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Concentrating system

Pneumatic systems use the wave motion to pressurize air in an oscillating water column (OWC). The pressurized air is then passed through an air turbine to generate electricity. In hydrauhc systems, wave motion is used to pressurize water or other fluids, which are subsequendy passed through a turbine or motor that drives a generator. Hydropower systems concentrate wave peaks and store the water dehvered in the waves in an elevated basin. The potential energy suppHed mns a low head hydro plant with seawater. [Pg.111]

Because of the nature of some applications in which chlorinated paraffins are used, skin contact is inevitable and therefore an important potential route into the body. Skin absorption studies (7) have shown that chlorinated paraffins are very poorly absorbed through the skin and should not cause significant systemic concentrations. [Pg.45]

A detailed discussion of the isolated phase bus system concentrating on types of isolated enclosures and their design aspects... [Pg.990]

For example, when the energy barrier is high compared to the thermal energy, we can assume that when a reactant state is prepared there will be many oscillations in the reactant well before the system concentrates enough energy in the reaction coordinate ... [Pg.199]

E = Cooling system evaporation rate, GPM CR = Cooling system concentration ratio Cr = Chloride concentration in the makeup or blowdown... [Pg.154]

The rate of reaction nearly always depends upon reactant concentrations and (for reversible reactions) product concentrations. The functional relationship between rate of reaction and system concentrations (usually at constant temperature, pressure, and other environmental conditions) is called the rate equation. [Pg.11]

Figure 4-1. Relationship of the reaction variable x to the system concentrations... Figure 4-1. Relationship of the reaction variable x to the system concentrations...
These generic muds were identified by reviewing the permit requests and selecting the minimum number of mud systems that would cover all those named by the prospective permittees. Eight different mud systems were identified that encompass virtually all water-based muds used on the OCS (Table 4-53) [32A]. Instead of naming a set concentration for each component in each mud system, concentration ranges were specified to allow the operators sufficient flexibility to drill safely. [Pg.685]

All equipment should comply with the relevant British and other Standards regarding dimensions, methods of determining ratings, compliance with safety regulations, robustness and general quality of manufacture [70]. BS.5750, Quality Systems, concentrates on the subject of product quality as it affects design, manufacture and installation. In addition to Standards, there are various Codes of Practice [71, 72]. [Pg.365]

Besides sodium channels, other ion channels such calcium- and potassium channels as well as certain ligand-gated channels are affected by local anaesthetics. However, this plays only a minor role for nerve block but may have more impact on adverse effects induced by systemical concentrations of these drags. [Pg.701]

Electrode Electrode reaction, electrolyte system ), concentration " ) T -Eshe Ref. [Pg.1]

The mucosa of the GIT represents an interface between the external and internal environments. The expansive surface area is necessary for the efficient hydrolysis of foodstuffs and the absorption of energy and nutrients. The mucosa also influences the systemic availability of non-nutrient compounds in the diet, both beneficial and detrimental. Digestion and absorption of glucosinolates are critical determinants of health benefits (see Chapter 4) Similarly, the bioavailability and health benefits of phytoestrogens, such as genistein (see Chapters 5 and 10) are at least partly dependent on the carrier-mediated processes of absorption associated with the GIT (Oitate et al, 2001). Moreover, the metabolic activities of the mucosa can influence the systemic concentrations and forms of dietary phytochemicals, as exemplified by research with soy isoflavones (Andlauer et al., 2000). [Pg.161]


See other pages where Concentrating system is mentioned: [Pg.604]    [Pg.176]    [Pg.471]    [Pg.219]    [Pg.701]    [Pg.2]    [Pg.7]    [Pg.14]    [Pg.420]    [Pg.423]    [Pg.129]   
See also in sourсe #XX -- [ Pg.33 ]

See also in sourсe #XX -- [ Pg.33 ]




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A closed-system 3-box model with concentrations as the variables

A non-linear biochemical reaction system with concentration fluctuations

Ambient particle-concentrating systems

Amorphous system freeze concentration

Automated evaporative concentration system

Batch cleaning systems operating concentration

Boiling water reactors systems concentrations

Carbonate Species Concentrations in Open and Closed Systems

Carbonate system species concentration calculation

Chemical equilibrium A dynamic reaction system in which the concentrations of all

Chemical equilibrium A dynamic reaction system in which the concentrations of all reactants and products remain constant

Cleaning systems operating concentration

Concentrate processing delivery systems

Concentrated Jahn-Teller Systems

Concentrated ambient particle system

Concentrated polymer systems

Concentrated solar power systems

Concentrated stable systems, rheology

Concentrates—Good Quality Concentrate for High Pressure Spray System

Concentrating systems, sulfur

Concentration Profiles in Ideally Labile Systems

Concentration Profiles in Systems of Limited Lability

Concentration changes upon closed-system crystallization

Concentration dependence model polymer system

Concentration efficiency systems

Concentration in model systems

Concentration single-file system

Concentrative central nervous system

Concentrative immune system cell

Critical micelle concentration dodecyl sulfate system

Critical micelle concentration surfactant-polymer systems

Critical micelle concentration systems

Dissolver systems, liquid color concentrate

Electron concentrated metallic systems

Electron transport system high-protein concentrations

Emulsifier concentrations, effect emulsion systems

Emulsions concentrated systems

Encapsulated concentrates processing systems

Equations for Concentrations in Flow Systems

First-order system concentration variables

Foam suppression systems concentrations

High-performance concentration system

High-performance concentration system water supplies

Ideally concentrated systems

Kinetic laws of open systems with constant concentrations

Labeling systems, color concentrates

Malvern (Insitec) Ensemble Particle Concentration Size (EPCS) Systems

Mass transfer concentrated systems

Materials handling systems, concentrate

Materials handling systems, concentrate controls

More Concentrated Systems

PPTA/sulfuric acid system concentration

Pressure filtration batch concentration system

Rheology concentrated ceramic systems

Rheology of Concentrated Ceramic Systems

Solute movement analysis concentrated systems

Spin-glass systems, concentrated

Stress systems concentration factors

Surfactant Aggregation at High Concentrations. Phase Diagrams of Two-Component Systems

Surfactant concentrations emulsion system

System development steps concentrations

System peaks high concentration

System with constant concentrations

Systemic circulation, drug concentration

Systemic circulation, drug concentration profiles

Systemic drug concentrations

Systems, concentrating solar

Ternary systems concentration dependence

The Concentration Sensitivity of a Chromatographic System

Transfer Principles Concentrated Systems

Two concentrate systems

Vertical concentric reactor system

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