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Tuning

Measurement by quasi - constant current (steady - state value of pulse current) providing a compete tuning out from the effect of not only electric but also magnetic material properties. [Pg.652]

For NDT of new construction this implies that, the more one knows about the material properties and operational conditions, the better the acceptance criteria for weld defects can be based on the required weld integrity and fine-tuned to a specific application. In pipeline industry, this is already going to happen. [Pg.951]

Later, US NDT TD set up the National Certification Committee of Ukraine on NDT, which had the aim of organising the personnel certification in keeping with EN 473, rendered assistance to State Standardisation Organisation of Ukraine in setting up the Technical Committee on Standardisation Technical Diagnostics and Non-Destructive Testing (TC-78), the aims of which are in tune with those of lSO/TC-135. [Pg.967]

Corresponding to any collection of n particles, there exists a tune-dependent function T (q ... [Pg.5]

When a molecule is isolated from external fields, the Hamiltonian contains only kinetic energy operators for all of the electrons and nuclei as well as temis that account for repulsion and attraction between all distinct pairs of like and unlike charges, respectively. In such a case, the Hamiltonian is constant in time. Wlien this condition is satisfied, the representation of the time-dependent wavefiinction as a superposition of Hamiltonian eigenfiinctions can be used to detemiine the time dependence of the expansion coefficients. If equation (Al.1.39) is substituted into the tune-dependent Sclirodinger equation... [Pg.13]

We will explore the effect of three parameters 2 -and < )> that is, the time delay between the pulses, the tuning or detuning of the carrier frequency from resonance with an excited-state vibrational transition and the relative phase of the two pulses. We follow closely the development of [22]. Using equation (Al.6.73). [Pg.238]

Typically, the ratio of this to the incident flux detennines the transition probability. This infonnation will be averaged over the energy range of the initial wavepacket, unless one wants to project out specific energies from the solution. This projection procedure is accomplished using the following expression for the energy resolved (tune-independent) wavefunction in tenns in tenns of its time-dependent counterpart ... [Pg.981]

IVR is present if I i]/(q,0 P > 0 is observed for t>to also for qeM, IVR may of course also occur during tlie excitation process, if its tune scale is comparable to that of the excitation. [Pg.1059]

In view of the foregoing discussion, one might ask what is a typical time evolution of the wave packet for the isolated molecule, what are typical tune scales and, if initial conditions are such that an entire energy shell participates, does the wave packet resulting from the coherent dynamics look like a microcanonical... [Pg.1071]

Plenary 10. Hiro-o Hamaguchi, e-mail address lilrama ,chem.s.u-tokvo.ac.ip (time and polarization resolved multiplex 2D-CARS). Two-dimensional (tune and frequency) CARS using broadband dye source and streak camera timing. Studies dynamic behaviour of excited (pumped) electronic states. Follows energy flow within excited molecules. Polarization control of phase of signal (NR background suppression). [Pg.1218]

Ainong the first TFIz mixers to be constructed were those based on room-temperature Schottky diodes [11]. Over the past decade, new mixers based on superconducting tunnel junctions have been developed that have effective noise levels only a few tunes the quantum limit of [12]. Flowever, certain conditions... [Pg.1239]

Bin M, Gaidis M C, Zmuidzinas J and Phillips T G 1997 Quasi-optioal SIS mixers with normal tuning struotures IEEE Trans. Appl. Supercond. 7 3584-8... [Pg.1259]

Mastuura S, Blake G A, Wyss R, Pearson J, Kadow C, Jackson A and Gossard A C 1999 A travelling-wave photomixer based on angle-tuned phase matching Appl. Rhys. Lett. 74 2872-4... [Pg.1261]


See other pages where Tuning is mentioned: [Pg.341]    [Pg.64]    [Pg.286]    [Pg.342]    [Pg.723]    [Pg.820]    [Pg.862]    [Pg.6]    [Pg.12]    [Pg.13]    [Pg.231]    [Pg.239]    [Pg.261]    [Pg.264]    [Pg.267]    [Pg.291]    [Pg.378]    [Pg.395]    [Pg.690]    [Pg.710]    [Pg.734]    [Pg.799]    [Pg.853]    [Pg.875]    [Pg.884]    [Pg.887]    [Pg.915]    [Pg.963]    [Pg.1056]    [Pg.1065]    [Pg.1124]    [Pg.1162]    [Pg.1170]    [Pg.1186]    [Pg.1197]    [Pg.1200]    [Pg.1246]    [Pg.1294]   
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Acidity tuning

Active tuned mass damper

Active-passive composite tuned mass

Active-passive composite tuned mass damper

Adaptive tuning

Adsorption-tuned copolymers

Aggregation tuning

Algorithm self-tuning

Amplifier tuned

Angle tuning

Auto tune

Auto-tuning

Automatic tuning

BLT tuning

Backbone tuning

Band tuning

Based Pi-Controller Tuning

Biochemistry fine-tuning

Biology fine-tuning

Broad tuning

CONTUN - Controller Tuning Problem

Cantilever tune

Chain helicity, tuning

Chemical tuning

Chiral tuning polymer properties with

Choice of Tuning Method

Chromatographic methods, fine-tuning

Closed-Loop Tuning of Controllers

Cohen-Coon Tuning Method

Cohen-Coon tuning

Color tuning

Color-tuning mechanism

Computer-controlled tuning

Conformational tuning

Constant cycling tuning methods

Continuous Tuning Techniques

Continuous tuning

Continuous wavelength tuning

Contrast fine tuning

Control tuning

Controlled Wavelength Tuning

Controlled Wavelength Tuning of Single-Mode Lasers

Controller Tuning Guidelines

Controller Tuning and Disturbances

Controller tuning

Controller tuning definitions

Controller tuning for capacity and dead time processes

Controller tuning problem

Controllers self-tuning

Cosmology fine-tuning

Cosolvent tuning

Defect chemistry, tuning

Dielectric tuning

Diffusion tune

Dipole resonance peak tuning

Directed Evolution - Enzyme Tuning Toward Higher Selectivity

Discontinuous tuning

Doppler tuning

Doppler tuning method

Drop sample tuning

Duplexer tuning

Dwell tune

Dynamic Field Tuning

EVALUATION OF THE NEW TUNING RULES SIMULATION RESULTS

Electrochemical Stark tuning

Electronic tuning

Emission Color Tuning in Polythiophenes

Emission color tuning

Emission color, fine-tuning

Empirical model tuning

Energy alignment, tuning

Enzymes tuning

Excited state tuning

Excited state tuning with pressure

Feedback controllers tuning

Field-tuning mechanism

Fine Tune work flow

Fine Tuning Existing Systems

Fine Tuning the Load Resistors at a Single Frequency

Fine tuning

Fine tuning liquid levels for the accumulator

Fine-Tuning Operator Training

Fine-tuning in biochemistry

Fixed amplitudes tuned orbitals (FATO) model

Flow control tuning

Flow controller tuning

Frequency Tuning

GC/MS tuning

General Approach to Tuning

Glycoside synthesis, tuning donor

Glycoside synthesis, tuning donor reactivity

Heat integration controller tuning

Heuristic fine-tuning process

Hints for tuning the filter parameters in multiscale filtering and compression

IMC Tuning Method

Increased Detector Sensitivity with TUNE Circuit

Injection molding fine tuning

Instrument probe tuning

Internal Model Control (IMC) Tuning Rules

Intonational Tune Prediction

Intonational tune

Ion Optics and Lenses Instrument Tuning

Lambda Tuning Method

Laser tuning

Level control tuning

Lewis acidity tuning

Ligand Fine Tuning

Ligand tuning

Light Modulation and Side Band Tuning

Looney Tunes

Loop Performance and Tuning Procedures

Macropore size, tuning

Mass analyzers instrument tuning

Mass spectrometer tuning

Mass spectrometer tuning, effect

Mass tuning

Mesoporous pore-tuned

Mesoporous silica, fine-tuning functionalization

Meta-tuning

Metal tuning

Metallic nanoparticles surface plasmon resonance tuning

Method Fine-Tuning

Microwave tuning

Mismatch tuning

Model predictive control tuning parameters

Modern Glycosidation Methods Tuning of Reactivity

Molecular Tuning for a High EL Durable OLED

Molecular signaling tuning

Molecular tuning

Momentum tuning

Multi-loop controller tuning

Multiple tuned mass dampers

Oligosaccharide syntheses reactivity tuning

Opportunities for Tuning Surface Reactivity

Optimal Design and Practical Considerations of Tuned Mass Dampers for Structural Control

Output power versus tuning curves

P. Sonnet, L. Stauffer and C. Minot FT modeling of Stark-tuning effect CO on polarized Pd

PID Controller Tuning

PID tuning

PID tuning rules

Parameter Identification Step 2 Stiffness and Fine-Tuning

Parameters Required for Tuning Calculations

Particle size control tuning

Phosphorescence color tuning

Polyfluorenes color tuning

Polymer tuning

Pre-Tuned Temperature Controllers

Pressure broadening tuning

Pressure tuning

Pressure tuning experiment

Pressure tuning of reverse micelles

Pressure-tuning photochemistry

Pressure-tuning spectroscopy

Probe tuning

Probe tuning curve

Probe, spectrometer tuning

Process control scheduling controller tuning

Processable polythiophenes, tuning

Pseudogap tuning

Pulse tuning cycle

Quarter Decay Ratio (QDR) Tuning Rules

Quarter Decay Ratio Tuning of Control Loops

Reactivity tuning

Reactivity-Based One-Pot Glycosylation Fine-Tuning of Anomeric Reactivities

Reading tuning

Receiver tuning

Resonance tuning

Resonance tuning system

Running the Simulation and Tuning Controllers

Sample, tuning

Selectivity enzyme tuning

Selectivity tuning

Selectivity-sensitivity tuning

Selenophenyl, reactivity tuning

Self tuning regulator

Self-tuning

Self-tuning control

Self-tuning temperature controllers

Semi-active tuned mass damper

Semiconductor laser temperature tuning

Semiconductor temperature tuning

Sensory tuning

Separation parameters, fine-tuning

Separation selectivity tuning

Side chain tuning

Silver electronically tuned

Solubility tuning

Solvent effect tuning reactivity

Space Tune

Spectral tuning

Spectrometer tuning

Stark tuning

Stark tuning experiments

Stark tuning rate

Stark-tuning effect

Stark-tuning effect Combined to Volumes 1 and

Substrate Tuning

Suggested Tuning Method for Integrating Processes

Sulfur residence tunes

Surface reactivity tuning

Teflon-Based Electret Layers for Threshold Voltage Tuning

Temperature tuning

The Ziegler-Nichols methods for tuning PID controllers

Thermodynamic Tuning of Single Phase Hydrides by Substitution on the Metal Site

Thioethyl, reactivity tuning

Trial-and-Error Tuning of Control Loops

Trial-and-error tuning

Tune interface

Tune solution

Tune-domain techniques

Tuned Filter

Tuned Mass Dampers

Tuned amplitudes approximation

Tuned conductive coatings

Tuned engine

Tuned laser

Tuned liquid column damper

Tuned liquid damper

Tuning Based on Penalty Functions

Tuning Binding Strength by Varying the Number of Interstrand H Bonds

Tuning Methods Based on Known Process Models

Tuning Methods When Process Model Is Unknown

Tuning Polymer Crystallization for Properties

Tuning Procedure When Process Model Is Known

Tuning Procedure When Process Model Is Unknown

Tuning Rules for PID Controllers

Tuning Your Reading

Tuning and Matching

Tuning and Matching the Probe

Tuning conjugation extent

Tuning criteria

Tuning curve

Tuning discrete time controllers

Tuning fork

Tuning knob

Tuning method

Tuning method known process models

Tuning mode

Tuning of PID Controllers

Tuning of lasers

Tuning of reactivity

Tuning of the Controller Parameters

Tuning of the excited state

Tuning of the instrument

Tuning pH Range of Oscillations

Tuning probehead

Tuning range

Tuning rates

Tuning reactors

Tuning rods

Tuning rules

Tuning separations

Tuning solvents

Tuning the Catalytic Activity of Surface Organometallic Species

Tuning the Contact Resistance

Tuning the Control Loop

Tuning the Mass Spectrometer

Tuning the controller

Tuning the controllers for multi-loop systems

Tuning the monochromator

Tuning the probe

Tuning the spectrometer

Tuning, of color

Tuning, staggered

Tyreus Tuning

Tyreus-Luyben tuning

Ultimate Gain Tuning of Control Loops

Ultimate controller tuning

Universe fine-tuning

Wavelength calibration tuning

Wavelength tuning

When to Tune the NMR Probe and Calibrate RF Pulses

Work needs, fine-tuning

Zeeman tuning

Ziegler controller tuning

Ziegler-Nichols (Z-N) Open-Loop Tuning Rules of Thumb

Ziegler-Nichols Tuning Method

Ziegler-Nichols closed-loop tuning method

Ziegler-Nichols controller tuning paramete

Ziegler-Nichols method controller tuning

Ziegler-Nichols tuning

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