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Growing

This termination step stops the subsequent growth of the polymer chain. The period during which the chain length grows, i.e., before termination, is known as the active life of the polymer. Other termination steps are possible. [Pg.22]

Here the polymer grows by successive esterification with elimination of water and no termination step. [Pg.22]

In attached growth film) methods, as with aerobic digestion, the microorganisms can be encouraged to grow attached to a support medium such as plastic packing or sand. In anaerobic digestion, the bed is usually fluidized rather than a fixed-bed... [Pg.316]

Ci-,H2,N04. Colourless prisms, m.p. 98°C. Obtained from coca, either by direct purification, or by acid hydrolysis of the mixed alkaloids to ecgonine, which is then methylated and benzoylated. Coca consists of the dried leaves of Eryihroxyluni coca and Erythroxylum iruxillense, shrubs growing in Bolivia and Peru. [Pg.105]

The first penicillin was benzylpenicillin (penicillin G, R = C6H5 CH2 C0 NH-), which is made by growing suitable strains of Penicillium chrysogenum on a carbohydrate medium. [Pg.298]

Feiste, K.L. Stegemann, D. Reimehe, W. Three dimensional analysis of growing casting defects. International Symposium on Computerized Tomography for Industrial Applieatlons, 8.10. Junl 1994, Berlin... [Pg.17]

Beside this pre-warning feature AE can be used parallel as a NDT technique to detect, locate and roughly grade any active (growing) discontinuity in the structure under test. [Pg.32]

Figure 2. Standard types of testing loads and their spectrums a - small cyclic pulse loads b - step loads c - growing pulse loads. Figure 2. Standard types of testing loads and their spectrums a - small cyclic pulse loads b - step loads c - growing pulse loads.
Morse, PM, Feshbach, H 1953 Methods of Theoretical Physics, (Me. Grow- HillBook Comp., New York). [Pg.380]

These advantages makes infrared thermography the fasted growing NDT method in now a days industry. [Pg.399]

Many applications of infrared thermograph are still unknown and the potential of this method is still growing. [Pg.399]

The main disadvantage of Feldkamp s approaeh is the fact, that it is mathematically correct only in tire midplane of the beam. With larger Cone-Beam angles the error grows and over 30 degrees severe artefacts can be observed In the reconstruction. [Pg.494]

But for some liquids exists the third stage of liquid s penetration inside conical capillary, which was established in [5]. During this stage a channel is filling both from its entrance and from its closed top. Two liquid columns arise and are growing towards each other till the complete channel s filling (fig. 2). The most intriguing pattern can be observed when we exclude direct liquid s access to channel s entrance. It corresponds to the cases... [Pg.615]

In wide sectors of industry there is a growing need of inspection methods which go without liquid coupling media. The excitation of bulk and surface waves by means of air-coupled ultrasonic probes is therefore an attractive tool for NDE. This is tme e.g. for the rapid scanning of large composite structures in the aerospace industry [1]. In other cases, the use of liquid couplants is prohibitive like the thickness measurement of powder layers. [Pg.840]

With the growing performance of PC s and software, the inspection has been reengineered with R/D Tech s TC6700 and PC based Multiview. [Pg.1007]

Here, r is positive and there is thus an increased vapor pressure. In the case of water, P/ is about 1.001 if r is 10" cm, 1.011 if r is 10" cm, and 1.114 if r is 10 cm or 100 A. The effect has been verified experimentally for several liquids [20], down to radii of the order of 0.1 m, and indirect measurements have verified the Kelvin equation for R values down to about 30 A [19]. The phenomenon provides a ready explanation for the ability of vapors to supersaturate. The formation of a new liquid phase begins with small clusters that may grow or aggregate into droplets. In the absence of dust or other foreign surfaces, there will be an activation energy for the formation of these small clusters corresponding to the increased free energy due to the curvature of the surface (see Section IX-2). [Pg.54]

In principle, compressing a monolayer should produce more domains of radius J eq. however McConnell shows that in practice, domains grow to exceed this radius. Once a domain grows to A = it becomes unstable toward... [Pg.139]

As circular domains grow in size or number, the dipolar interactions between them increase until they form a hexagonal array of spacing... [Pg.139]

The dynamic picture of a vapor at a pressure near is then somewhat as follows. If P is less than P , then AG for a cluster increases steadily with size, and although in principle all sizes would exist, all but the smallest would be very rare, and their numbers would be subject to random fluctuations. Similarly, there will be fluctuations in the number of embryonic nuclei of size less than rc, in the case of P greater than P . Once a nucleus reaches the critical dimension, however, a favorable fluctuation will cause it to grow indefinitely. The experimental maximum supersaturation pressure is such that a large traffic of nuclei moving past the critical size develops with the result that a fog of liquid droplets is produced. [Pg.330]


See other pages where Growing is mentioned: [Pg.34]    [Pg.34]    [Pg.314]    [Pg.316]    [Pg.105]    [Pg.408]    [Pg.10]    [Pg.12]    [Pg.45]    [Pg.49]    [Pg.67]    [Pg.189]    [Pg.193]    [Pg.217]    [Pg.288]    [Pg.288]    [Pg.305]    [Pg.527]    [Pg.528]    [Pg.528]    [Pg.531]    [Pg.547]    [Pg.552]    [Pg.604]    [Pg.729]    [Pg.922]    [Pg.1039]    [Pg.1062]    [Pg.17]    [Pg.27]    [Pg.328]   
See also in sourсe #XX -- [ Pg.46 ]

See also in sourсe #XX -- [ Pg.3 , Pg.25 , Pg.69 ]

See also in sourсe #XX -- [ Pg.4 , Pg.13 , Pg.96 , Pg.210 , Pg.390 , Pg.424 , Pg.429 ]




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A Brief History of Growing Ceramic Single Crystals

A Tree Grows in Brussels

Adsorbates incorporated into growing deposit

Advantages of the Growing Cell Structure

Anchor and grow algorithm

Anions incorporation into growing alumina

Back-skip mechanism, growing chains

Bacteria growing

Biotransformation with Growing Cells

Bubble growing

Cartilage, growing, damage

Chain-grow mechanism

Chains growing time

Chemical Structure of the Growing Species

Chemical structure determination growing species

Clusters growing

Coffee growing areas

Combinatorial chemistry growing accessibility

Contamination of the growing film

Crystal grow

Crystal nucleus growing model

Crystal-growing processes

Crystallization of the Growing Polyoxymethylenes

Deposit, growing

DuPont Growing Sustainably

Effects of Growing Conditions

Effects of Growing Temperature and Kernel Maturity on Starch Structures

Elder growing

Empire Cotton Growing Corp

Empire Cotton Growing Review

Environmental risks, growing

Evidence growing

FALLING DOWN IS PART OF GROWING UP

Faces, growing

Fast-growing energy crops

Fast-growing organisms

Foliar fertilizers in organic fruit growing

For growing plants

Fragment Growing Kinase Targets

Fragment growing

Fresh produce growing crops

Fully Open Cracks that are Stationary or Growing

GROWING PARAMETERS FOR VARIOUS MUSHROOM SPECIES

Geometry growing cell structure

Goals to Grow By

Grow from Supersaturated Solutions

Grow oxides

Grow sticks

Grow, James

Grow-out of mussel seed in land- and sea-based facilities

Grow-through

Growing Buckybowl Chemistry

Growing Cracks under a General Loading History

Growing Energy Consumption

Growing Films

Growing Grown

Growing Growth

Growing Hair

Growing Hamiltonian

Growing Laser Crystals

Growing Single Crystals

Growing Spheres

Growing Uniform Colloidal Particles

Growing a Single Crystal

Growing and maintaining micro-organisms

Growing and maintenance of trial site crops

Growing animals

Growing carbocation

Growing cell structure

Growing cells

Growing centers

Growing chain

Growing chain chiral orientation

Growing chains and monomer

Growing chains and monomer molecules

Growing chains, number

Growing crops on subsoils and mine spoils

Growing crystal

Growing crystals Basic procedure

Growing crystals from solution some practical advice

Growing cultures

Growing degree days

Growing deposit, adsorbates

Growing derivative crystals

Growing drop

Growing drop experiment

Growing drop instrument

Growing drop methods

Growing electrochemically active biofilms

Growing enclosures

Growing location

Growing market

Growing needle

Growing neural network

Growing of Alum Crystals

Growing oiganisms

Growing pains

Growing particle size

Growing particles

Growing people

Growing plant cell wall, working model

Growing polymer chain, 238 hypothesis

Growing problems

Growing protein crystals

Growing radicals

Growing stress

Growing systems

Growing the Network

Growing up in Hungary and Turning to Chemistry

Growing your business

Hardwood fast-growing

Hormone growing

How Does Your Garden Grow

Human and Organisational Factors (HOFs) Significantly Growing Challenges

Hydration of Growing and Aging Anodic Aluminum Oxides

Index growing trees

Influenza virus growing

Isothiocyanates dependent adherence by growing

Jinan Ever Growing Rubber Additive

Lamellae radially growing

Learning growing cell structure

Length of Growing Season

Lifetime of the Growing Polymeric Chains

Lifetimes of growing chains

MEASURING PARTICLE SIZE AND GROWING SINGLE CRYSTALS

Methods for Growing Single Crystals of Ceramics

Micro growing zeolites

Molecular Genetics Grows Up

Monod kinetics grow rate

Monomer molecules, growing chains

Nature of the growing species

Network growing

Nitrogen loss from growing plants

Nucleation crystal-growing techniques

Numbers series growing rates

Obtaining the best results in growing sunflower plants

Optical micrographs growing

Organic fruit growing

Orientation Growing from the Isotropic State

Pathogens internalization, growing plants

Polymer growing ends, model

Polymer radicals growing

Polymer, growing

Polymerization growing chain

Polymers difunctional growing ends

Potatoes countries growing

Potatoes growing season

Protein sequence-structure growing database

Raspberries growing

Region growing

Ring-growing reactions

Ring-growing reactions 3,2-rearrangement

Rising Costs, Growing Markets

Rubber Tree Growing

Ruminants growing diet

Scale-growing mechanisms

Science growing points

Season growing

Semi-Synthetic Penicillins and the Growing Problem of Resistance

Separation processes, growing

Separation processes, growing importance

Site growing selectively

Smallpox growing virus

Solar energy materials, growing interest

Some Growing Techniques

Spherulite grow rate

Stage growing

Step growing, living polymerization

Subculture of cells growing in suspension

Subculture of cells growing on microcarriers

Sweet potato growing season

THE MUSHROOM GROWING ROOM

The Amount of Land Needed to Grow Feedstock for Bio-Based Plastics

Thinning in organic fruit growing

Tocopherols in Growing Plants

Toward Growing Device Structures

Tree short-rotation growing

Trees association between growing

Vegetable growing

Viruses growing

We Grow Fibers in a Calciner

Wine growing

Yield growing conditions

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