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Of fusion

The properties of the solids most commonly encountered are tabulated. An important problem arises for petroleum fractions because data for the freezing point and enthalpy of fusion are very scarce. The MEK (methyl ethyl ketone) process utilizes the solvent s property that increases the partial fugacity of the paraffins in the liquid phase and thus favors their crystallization. The calculations for crystallization are sensitive and it is usually necessary to revert to experimental measurement. [Pg.172]

Triple point temperature K Heat of fusion kJ/lc Heat of vaporization kJ/kg Liquid conductivity atr, W / (m-K) Liquid conductivity AtT W/(m-I0 Temperature Ti K Temperature h K... [Pg.417]

Triple point temperature Heat of fusion Heat of vaporization Liquid conductivity at r, Liquid conductivity at Temperature Tx Temperature Tz... [Pg.421]

The major drawback of this identification method, as used to date, is that only a part of the useful information contained into original Bscan image, i.e. segmented Bscan image, is used for defect characterization. Moreover, it requires the availability of defect classification information (i.e. if the defect is volumetric or planar, e.g. a crack or a lack of fusion), which, generally, may be as difficult to obtain as the defect parameters themselves. Therefore, we... [Pg.171]

Radiography is less effective for detecting arbitrarily oriented planar defects (such as tight cracks or lack of fusion) in thick metal sections unless the likely location and orientation of cracking is known in advance. [Pg.181]

The results are illustrated by figure 5 B-Scan, C-Scan and D-Scan representations show that there are two types of defects. On the left part of the weld, we remark a lack of fusion, while on the right part, we observe a nest of blow hole. [Pg.227]

A two-dimensional slice may be taken either parallel to one of the principal co-ordinate planes (X-Y, X-Z and Y-Z) selected from a menu, or in any arbitrary orientation defined on screen by the user. Once a slice through the data has been taken, and displayed on the screen, a number of tools are available to assist the operator with making measurements of indications. These tools allow measurement of distance between two points, calculation of 6dB or maximum amplitude length of a flaw, plotting of a 6dB contour, and textual aimotation of the view. Figure 11 shows 6dB sizing and annotation applied to a lack of fusion example. [Pg.772]

An interesting point is that AH itself varies with r [10].] As is the case when P is varied, the rate of nucleation increases so strongly with the degree of supercooling that a fairly sharp critical value exists for T. Analogous equations can be written for the supercooling of a melt, where the heat of fusion AH/ replaces AH . [Pg.332]

The fact that water is a liquid at room temperature with high enthalpies of fusion and vaporisation can be attributed to hydrogen bond formation. The water molecule is shown in Figure 10.3. [Pg.269]

The normal boiling point of 2-methylthiazole is 17 0= 128.488 0.005°C. The purity of various thiazoles was determined cryometrically by Handley et al. (292), who measured the precise melting point of thiazole and its monomethyl derivatives. Meyer et al. (293, 294) extended this study and, from the experimental diagrams of crystallization (temperature/degree of crystallization), obtained the true temperatures of crystallization and molar enthalpies of fusion of ideally pure thiazoles (Table 1-43). [Pg.85]

Molar enthalpy of fusion of ideally pure sample. [Pg.86]

Table 6.2 Heats of Fusion, Vaporization, and Sublimation and Specific Heat at... Table 6.2 Heats of Fusion, Vaporization, and Sublimation and Specific Heat at...

See other pages where Of fusion is mentioned: [Pg.236]    [Pg.87]    [Pg.93]    [Pg.172]    [Pg.946]    [Pg.1043]    [Pg.337]    [Pg.2527]    [Pg.323]    [Pg.26]   
See also in sourсe #XX -- [ Pg.447 , Pg.451 ]




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Applications of Fission and Fusion

Comparative Study of TSA Products Obtained from Hydrothermal and Fusion Methods

Complete fusion of heavy ions

Construction of Artificial Self-Sufficient Fusion Proteins

Control of Fusion Between Giant Vesicles

Course of fusion

Degree of fusion

Determination of total silicon by carbonate fusion

Diene Substitution on the Geometry of Ring Fusion

Elements enthalpy of fusion

Enthalpies of fusion, data

Enthalpies of vaporization, fusion, and sublimation

Enthalpy and entropy of fusion

Enthalpy change of fusion, group 18 elements

Enthalpy changes of fusion

Enthalpy of Fusion for Ice

Enthalpy of Vaporization and Fusion

Enthalpy of fusion

Enthalpy of fusion cryogenic fluids

Enthalpy of fusion metals

Enthalpy of fusion rare earth elements

Enthalpy of fusion vaporization

Entropy of fusion

Entropy of fusion and the freezing curve

Equilibrium heat of fusion

Equipment for Fusion of Solids

Expression of Fusion Proteins

Fission and Fusion of Atomic Nuclei

Flame-Fusion (Verneuil) Growth of Oxides

Fluorescence Microscopy of Liposome Fusion onto a DOPC-coated Hg Interface

Free energy of fusion

From Fusion of the Elements

Fusion The process of combining two light

Fusion The process of combining two light nuclei to form a heavier, more stable

Fusion The process of combining two light nuclei to form a heavier, more stable nucleus

Fusion of cells

Fusion of copolymers poly

Fusion of cross-linked polymers

Fusion of homopolymers

Fusion of hydrogen to helium

Fusion of lymphocytes

Fusion of particle and bead polymers

Fusion of solids

Fusion of the -alkanes and other oligomers

Fusion of the sodium salt

Fusion of vesicles

Fusion, alkaline, of an aryl sulfonate

Fusion, caustic, of vanillin

Fusion, heats of

Fusion, molar heat of

Fusion, of deuterium

Fusion, of membranes

Fusion, of samples

Heal of fusion

Heat of Fusion and Crystallinity

Heat of fusion The energy required to melt

Heat of fusion determination

Heat of fusion enthalpy

Heat of fusion rule

Heat of fusion vaporization

Heats of Fusion and Vaporization

Heats of fusion Vaporization Sublimation

Hydrogen enthalpy of fusion

Latent heat of crystallization and fusion (melting)

Latent heat of fusion

Melting heat of fusion

Melting temperatures, heats and entropies of fusion

Molar enthalpy of fusion

Molar entropy of fusion

Molar heat of fusion The energy required

NUCLEAR FUSION IS THE COMBINING OF ATOMIC NUCLEI

Nature of the fusion process

Need of Reactivation by Fusion

Nuclear Fusion Is a Potential Source of Clean Energy

Nylon heat of fusion

Of fusion sublimation

Oxygen enthalpy of fusion

Phase transitions enthalpy of fusion

Point and Enthalpy of Fusion

Poly enthalpy of fusion per repeating unit

Poly entropy of fusion

Polymer heat of fusion

Preparation of cells for fusion

Preparation of polyethylene glycol (PEG) for fusion

Specific latent heat of fusion

Standard enthalpy of fusion

Studies of plastisols behavior during gelation and fusion

The Molar Heat of Fusion and Vaporization

The Problem of Tritium Retention in Fusion Devices

The Promise of Nuclear Fusion

Thermodynamics of Fusion

Volume of fusion

Water enthalpy of fusion

Water heat of fusion

Water heat of fusion for

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