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Returnability

As the feed composition approaches a plait point, the rate of convergence of the calculation procedure is markedly reduced. Typically, 10 to 20 iterations are required, as shown in Cases 2 and 6 for ternary type-I systems. Very near a plait point, convergence can be extremely slow, requiring 50 iterations or more. ELIPS checks for these situations, terminates without a solution, and returns an error flag (ERR=7) to avoid unwarranted computational effort. This is not a significant disadvantage since liquid-liquid separations are not intentionally conducted near plait points. [Pg.127]

Subroutine EVAL. This subroutine calculates and returns... [Pg.218]

IRR - ERROR FLAG RETURNED FROM FVAL INDICATING FAILJRE OF PPQGPAM TO CALCULATE THE DESIRED PARAMETERS. [Pg.251]

ERROR FLAG RETURNED ROM EVAL INDICATING FAILURE PROGRAM TO CALCULATE THF DESIRED PARAMETERS. [Pg.252]

VALIK NORMALLY RETURNS ERR=0, BUT IF COMPONENT COMBINATIONS LACKING... [Pg.291]

GIVEN TEMPERATURE T K) AND ESTIMATES OF PHASE COMPOSITIONS XR AND XE (USED WITHOUT CORRECTION TO EVALUATE ACTIVITY COEFFICIENTS GAR AND GAE), LILIK NORMALLY RETURNS ERR=0, BUT IF COMPONENT COMBINATIONS LACKING DATA ARE INVOLVED IT RETURNS ERR=l, AND IF A K IS OUT OF RANGE THEN ERR=2 key SHOULD BE 1 ON INITIAL CALL FOR A SYSTEM, 2 (OR 6)... [Pg.294]

VAPOR COMPOSITIONS Z. ENTH RETURNS ERE=0 UNLESS BINARY DATA ARE... [Pg.296]


See other pages where Returnability is mentioned: [Pg.220]    [Pg.233]    [Pg.237]    [Pg.239]    [Pg.246]    [Pg.246]    [Pg.247]    [Pg.247]    [Pg.247]    [Pg.247]    [Pg.247]    [Pg.247]    [Pg.249]    [Pg.249]    [Pg.250]    [Pg.251]    [Pg.253]    [Pg.255]    [Pg.256]    [Pg.256]    [Pg.257]    [Pg.258]    [Pg.259]    [Pg.259]    [Pg.261]    [Pg.264]    [Pg.265]    [Pg.267]    [Pg.267]    [Pg.267]    [Pg.267]    [Pg.267]    [Pg.268]    [Pg.268]    [Pg.270]    [Pg.270]    [Pg.291]    [Pg.292]    [Pg.292]    [Pg.294]    [Pg.294]    [Pg.296]    [Pg.296]    [Pg.297]   
See also in sourсe #XX -- [ Pg.71 , Pg.78 , Pg.80 , Pg.88 ]




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A Return to Monodentate Ligands

After-tax rate of return

And internal return

Atomizers spill-return

Average rate of return

Bonds True Return

Bottles, returnable

Bottom Feed and Reboiler Return Inlets

Bottom Feed and Reboiler Return Spargers

Box Return Values

Cage return

Capacity returned - discharge rate curves

Capacity returned - temperature curves

Capacity returned - terminal voltage curves

Capital investment return

Carbanions internal return

Carson’s Earth-return impedance

Comet returned samples

Condensate return systems

Configuration of no return

Configurations with return at the origin definition of

Continuous returns, utilization

Cooling water return line

Cumulative return

Cyclicality cyclical returns

DCFROR return

Decision to return

Diminishing return

Diminishing returns situation

Discounted cash flow rate of return

Discounted cash flow rate of return (DCFRR

Discounted cash flow rate of return DCFROR)

Discounted cash flow return

Dry Compressing, Three-Stage Roots Vacuum Pump with Exhaust, Respectively Non-Return Valves between the Stages

Earth-Return Impedance

Earth-return admittance

Earth-return mode

Earth-return wave

Effective Return

Effects of employment services for return to work

Electron return

Employee Participation in Financial Returns

Energy Return on Investment

Entrepreneurial return

Equity expected return

Equity return

Estimated commercial return

Eternal return

Evidence for Ru Release and Return During Olefin Metathesis

Example 2-19 Sizing Steam Condensate Return Line

Excess returns

Exchange rates returns

Expected rate of return

External ion pair return

External return

FW Contamination from Returning Condensate

Factors returns

Fast return

First return map

Flux Return

Forcible return

Formulas That Return an Array Result

Froth-filled reboiler return line

Global returns

Gravity return reflux

Hidden return

Historical returns

Horizons, return

Increasing returns activity analysis

Increasing returns situation

Inlet reboiler return

Instrumented Flux Return

Interest rate of return

Intermediates internal return

Internal proton return

Internal rate of return

Internal return

Internal return rate

Internal return, solvolysis

Internal return, solvolysis tosylates

Investment, return

Investor’s rate of return

Ion pairs return from

Ion-pair return

Irrigation flow returns

Jump and Return

Jump-return

Lakes return current

Law of diminishing returns

Lightning return stroke

Luminescence radiative return

Manifolds return

Manufacturer returns

Marginal rate of return

Mars sample return

Minnesota, University return

More general return times

Next-return map

No-return current condition

Non-return valves

On the Return Time Viewpoint

Performance return cleaning

Pharmaceutical returns

Poincare return time

Potential return

Potential return measures, limitations

Principal return

Private expected returns

Private returns

Product returns

Protection negative return

Protection positive return

Pumparound return tray

Pumparounds return tray

Quality-related returns

Questionnaires return rates

Quick return mechanism

RETURN

RETURN

Radiative Return to the Ground State - Luminescence

Rate of Return (IRR or DCFRR)

Rate of Return-Another Good Profitability Measure

Rate of return calculations

Rate of return on investments

Rate of return regulation

Rate-of-return

Rates electron return

Rates return electron transfer

Reactor water cleanup (RWCU) return sparger

Real returns, volatility

Reduced venous return

Release-return metathesis, mechanism

Repatriation and return

Research ReTurn

Return Headers

Return Line Corrosion

Return Paths in the Ground Plane

Return Tube Header

Return activated sludge

Return air

Return beam vidicon

Return bends, heat exchanger

Return currents

Return faster

Return fraction

Return grill

Return increased

Return leg

Return line filtration

Return loss

Return map

Return of Empty Transport Equipment

Return of Materials Exposed to CWAs

Return of Proprietary Documents

Return of the Kalecki principle

Return of the old infectious diseases

Return on Equity Ratio

Return on Investment (ROI)

Return on assets

Return on capital

Return on capital employed

Return on equity

Return on invested capital

Return on investment

Return on net assets

Return on sales

Return on the investment

Return on total assets

Return period

Return pin

Return processes

Return rates

Return signal

Return tank

Return to Origin

Return to duty

Return to operational states

Return to shareholders

Return to work

Return value

Return yoke

Return, calculation

Return, nuclear reactor accident

Return-air system

Return-on-total assets ratio

Return-to-service flush

Return-to-work program

Return/profit

Returnable bottles, filling

Returnable containers

Returnable containers suppliers

Returned drug products

Returned eluate

Returned goods

Returned medicines

Returned products analysis

Returned tablet count

Returned-goods policies

Returners to work

Returning a McLeod Gauge to Atmospheric Conditions

Returning an Array of Unique Entries in a List

Returning an Array of Values as a Result

Returning array

Returning cores

Returning home

Returning to Shapes

Returning to the Molecular Versatility Exhibited by MYKO 63 and SOAz A Microcomputer-Assisted Conformational Analysis

Returns data

Returns factor model

Returns normal distribution

Returns of Clothing at a Catalog Retailer and Their Impact

Returns policies

Returns processing cost

Returns sales curve

Returns series

Returns sources

Returns study results

Returns vector

Returns volatility

Right to return

Risk/return diagram

Risk/return profiles

Risk/return relation

Sales return

Sample sizes and return rates

Saturn return

Self-returning walk atomic code

Shareholder returns

Shareholder returns shareholders

Sizing Condensate Return Lines

Solvent suppression jump-return

Specifying the Data Type Returned by a Function Procedure

Steam return-line corrosion

Stroma proton return

Supply chain processes returns management

Taxes returns for

Temperature of no return

The Determination of Internal Return

The Faster and Increased Return on Investment

The Internal Rate of Return

The Net Present Value and Rate of Return

The Point of No Return

Total Pharmaceutical Industry Returns

Total euro return

Total return

Total return swaps

Total return swaps pricing

Total returns to shareholders

True rate of return

Vapor return nozzle

Variable Vapour Return Line Pressures and Passing Atmospheric Weather Fronts

Venous return

Venous return increased filling

What Should Be Done if Cleaning Does Not Return Performance to Baseline

Why Returnable Containers

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