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Characteristic properties

Using the principle of corresponding states requires knowledge of pseudo-critical constants of petroleum fractions these should be estimated starting from characteristic properties which are the normal boiling temperature and the standard specific gravity. [Pg.97]

The pour point of a cut or petroleum fraction can be derived from the characteristic properties by an expression published by the API ... [Pg.172]

The characteristic properties of waxes and paraffins can be grouped in three classes... [Pg.285]

Spectroscopy, or the study of the interaction of light with matter, has become one of the major tools of the natural and physical sciences during this century. As the wavelength of the radiation is varied across the electromagnetic spectrum, characteristic properties of atoms, molecules, liquids and solids are probed. In the... [Pg.1232]

A fingerprint ofa chemical structure tries to identify a molecule with some special characteristics, much in the same way as a human fingerprint identifies a person. The characteristic property can, for example, be described by the structure or struc-... [Pg.71]

The characteristic property of aliphatic nitrocompounds of the type RCHiKOj and RjCHNO, is that they are pseiido cids, I. e., whereas they are neutral in the normal form (A), they are able by tautomeric change under the influence of alkali to give the acidic hydroxy form (B) which thus in turn gives the sodium salt (C). When this sodium salt is treated with one equivalent of hydrochloric acid, the acid form (B) is at once regenerated, and then more slowly reverts to the more stable normal form (A). [Pg.131]

One of the characteristic properties of phenol is the ease with which it gives substitution products, this property being particularly well shown by the ready nitration, sulphonation and bromination which the benzene ring in the phenol molecule undergoes. [Pg.170]

Hydrazinoselenazoles are solids, often in the form of crystals. They possess the characteristic properties common to hydrazines, especially as... [Pg.234]

Carbon-fluorine bonds are quite strong (slightly stronger than C—H bonds) and like polyethylene Teflon is a very stable inert material We are all familiar with the most characteristic property of Teflon its nonstick surface This can be understood by com paring Teflon and polyethylene The high electronegativity of fluorine makes C—P bonds less polarizable than C—H bonds causing the dispersion forces m Teflon to be less than those m polyethylene Thus the surface of Teflon is even less sticky than the already slick surface of polyethylene... [Pg.271]

The most characteristic property of phenols is their acidity Phenols are more acidic than alcohols but less acidic than carboxylic acids Recall that carboxylic acids have s of approximately 5 whereas the pK s of alcohols are m the 16-20 range The pK for most phenols is about 10... [Pg.996]

A characteristic property of an aldehyde function is its sensitivity to oxidation A solu tion of copper(II) sulfate as its citrate complex (Benedict s reagent) is capable of oxi dizing aliphatic aldehydes to the corresponding carboxylic acid... [Pg.1053]

The ebullioscopic constant, a characteristic property of the solvent, may be calculated from the relation ... [Pg.1090]

The energy of a photon provides an additional characteristic property of electromagnetic radiation. [Pg.372]

In the previous section we defined several characteristic properties of electromagnetic radiation, including its energy, velocity, amplitude, frequency, phase angle, polarization, and direction of propagation. Spectroscopy is possible only if the photon s interaction with the sample leads to a change in one or more of these characteristic properties. [Pg.372]

Thermal Transducers Infrared radiation generally does not have sufficient energy to produce a measurable current when using a photon transducer. A thermal transducer, therefore, is used for infrared spectroscopy. The absorption of infrared photons by a thermal transducer increases its temperature, changing one or more of its characteristic properties. The pneumatic transducer, for example. [Pg.379]

An important characteristic property of a radioactive isotope is its half-life, fj/2, which is the amount of time required for half of the radioactive atoms to disintegrate. For first-order kinetics the half-life is independent of concentration and is given as... [Pg.643]

One characteristic property of dyes is their colour due to absorption from the ground electronic state Sq to the first excited singlet state Sj lying in the visible region. Also typical of a dye is a high absorbing power characterized by a value of the oscillator strength/ (see Equation 2.18) close to 1, and also a value of the fluorescence quantum yield (see Equation 7.135) close to 1. [Pg.359]

Commercial production of PVA fiber was thus started in Japan, at as early a period as that for nylon. However, compared with various other synthetic fibers which appeared after that period, the properties of which have continuously been improved, PVA fiber is not very well suited for clothing and interior uses because of its characteristic properties. The fiber, however, is widely used in the world because of unique features such as high affinity for water due to the —OH groups present in PVA, excellent mechanical properties because of high crystallinity, and high resistance to chemicals including alkah and natural conditions. [Pg.337]

Table 9. Comparison of Characteristic Properties of Substrate Materials... Table 9. Comparison of Characteristic Properties of Substrate Materials...
Properties. One of the characteristic properties of the polyphosphazene backbone is high chain dexibility which allows mobility of the chains even at quite low temperatures. Glass-transition temperatures down to —105° C are known with some alkoxy substituents. Symmetrically substituted alkoxy and aryloxy polymers often exhibit melting transitions if the substituents allow packing of the chains, but mixed-substituent polymers are amorphous. Thus the mixed substitution pattern is deUberately used for the synthesis of various phosphazene elastomers. On the other hand, as with many other flexible-chain polymers, glass-transition temperatures above 100°C can be obtained with bulky substituents on the phosphazene backbone. [Pg.257]

Two parallel plates of conducting material separated by an insulation material, called the dielectric, constitutes an electrical condenser. The two plates may be electrically charged by connecting them to a source of direct current potential. The amount of electrical energy that can be stored in this manner is called the capacitance of the condenser, and is a function of the voltage, area of the plates, thickness of the dielectric, and the characteristic property of the dielectric material called dielectric constant. [Pg.325]

Aromatic polyethers are best characterized by their thermal and chemical stabiUties and mechanical properties. The aromatic portion of the polyether contributes to the thermal stabiUty and mechanical properties, and the ether fiinctionahty faciUtates processing but stiU possesses both oxidative and thermal stabiUty. With these characteristic properties as well as the abiUty to be processed as mol ding materials, many of the aromatic polyethers can be classified as engineering thermoplastics (see Engineering PLASTICS). [Pg.326]

The dielectric constants of amino acid solutions are very high. Thek ionic dipolar structures confer special vibrational spectra (Raman, k), as well as characteristic properties (specific volumes, specific heats, electrostriction) (34). [Pg.274]

Table 4. Characteristic Properties for Liquid Separation Methods ... Table 4. Characteristic Properties for Liquid Separation Methods ...
Separation method Characteristic properties Separation principle Separation agent Industrial appHcation... [Pg.453]

The special case involving the removal of a low (2—3 mol %) mole fraction impurity at high (>99 mol%) recovery is called purification separation. Purification separation typically results in one product of very high purity. It may or may not be desirable to recover the impurity in the other product. The separation methods appHcable to purification separation include equiUbrium adsorption, molecular sieve adsorption, chemical absorption, and catalytic conversion. Physical absorption is not included in this Hst as this method typically caimot achieve extremely high purities. Table 8 presents a Hst of the gas—vapor separation methods with their corresponding characteristic properties. The considerations for gas—vapor methods are as follows (26—44). [Pg.458]

Table 10. Characteristic Properties of Some Polystyrene Foams... Table 10. Characteristic Properties of Some Polystyrene Foams...
The main characteristic properties of asbestos fibers that can be exploited in industrial appHcations (8) are their thermal, electrical, and sound insulation nonflammabiUty matrix reinforcement (cement, plastic, and resins) adsorption capacity (filtration, Hquid sterilization) wear and friction properties (friction materials) and chemical inertia (except in acids). These properties have led to several main classes of industrial products or appHcations... [Pg.354]

A pair of kinetic parameters, one for nucleation rate and another for growth rate, describe the crystal size distribution for a given set of crystallizer operating conditions. Variation ia one of the kinetic parameters without changing the other is not possible. Accordingly, the relationship between these parameters determines the abiUty to alter the characteristic properties (such as dominant size) of the distribution obtained from an MSMPR crystallizer (7). [Pg.350]

Blackbody Radiation Engineering calculations of thermal radiation from surfaces are best keyed to the radiation characteristics of the blackbody, or ideal radiator. The characteristic properties of a blackbody are that it absorbs all the radiation incident on its surface and that the quality and intensity of the radiation it emits are completely determined by its temperature. The total radiative fliix throughout a hemisphere from a black surface of area A and absolute temperature T is given by the Stefan-Boltzmann law ... [Pg.570]


See other pages where Characteristic properties is mentioned: [Pg.87]    [Pg.381]    [Pg.108]    [Pg.360]    [Pg.1028]    [Pg.1081]    [Pg.1006]    [Pg.272]    [Pg.158]    [Pg.297]    [Pg.333]    [Pg.267]    [Pg.257]    [Pg.434]    [Pg.342]    [Pg.311]    [Pg.270]    [Pg.554]   
See also in sourсe #XX -- [ Pg.200 ]




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Amino acids: characteristic chemical properties

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Carboxylic acids characteristic chemical properties

Chain characteristic properties

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Characteristic properties of asphalts with thermosetting polymers

Characteristic properties of elastomer-modified bitumen

Characteristic properties of industrial plasticizers

Characteristic properties of modified bitumen and asphalts with thermoplastic polymers

Characteristic properties of polymer solutions

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Characteristics and Properties of Silicon

Characteristics and Properties of c-BN

Characteristics and Properties of h-BN

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Colloidal systems characteristic properties

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Film characteristics, precursor properties

Fractal characteristic properties

General Characteristics and Properties

Halogen compounds characteristic chemical properties

Hydrogen characteristic properties

Inhalant properties characteristics

Interfacial properties characteristics

Ketones aromatic: characteristic chemical properties

Material characteristic properties

Material characteristic properties Conductivity

Material characteristic properties Dielectric constant

Material characteristic properties Frequency limits

Material characteristic properties Measurement errors

Material characteristic properties Resistivity

Material characteristic properties Thermal conductivity

Material characteristic properties parameters

Material properties structural-chemical characteristics

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Mechanical properties, characteristics

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Metal characteristic properties

Micelles characteristic properties

Molecular magnetic properties field characteristics

Nitriles characteristic chemical properties

Nonmetals characteristic properties

Phenols: characteristic chemical properties

Phenols: characteristic chemical properties derivatives

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Physical properties - optical and spectral characteristics

Physical properties A characteristic

Polycrystalline characteristic properties

Polymer properties stress-strain characteristics

Practical characteristic properties

Primary properties characteristic particle size

Properties Characteristics that describe

Properties Characteristics that describe chemical composition

Properties Dependent on Single Particle Characteristics

Properties and Characteristics of a Reaction

Properties and Characteristics of the Carbon Atom

Properties and spectral characteristics

Pure characteristic physical property constant

Quinones: characteristic chemical properties

Sensing characteristics, surface properties

Setting properties characteristics

Solids characteristic properties

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Sulphides : characteristic chemical properties

The influence of particle characteristics on bulk powder properties

Thermodynamic property characteristics

Thiols characteristic chemical properties

Titanium characteristic properties

Transition elements characteristic properties

What Are the Characteristic Physical Properties of Amines

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