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Size methods

Plan defects are the most sensitive to a disorientation of the ultrasonic beam and are therefore the most difficult for sizing. If the defect is perpendicular to the direction of propagation, the sizing method by successive falls of 6 dB will give a correct dimension estimation of the... [Pg.225]

BIRAC (A.M.), SAGLIO (R.) and FRAPPIER (J.C.), Improvement of sizing methods by ultrasonic focalised probes. Proceedings of a specialist meeting-Nuclear Science and Technology, Ispra, 1983. [Pg.227]

Because the cells can intermpt the optical path in random orientations, individual scattering intensities are not proportional to cell volume. However, because thousands of cells of each type pass through the flow cell, the effects of orientation can be averaged To a first approximation HCT and platelet crit (PCT), the percentage of blood sample volume occupied by platelets, is proportional to the sums of the scattering intensities of the ted cells and platelets, respectively. MCV can be computed from HCT and RBC, whereas MPV can be computed from PCT and PLT. The accuracy of MCV deterrnined by this method is tied to the RBC accuracy, as is the case for the manual MCV method. Ortho Instmments Corporation s ELT-8 uses these counting and sizing methods. [Pg.403]

Sizing methods for pilot-operated pressure relief valves are in accordance with the accepted formulas described above, utilizing the appropriate discharge coefficients and effective orifice areas as recommended by the valve manufacturer. The following points should be noted ... [Pg.194]

As seen in Chapter 7, the operation of bateh erystallizers is inherently unsteady-state. Transient values oeeur of the major operating variables sueh as slurry density, supersaturation, temperature and mean partiele size. Methods of operational eontrol sueh as by use of seeding and temperature programming were also eonsidered in detail. [Pg.288]

Comparison of Results From Four Particle Size Methods. [Pg.8]

This account of the kinetics of reactions between (inorganic) solids commences with a consideration of the reactant mixture (Sect. 1), since composition, particle sizes, method of mixing and other pretreatments exert important influences on rate characteristics. Some comments on experimental methods are included here. Section 2 is concerned with reaction mechanisms formulated to account for observed behaviour, including references to rate processes which involve diffusion across a barrier layer. This section also includes a consideration of the application of mechanistic criteria to the classification of the kinetic characteristics of solid-solid reactions. Section 3 surveys rate processes identified as the decomposition of a solid catalyzed by a solid. Section 4 reviews other types of solid + solid reactions, which may be conveniently subdivided further into the classes... [Pg.248]

TTiere are several particle sizing methods, all based upon sedimentation and Stokes Law. If a particle is suspended in a fluid (which may be gas, or any liquid), the force of resistance to movement by the particle will be proportional to the particle s velocity, v, and its radius, r, vis-... [Pg.237]

Many solid-liquid reactions are likely to benefit from the careful selection of the reactant (particle size, method of manufacture, etc.). Many reaction-crystallization systems may benefit from the use of seed crystals (see Section 5.4). [Pg.180]

Dow Chemical Co. (1973) The Dow Safety Guide, a reprint from Chemical Engineering Progress (AIChE). Duxbury, H. A. (1976) Loss Prevention No. 10 (AIChE) 147. Gas vent sizing methods. [Pg.396]

DL Black, MQ McQuay, MP Bonin. Laser-based techniques for particle-size measurement a review of sizing methods and their industrial applications. Prog Energy Combustion Sci 22(3) 267-306, 1996. [Pg.288]

A number of alternative sizing methods are available, and these are described in Table 8. The American Association of Pharmaceutical Scientists, Inhalation Focus Group conducted a comprehensive review of available methods, which was published in a series of articles identified in the last column of the table. All of the methods described either have been or are currently employed in the development of aerosol products. However, at this time only the inertial samplers, cascade impactors and impingers appear in compendial standards and in regulatory guidelines [44-46], Other methods such as thermal imaging are also under development and may give complementary size information to the current methods. [Pg.497]

In this chapter we introduce relief fundamentals and the steps in the relief design procedure. Relief sizing methods are covered in chapter 9. [Pg.354]

Both vent sizing methods for gases and dusts require values for the deflagration indexes, KG or KSt. We discussed the experimental procedure to determine these values and also provided tables of typical values for gases and dusts in chapter 6. [Pg.411]

A sizing method similar to the one recommended above is proposed by Schmidt and Giesbrecht (2001), based on experimental work done at BASF in Germany. [Pg.89]

It is recommended to choose the automatic step-size method AUTO and to set a small value of l)Tmm and a large value for l)Tm/ If the results are good, try to improve the speed by increasing both parameters. Sometimes the resulting curves are not smooth if l>imj is too high. In most cases, good results are obtained with AUTO and l>imm set to about 1/1000 of the smallest time constant. [Pg.600]


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Adaptive step size methods and error control

Aggregate Size Analysis by Wet Sieving Method

Alternate Potential Mass Spectrometric Methods for Sizing and Chemical Composition

Alternative methods to reduce the relief system size

Alternative relief system sizing methods for tempered hybrid systems

Analytical method sample size

Atomic size finite-element method

Automatic Sizing Methods

Boyle sizing method

CCSD approximation size-consistent methods

Cell-size test methods

Classifying particle size methods

Cluster expansion methods size-extensive theory

Cluster expansion methods size-extensivity

Colloids particle size measurement, method

Conservatism of sizing methods

Determination of average nanoparticle size by line width method

Development of a Sizing Method for Real Gas Applications

Direct methods fixed step size

Dispersion size methods

Electron correlation methods size consistency

Electron correlation methods size extensivity

Environment-Friendly Methods for Converting Biodegradable Polyesters into Nano-Sized Materials

Fractionation methods for particle size measurement

Fundamental Limitation on Size of MTS Methods

HPLC methods particle size distribution

High particle-sizing methods

High sizing method, development

Line Start Methods of Sedimentation Fineparticle Size Characterization

Many-body perturbation theory size-consistent methods

Measurement methods particle size

Mechanism for Size Control Using Colloidal Synthesis Methods

Methods Based on Spot Size

Methods for Size Analysis

Methods of Particle Size Measurement

Micelles core size, possible method

Multiple aperture method for powders having a wide size range

New Techniques in Sub-micron Particle Size Analysis The Controlled Reference Method

Optical methods of determining molecular sizes and shapes

Other Methods of Measuring Particle Size

Particle Size and Sizing Methods

Particle size analysis instrumental method

Particle size analysis, methods

Particle size determination sedimentation methods

Particle size distribution emulsification method

Particle size distribution separation methods

Particle size distribution visual methods

Particle size distribution — sieving method

Particle size measurement field scanning methods

Particle size measurement light scattering methods

Particle size measurement microscope methods

Particle size measurement sieving methods

Particle size reduction methods

Particle size reduction precipitation method

Particle size reduction solution method

Particle size reduction solvent deposition method

Particle sizing methods for

Particle-sizing methods

Permeametry methods particle sizes used

Phase inversion temperature method droplet size

Pore size diameter method

Pore size distribution methods

Pore size distributions Horvath-Kawazoe method

Powders, test methods particle size characteristics

Pressure agglomeration (compaction) methods for size enlargement of solid fertilizers

Purification methods size-exclusion chromatography

Radiation inactivation method target size

Reflux drums Watkins method for sizing

Relief sizing using Leungs method

Results From Four Particle Size Methods

Reverse phase method development pore size

Schrodinger equation size-consistent methods

Sedimentation particle size analysis, methods

Selection of size enlargement methods

Separation methods size exclusion chromatography

Shortcut methods for determining optimum line sizing in SI units

Simplex method step size

Size Control Using Electrochemical Methods

Size consistency of the CC method

Size enlargement, methods and application

Size exclusion chromatography methods

Size fractionation experimental method

Size methods Smoluchowski

Size methods Smoluchowski theory

Size methods centrifuge

Size methods electron microscope

Size methods elutriation

Size methods impingers

Size methods light scattering

Size methods microscope

Size methods neutron scattering

Size methods permeability

Size methods sedimentation

Size methods sieves

Size methods skimming

Size methods slip casting

Size methods slurry quality

Size methods soaps

Size methods soil colloids

Size methods soil remediation

Size methods soil science

Size methods soils

Size methods solid-particle films

Size methods solubilization

Size methods solvation forces

Size methods solvent

Size methods sparging

Size methods spherical agglomeration

Size methods spinning

Size methods spinning solution additive

Size methods spray cleaning

Size methods spray droplets

Size methods spray drying

Size methods spray-dried emulsions

Size methods spraying

Size methods spreading coefficient

Size methods turbidimetry

Size methods ultracentrifuge

Size methods ultramicroscope

Size-consistent methods

Size-extensivity limited CISD methods

Sizing Methods

Sizing gravity settling method

Sizing method for top venting of gassy systems

Sizing method, heat exchangers

Sizing methods for bottom relief (dumping) of gassy reactions

Sizing sleeve method

Sizing-plate method

Spectroscopic Methods Applicable to Different Sample Sizes

Support Vector Machine Data Processing Method for Problems of Small Sample Size

Testing methods particle size analysis

The diffusion battery method for aerosol particle size determination

Total size by Soxhlet method

Variable-size simplex optimization method

Vent sizing Fauske method

Vent sizing Leung method

Vent sizing methods

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