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Eps 15

CN(I) Vector (length 20) of intermediate (unconverged) values of the vapor or liquid phase mole fractions (I = 1, N). EPS Convergence tolerance. [Pg.331]

Solution Decisions can be made based on the economic potential of the process (see App. A). At this stage, the best we can do is to define the economic potential (EP) as... [Pg.17]

Considering raw materials costs only, the economic potential (EP) of the process is defined as... [Pg.105]

Optimization of the system can be carried out by minimizing a cost function or maximizing economic potential EP defined by (see App. A)... [Pg.241]

EP = value of products - raw materials costs - annualized capital cost - energy cost... [Pg.241]

Also an atom, molecule, or ion that is electron deficient and which can form a co-ordinate link with an electron donor. Thus in the complex ion [Co(NH3)eP the cobalt(Ill) ion is an acceptor and the ammonia the electron donor. t-acceptors are molecules or atoms which accept electrons into n, p or d orbitals. [Pg.10]

Each point corresponding to the ordinate axis is the value of the cumulative property of the cut. The Cg-EP properties of gasoline cuts or IP-EP properties of residue cuts are obtained directly from the curves, while properties of other cuts are calculated either directly for the properties that are additive by volume, weight or moles, or by using blending indices. [Pg.335]

Fig. VIII-5. Schematic potential energy diagram for electrons in a metal with and without an applied field , work function Ep, depth of the Fermi level. (From Ref. 62.)... Fig. VIII-5. Schematic potential energy diagram for electrons in a metal with and without an applied field , work function Ep, depth of the Fermi level. (From Ref. 62.)...
With energy conservation, E. = Ej.+ (Sj.- e )=E + ethe cross section for superelastic collisions E > Ep... [Pg.2016]


See other pages where Eps 15 is mentioned: [Pg.304]    [Pg.321]    [Pg.322]    [Pg.323]    [Pg.323]    [Pg.327]    [Pg.328]    [Pg.331]    [Pg.332]    [Pg.348]    [Pg.17]    [Pg.17]    [Pg.17]    [Pg.17]    [Pg.17]    [Pg.18]    [Pg.105]    [Pg.407]    [Pg.68]    [Pg.19]    [Pg.190]    [Pg.224]    [Pg.234]    [Pg.342]    [Pg.374]    [Pg.383]    [Pg.396]    [Pg.403]    [Pg.281]    [Pg.507]    [Pg.306]    [Pg.910]    [Pg.2394]    [Pg.2752]    [Pg.2753]    [Pg.391]   
See also in sourсe #XX -- [ Pg.168 ]

See also in sourсe #XX -- [ Pg.73 , Pg.101 ]

See also in sourсe #XX -- [ Pg.205 , Pg.320 ]




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Alkaline hydrolysis of bisphosphonium salts with fragmentation Ep mechanism

As EP additive

Bacterial EPS

Corrections of Order (Za)Ep

Corrections of Order a(Za)Ep

DDM:EPS

EP Terpolymer

EP [Epoxy resin

EP additive

EP blends

EP device

EP elevation

EP oil

EP reagent

EP rubber

EP systems

EP toxicity

EP-MRs

EP-guided therapy

EPS Based on Extrusion Process

EPS Production

EPS Properties and Structure-Function Relationships Microbial Producers. Biofilms

EPS format

Earnings per Share (EPS)

Electrochemical-Potential Spectroscopy (EPS)

Emergency preparedness (incl. physical protection) (EP)

Emission and consumption data per tonne of product from EPS plants

Emission data from EP-cleaned HPDC off-gas

Epping disease

Expandable Polystyrene (EPS) for Molded Foam

Expandable polystyrene (EPS

Expandable polystyrene (EPS) process

External Potential (EP) Theory Saddle Point Integration in

Flow diagram showing the EPS process

Important Properties and Industrial Applications of Market-Valued EPS

Maleated EP Rubbers

Particle Foam Based on Expandable Polystyrene (EPS)

Production of EPS Raw Material

R05 Epoxy resin EP

Radiative Corrections of Order a(Za) Ep

Steam Expansion of EPS Loose-fill Resin Theory and Practice

Summary of the EPS process

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