not by displays still being controlled by the human inspector. This integrated control-system ensures that the inspection conditions are at the highest reproduction level. [Pg.628]

With reference to obtained results the high-teeh manual ultrasonic inspection performed by ISONIC system becames competitable with radiography, providing highest sensitivity, low inspection cost, obvious and objective documentation. [Pg.773]

Another potential, mentioned in the next section, is the thermionic work function, where ei gives the work necessary to remove an electron from the highest populated level in a metal to a point outside. We can write... [Pg.207]


See other pages where Highest is mentioned: [Pg.139]    [Pg.11]    [Pg.29]    [Pg.87]    [Pg.103]    [Pg.132]    [Pg.178]    [Pg.182]    [Pg.291]    [Pg.355]    [Pg.427]    [Pg.231]    [Pg.69]    [Pg.86]    [Pg.137]    [Pg.45]    [Pg.231]    [Pg.288]    [Pg.370]    [Pg.428]    [Pg.465]    [Pg.548]    [Pg.589]    [Pg.742]    [Pg.897]    [Pg.907]    [Pg.1063]    [Pg.362]    [Pg.68]   


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Aromatic compounds highest occupied molecular orbitals

Atomic orbitals highest occupied molecular

Broad-based highest attainable standard

Cobalt highest melting points

Copper highest concentration

Copper highest melting points

Detection resolution highest/lowest

Elements highest atomic numbers

Energies of highest occupied molecular

Energy of highest occupied molecular orbital

Fermi hole HOMO (highest energy occupied

Free-electron model highest occupied molecular orbital

Frontier highest occupied molecular orbital

Frontier second highest occupied molecular orbital

Graft copolymers highest yields

HOMO (Highest Occupied

HOMO (Highest Occupied Molecular

HOMO (highest occupied Diels-Alder reactions

HOMO (highest occupied electronic effects

HOMO (highest occupied molecular energy

HOMO (highest occupied molecular orbit

HOMO (highest occupied molecular orbital of benzyl anion

HOMO (highest occupied substituent effects

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Highest Clarity , heaven

Highest Electrostatic Discharge Energy at

Highest Level

Highest OLEDs

Highest Oxidation State of Iron Ferrates (VI)

Highest Purity

Highest Sovereign

Highest acceptable risk

Highest amorphous materials

Highest attainable standard

Highest barrier layers

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Highest energy occupied orbitals

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Highest lying occupied molecular orbital

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Highest occupied

Highest occupied MO

Highest occupied crystal orbital

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Highest occupied molecular INDEX

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Highest occupied molecular orbital

Highest occupied molecular orbital HOMO)

Highest occupied molecular orbital HOMO) energy

Highest occupied molecular orbital HOMO) level

Highest occupied molecular orbital HOMO), pericyclic reaction

Highest occupied molecular orbital UV spectroscopy and

Highest occupied molecular orbital acidity

Highest occupied molecular orbital analysis

Highest occupied molecular orbital and LUMO

Highest occupied molecular orbital aromatic

Highest occupied molecular orbital butadiene

Highest occupied molecular orbital calculation

Highest occupied molecular orbital charge distribution

Highest occupied molecular orbital complexes

Highest occupied molecular orbital cycloaddition reactions and

Highest occupied molecular orbital cycloadditions

Highest occupied molecular orbital definition

Highest occupied molecular orbital delocalized state

Highest occupied molecular orbital derivatives

Highest occupied molecular orbital electrocyclic reactions and

Highest occupied molecular orbital electron injection

Highest occupied molecular orbital energy

Highest occupied molecular orbital energy average

Highest occupied molecular orbital energy levels

Highest occupied molecular orbital ethylene

Highest occupied molecular orbital general reactivity

Highest occupied molecular orbital hole injection energy levels

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Highest occupied molecular orbital hydrocarbons

Highest occupied molecular orbital interaction with lowest unoccupied

Highest occupied molecular orbital interactions

Highest occupied molecular orbital interface levels

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Highest occupied molecular orbital luminescence

Highest occupied molecular orbital modeling

Highest occupied molecular orbital organic molecules

Highest occupied molecular orbital oxidation-reduction potentials

Highest occupied molecular orbital photochemical HOMO

Highest occupied molecular orbital polymer conjugation

Highest occupied molecular orbital properties

Highest occupied molecular orbital reactions

Highest occupied molecular orbital redox potential and charge injection

Highest occupied molecular orbital redox properties

Highest occupied molecular orbital regioselectivity

Highest occupied molecular orbital separation

Highest occupied molecular orbital spectroscopy

Highest occupied molecular orbital splitting

Highest occupied molecular orbital stability

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Highest occupied molecular orbital structure

Highest occupied molecular orbital transition-metal complexes

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Highest occupied molecular orbital. See

Highest occupied molecular orbital/lowest LUMO) overlap

Highest occupied molecular orbitals HOMO)

Highest occupied molecular orbitals HOMOs). electron promotion

Highest occupied molecular organic radical ions

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Highest occupied orbital Kohn-Sham theory

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Highest occupied-lowest unoccupied molecular orbital analysis

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Highest-energy occupied molecular orbitals

Highest-energy optical phonons

Highest-energy step

Highest-occupied energy level

Highest-occupied molecular oibital

Highest-occupied molecular orbital benzene

Highest-occupied molecular orbital energy eigenvalue

Highest-order singularities and unfoldings

Highest-posterior-density

Highest-scoring common substructure (HSCS

Inter-correlations highest

Isotope highest

Isotopomer highest

Matter highest density

Molecular bonds/orbitals highest occupied

Molecular orbitals highest occupied

Monovalent metal clusters highest spin states

Monovalent metal clusters highest spin states bound triplet pairs

Nucleophile highest occupied molecular

Orbital highest filled

Orbitals highest occupied

Orbitals highest occupied molecular orbital

Pericyclic reactions highest occupied molecular orbital

Pollutants highest frequency

Precision highest possible

Product highest-volume

Regions of Highest Radiological Hazard

Resolution highest achieved

Response rates highest

Ruthenium highest sensitivity

SIVERAS new grade with highest weld strength

Scores highest

Singly occupied highest molecular

Singly occupied highest molecular orbital

Temperature highest processing

Thermal conductivity highest

Uncertainty at the Highest Level of Exigence Imminent Danger

Vibrational highest

Wittig reactions highest yields

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