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Inverter 56

Subroutine SYMINV. This subroutine inverts a symmetric matrix. [Pg.218]

These expressions define Pn-2n for number of 1-2 shells in series in terms of R and Xp in each shell. The expressions can be used to define the number of 1-2 shells in series required to satisfy a specified value of Xp in each shell for a given R and Pjv 2n- Hence the relationship can be inverted to find the value of N which satisfies Xp exactly in each 1-2 shell in the series ... [Pg.434]

In practice the logging tools are often used to measure the resistivity of the formation rather than the conductivity and therefore the equation above is more commonly inverted and expressed as ... [Pg.148]

If A is invertible for all m and oj then the complete Radon transform of the tensor field is easily obtained from the inner product measurements using... [Pg.133]

Eddy-current non-destructive evaluation is widely used in the aerospace and nuclear power industries for the detection and characterisation of defects in metal components. The ability to predict the probe response to various types of defect is highly valuable since it enables the influence of particular parameters to be studied without recourse to costly and time consuming experiments. The solution of forward problems is also essential in the process of inverting experimental data. [Pg.140]

Forward modelling is the first step for inverting data for the reconstruction of the defect. For this purpose, the specialised code is better adapted because it is faster than the general code. [Pg.147]

The polymer concentration profile has been measured by small-angle neutron scattering from polymers adsorbed onto colloidal particles [70,71] or porous media [72] and from flat surfaces with neutron reflectivity [73] and optical reflectometry [74]. The fraction of segments bound to the solid surface is nicely revealed in NMR studies [75], infrared spectroscopy [76], and electron spin resonance [77]. An example of the concentration profile obtained by inverting neutron scattering measurements appears in Fig. XI-7, showing a typical surface volume fraction of 0.25 and layer thickness of 10-15 nm. The profile decays rapidly and monotonically but does not exhibit power-law scaling [70]. [Pg.402]

The phase-inversion temperature (PIT) is defined as the temperature where, on heating, an oil—water—emulsifier mixture inverts from O/W to a W/O emulsion [23]. The PIT correlates very well with the HLB as illustrated in Fig. XIV-10 [72, 73]. The PIT can thus be used as a guide in emulsifier selection. [Pg.514]

One may choose 6(Q,P,T) such that the integral equation can be inverted to give f Q) from the observed isotherm. Hobson [150] chose a local isotherm function that was essentially a stylized van der Waals form with a linear low-pressure region followed by a vertical step tod = 1. Sips [151] showed that Eq. XVII-127 could be converted to a standard transform if the Langmuir adsorption model was used. One writes... [Pg.656]

Once the eigenvalue and pseudo-wavefiinction are known for the atom, the Kolm-Sham equation can be inverted to yield the ionic pseiidopotential ... [Pg.111]

Note that is the population difference between the upper and lower states having all the population in the lower state corresponds to = -1 while having a completely inverted population (i.e. no population in the lower state) corresponds to f3 = +1. [Pg.231]

Figure Al.6.4. FVH diagram, showing the eoneept of adiabatie following. The Bloeh veetor, f, preeesses m a narrow eone about the rotating frame torque veetor, i2. As the detuning. A, ehanges from negative to positive, the field veetor, J , beeomes inverted. If the ehange m j is adiabatie the Bloeh veetor follows the... Figure Al.6.4. FVH diagram, showing the eoneept of adiabatie following. The Bloeh veetor, f, preeesses m a narrow eone about the rotating frame torque veetor, i2. As the detuning. A, ehanges from negative to positive, the field veetor, J , beeomes inverted. If the ehange m j is adiabatie the Bloeh veetor follows the...
The first mfonnation on the HE vibrational distribution was obtained in two landmark studies by Pimentel [39] and Polanyi [24] in 1969 both studies showed extensive vibrational excitation of the HE product. Pimental found that tire F + H2 reaction could pump an infrared chemical laser, i.e. the vibrational distribution was inverted, with the HF(u = 2) population higher than that for the HF(u = 1) level. A more complete picture was obtained by Polanyi by measuring and spectrally analysing tlie spontaneous emission from vibrationally excited HE produced by the reaction. This infrared chemiluminescence experiment yielded relative populations of 0.29, 1 and 0.47 for the HF(u =1,2 and 3)... [Pg.876]

One way to solve this is to invert the operator on the left hand side, thereby converting this differential equation into an integral equation. The general result is... [Pg.965]

Substimting this into the integral in equation (A3.11.180) and inverting the order of integration, one obtains... [Pg.992]

The most significant symmetry property for the second-order nonlinear optics is inversion synnnetry. A material possessing inversion synnnetry (or centrosymmetry) is one that, for an appropriate origin, remains unchanged when all spatial coordinates are inverted via / —> - r. For such materials, the second-order nonlmear response vanishes. This fact is of sufficient importance that we shall explain its origm briefly. For a... [Pg.1273]

The phase of the transverse magnetization is inverted by tire 180° pulse and the magnetization after the second gradient pulse and therefore at the echo centre is ... [Pg.1536]


See other pages where Inverter 56 is mentioned: [Pg.248]    [Pg.248]    [Pg.218]    [Pg.376]    [Pg.217]    [Pg.326]    [Pg.513]    [Pg.48]    [Pg.49]    [Pg.141]    [Pg.200]    [Pg.202]    [Pg.394]    [Pg.696]    [Pg.721]    [Pg.876]    [Pg.965]    [Pg.982]    [Pg.1265]    [Pg.1456]    [Pg.1496]    [Pg.1506]    [Pg.1508]    [Pg.1512]    [Pg.1525]    [Pg.1526]    [Pg.1531]    [Pg.1578]    [Pg.1581]    [Pg.1613]    [Pg.1736]    [Pg.1986]    [Pg.2105]    [Pg.2108]   
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4-switch non-inverting Buck-Boost

Ac-dc inverter

Activation free energy inverted region

Ambipolar and Complementary Inverter

Amplifier inverting

Analog inverting active

Analysis of Inverters

Apparatus for inverted suction filtration

Arousal Inverted

Atom inverted

Atomic systems inverted transitions

Bifurcation inverted

Biphasic inverted

Bubbles inverted

Carbon atoms, inverted

Carbon bridgehead, inverted bond

Charge-affinity inverted reactions

Chemical force microscopy , inverted

Circumventing problems with inverted

Complementary inverter structure

Constitutive inverted

Control inverter units

Counterion condensation inverted forces

Current source inverters

DC to AC inverter

DNA containing inverted anomeric centers

DNA recombination invertible sequences

Density inverted form

Density response function, invertability

Dextrose invert sugar

Diavert inverted microscope

Direct current Inverter

Domain inverted

Double inverted region

Drilling fluids invert emulsion

ET Reactions at Electrodes and the Inverted Region

Electron transfer Marcus inverted region

Electron transfer in the inverted region

Electron transfer inverted limit

Electron transfer inverted region

Electron transfer processes inverted regime

Enzyme inverting

Evidence for the Inverted Region

FORTRAN inverter

Factors for the calculation of invert sugar

Filtration, inverted

Flow inverters

Flow time-inverted

Free inverted regimes

Frequency inverter drives

Fructose invert sugar

Gauss-Jordan matrix inverter

Geminate recombination inverted region

Glycosidase, inverting, mechanism

Glycosidases inverting

Goal Functions — Inverter Analysis

Half-bridge inverter

Hex inverter oscillator

Hexagonal inverted cylinder

High-end cars inverter

High-frequency inverter

INVERT computer program

INVERT gates

Imperfect inverting pulse

Inverse temperature transitions inverted phase transitional

Invert

Invert Sugar Assays

Invert Sugar Syrup

Invert chemical composition

Invert elevation

Invert emulsification

Invert emulsion

Invert emulsion fluids

Invert production

Invert relative sweetness

Invert soaps

Invert sugar cream

Invert sugar preparation

Invert sugar properties

Invert sugar, caramel color

Invert sugar, production

Invert sugar,—. Inversion,— -SACCHAROSES

Invert-oil mud

Inverted

Inverted

Inverted Auger Hole Method (Above Water Table)

Inverted Basic Model

Inverted Batch Distillation

Inverted Branches

Inverted Branches technique

Inverted DNA

Inverted Lamb dip

Inverted Position

Inverted Test Tube Method

Inverted U-shaped relationship

Inverted Volcano (Minimum) Type Reactions

Inverted annular region

Inverted backscattered electron

Inverted band

Inverted behaviour

Inverted bit map

Inverted bonds

Inverted bubble point

Inverted bucket steam traps

Inverted carbons

Inverted cells

Inverted configuration

Inverted configuration recombination layers

Inverted core-shell

Inverted core-shell morphology

Inverted core-shell particles

Inverted cubic structures

Inverted cup method

Inverted cylindrical micelle

Inverted direct response

Inverted direct response sequence

Inverted diverticulum

Inverted double dressing

Inverted drainage (

Inverted effect

Inverted emulsion

Inverted enantiopreference

Inverted factor

Inverted files

Inverted fine structure

Inverted flames

Inverted force-pull tensiometer

Inverted forces in counterion condensation theory

Inverted forms of the chemical names are used for most entries

Inverted free-energy region

Inverted gap

Inverted geometry

Inverted hexagonal

Inverted hexagonal phase

Inverted hexagonal phase phases

Inverted hexagonal, lipid structure

Inverted hyperfine structure

Inverted keys

Inverted levels

Inverted library search

Inverted lists

Inverted matrix

Inverted membrane

Inverted membrane vesicles

Inverted micelle methods

Inverted micelles

Inverted microcontact printing

Inverted microscope

Inverted microscopy

Inverted motif

Inverted multiplet

Inverted nipples

Inverted opal

Inverted parabolic function

Inverted peaks

Inverted pendula

Inverted pendulum

Inverted pendulum system

Inverted polymer solar cell

Inverted population

Inverted porphyrins

Inverted potential

Inverted potential difference

Inverted probe machine

Inverted regime

Inverted region

Inverted region in intramolecular electron

Inverted region reaction rates

Inverted region, Marcus theory prediction

Inverted relief

Inverted repeat sequence

Inverted repeats

Inverted siphon

Inverted slump cone test

Inverted solubility

Inverted solvatochromism

Inverted solvolysis products

Inverted state

Inverted structure

Inverted sugar

Inverted sugar syrup

Inverted systems

Inverted temperature gradients

Inverted terminal nucleotide sequence

Inverted terminal nucleotide sequence repetition

Inverted terminal repeat

Inverted terminal repeat sequences

Inverted terminal repetition

Inverted tetrahedra

Inverted tetrahedral geometry

Inverted transitions

Inverted unimolecular dendritic micelles

Inverted ‘unimolecular micelle’ type

Inverted ‘unimolecular micelle’ type dendrimer

Inverter Control Techniques

Inverter Single-phase

Inverter Three-phase

Inverter circuit

Inverter diode-load

Inverter motors

Inverter rise time

Inverter systems

Inverter units

Inverter units IGBTs

Inverter units motor control

Inverter units thyristors

Inverter waveform

Inverter, current feedback

Inverters 3-Phase

Inverters line-commutated

Inverters, electronic

Invertibility

Invertibility

Invertibility criteria

Invertible

Invertible

Invertible correspondence

Invertible map

Invertible matrix

Invertible module

Inverting

Inverting

Inverting Fock equations

Inverting O-glycosidases

Inverting filter centrifuge

Inverting glycosidase

Inverting glycosidases, enzyme

Inverting glycosidases, enzyme kinetics

Inverting glycosyl hydrolases, mechanism

Inverting input, operational amplifier

Inverting module

Inverting the Laplace Transform

Inverting transformer

Inverting tridiagonal matrices

Lamb inverted

Lamellar phases inverted hexagonal transitions

Lamellar-to-inverted hexagonal transitions

Library inverted lists

Logic circuits inverter

Logical inverter

Manometer inverted

Mapping invertible

Marcus inverted region

Marcus theory inverted region

Marcus theory predicted inverted region

Membrane-associated guanylate kinase inverted-2 (MAGI

Membranes inverted hexagonal phases

Mesophases inverted

Motor drive inverter

Motors inverter units

Multilevel inverter

Multiplets inverted

Non-inverted bubble point

Non-inverting amplifier

Non-inverting buck-boost

OFETs CMOS inverters

Organic semiconductor inverters

Parametric Sweep—Inverter Switching Speed

Performance Analysis—Inverter Rise Time

Performance Analysis—Inverter Switching Speed

Periodicity inverted

Phase inverted, thermoplastic modifier

Phase inverting reactions

Phase lamellar/inverted hexagonal

Phase-inverting reactions molecular model

Phospholipid inverted hexagonal phase

Polar solvents inverted regions

Polymer inverted device structures

Population differences inverting

Potentiostat inverting type

Screen Searching Inverted

Selectively inverting

Sewers invert

Shape inverted

Shockley-inverted gaps

SiC dc-ac inverter

Sirups, invert-sugar

Solubility curves, inverted

Some Inverting Glycosidase Families

Spin trapping inverted

Sucrose Invert Sugar Fructose

Sucrose invert

Sucrose invert sugar

Sucrose invert sugar relationship

Sugar, beet inverted

Sugars invert

Switched Three-Phase Power Inverter

The Complex Links Between Safety and Competencies An Inverted U Curve

The Inverted Region

Thyristor Inverters

Thyristor Rectifier-inverter

Total Solids Invert Sugar

Transitions inverted phase

Transposons inverted repeats

Upstream Inverter

Verification of the Marcus Inverted Region

Voltage inverter

Voltage source inverters

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