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In parallel

Multiple reactions in parallel producing byproducts. Rather than a single reaction, a system may involve secondary reactions producing (additional) byproducts in parallel with the primary reaction. Multiple reactions in parallel are of the tj ie... [Pg.19]

Multiple reactions in parallel producing byproducts. Consider again the system of parallel reactions from Eqs. (2.16) and (2.17). A batch or plug-flow reactor maintains higher average concentrations of feed (Cfeed) than a continuous well-mixed reactor, in which the incoming feed is instantly diluted by the PRODUCT and... [Pg.29]

Figure 2.2 summarizes these arguments to choose a reactor for systems of multiple reactions in parallel. [Pg.31]

Multiple reactions in parallel producing byproducts. Once the reactor type is chosen to maximize selectivity, we are in a position to alter selectivity further in parallel reaction systems. Consider the parallel reaction system from Eq. (2.20). To maximize selectivity for this system, we minimize the ratio given by Eq. (2.21) ... [Pg.37]

Multiple reactions. For multiple reactions in which the byproduct is formed in parallel, the selectivity may increase or decrease as conversion increases. If the byproduct reaction is a higher order than the primary reaction, selectivity increases for increasing reactor conversion. In this case, the same initial setting as single reactions should be used. If the byproduct reaction of the parallel system is a... [Pg.63]

Figure 8.8 Time-event chart for Example 4.4 with two reactors in parallel. Figure 8.8 Time-event chart for Example 4.4 with two reactors in parallel.
Up-to-day reliability requirements as applied to NPP strength maintenance govern development of new generation of computerized systems for in-service inspection. These systems in parallel with capabilities of ordinary ultrasonic techniques allow to reconstruct high resolution image of inner flaw and increase available amount of information. [Pg.194]

In parallel, the ad hoc group has organized a seminar open to all the disciplinary working groups of CEN/TC138. This meeting, held in September 1996 in Paris, had several aims ... [Pg.923]

Each/-bond is replaced by any -bond and the sum of one or more Coulomb bonds in parallel with or without any -bond in parallel. The virial coefficients then have the following graphical representation ... [Pg.490]

Processes of tliis type have been analysed [84, 851 by adding an irreversible step, eitlier in parallel ... [Pg.2830]

If the contributions from the different CS are additive and relax in parallel. [Pg.2831]

A term that is nearly synonymous with complex numbers or functions is their phase. The rising preoccupation with the wave function phase in the last few decades is beyond doubt, to the extent that the importance of phases has of late become comparable to that of the moduli. (We use Dirac s terminology [7], which writes a wave function by a set of coefficients, the amplitudes, each expressible in terms of its absolute value, its modulus, and its phase. ) There is a related growth of literatm e on interference effects, associated with Aharonov-Bohm and Berry phases [8-14], In parallel, one has witnessed in recent years a trend to construct selectively and to manipulate wave functions. The necessary techifiques to achieve these are also anchored in the phases of the wave function components. This bend is manifest in such diverse areas as coherent or squeezed states [15,16], elecbon bansport in mesoscopic systems [17], sculpting of Rydberg-atom wavepackets [18,19], repeated and nondemolition quantum measurements [20], wavepacket collapse [21], and quantum computations [22,23], Experimentally, the determination of phases frequently utilizes measurement of Ramsey fringes [24] or similar" methods [25]. [Pg.96]

Notes and Comments. Further improvements in efficiency were achieved by implementing the method on computers with highly parallel architecture. SISM performs in parallel as LFV which means the speed up Is gained due to longer time stop wliidi cun be u.sed by SISM [20]. [Pg.345]

We happily acknowledge Dr. Tom Darden from the National Institute for Environmental Health Sciences for access to and help in parallelizing PME. [Pg.469]

NAMD [7] was born of frustration with the maintainability of previous locally developed parallel molecular dynamics codes. The primary goal of being able to hand the program down to the next generation of developers is reflected in the acronym NAMD Not (just) Another Molecular Dynamics code. Specific design requirements for NAMD were to run in parallel on the group s then recently purchased workstation cluster [8] and to use the fast multipole algorithm [9] for efficient full electrostatics evaluation as implemented in DPMTA [10]. [Pg.473]

The nervous systems and especially the brains of animals and humans work very fast, efficiently, and highly in parallel. They consist of networked neurons which work together and interchange signals with one another. This section describes the functionality of a biological neuron and explains the model of an artificial neuron. [Pg.452]

Virtual screening allows the scope of screening to be extended to external databases. When this is done, increasingly diverse hits can be identified. The application of virtual. screening techniques before or in parallel with HTS hclp.s to reduce the assay-to-lcad attrition rate observed from HTS. In addition, virtual screening is faster and less expensive than experimental synthesis and biological testing. [Pg.604]


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See also in sourсe #XX -- [ Pg.100 , Pg.174 ]




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B Flow Distribution in Parallel Demisting Cyclones

CSTRs in Parallel

Capacitance in parallel

Capacitor and resistor in parallel

Case C. Parallel Reaction in a Semi-Continuous Reactor with Large Temperature Changes

Companies Providing In-House Designed, Parallel Synthesised Libraries

Components in parallel

Cyclones in parallel

Desired products in parallel reactions

Disguised Chemical Selectivity in Competitive Parallel Reactions

Domino Cydoadditions in Parallel Fashion

Domino cycloadditions, in parallel

Domino cycloadditions, in parallel fashion

EO Flow in Parallel Plate Channel

Explosive Boiling of Water in Parallel Micro-Channels

Flow Patterns in Parallel Channels

Flow in Parallel Straight Channels

Hybrid excitons in parallel organic and inorganic semiconductor quantum wires

Impact of Many Capacity Units Operating in Parallel

Loading in parallel to the fibres

Multiple Coils Connected in Parallel

Multiple Processes in Parallel

Onset of Nucleate Boiling in Parallel Micro-Channels

PFRs in Parallel

Parallel Computing in Quantum Chemistry

Parallel Configuration in the Sense of Reliability

Parallel Reaction in a Doubly Distributed Continuum

Parallel developments in crop-protecting agents agrochemicals

Parallel in silico

Parallel reaction in a semi-continuous

Parallel reaction in a semi-continuous reactor

Parallel reactions in a PFR

Parallelism in series

Plug flow reactor in parallel

Polymer-Supported Reagents Preparation and Use in Parallel Organic Synthesis

Potential distribution in a parallel-plate

Pumps in parallel

Reactions in parallel

Reactions in parallel—two reactants

Reactor in parallel

Reactors in series and parallel

Regions in parallel

Resistance and capacitance in parallel

Resistances in Series and Parallel

Resistances in parallel

Resistor in parallel

Resonators in series and parallel

SEMIPAR - Parallel Reactions in a Semi-Continuous Reactor

SEMISEQ - Sequential-Parallel Reactions in a Semi-Continuous Reactor

Spring and dashpot in parallel

Springs connected in parallel

Stacking in Parallel

Thermomechanical coupling in a Couette flow between parallel plates

Trace detection of elements in parallel by emission spectrography survey analysis (see also Chapter

Tubes in Parallel

Two electrode reactions in parallel

Use in parallel with

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