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Current state

It is remarkable that tire roots of the SFA go back to the early 1960s [1], Tabor and Winterton [2] and Israelachvili and Tabor [3] developed it to the current state of the art some 15 years before the invention of the more widely used atomic force microscope (AFM) (see chapter B1.19). [Pg.1731]

SR = 20 is not stiff, SR = 10 is stiff, and SR = 10 is veiy stiff. If the problem is nonhuear, then the solution is expanded about the current state. [Pg.474]

Sequence logic is often, but not necessarily, coupled with the concept of a process state. Basically, the sequence logic determines when the process should proceed from the current state to the next, and sometimes what the next state should be. [Pg.755]

Analysts The above is a formidable barrier. Analysts must use limited and uncertain measurements to operate and control the plant and understand the internal process. Multiple interpretations can result from analyzing hmited, sparse, suboptimal data. Both intuitive and complex algorithmic analysis methods add bias. Expert and artificial iutefligence systems may ultimately be developed to recognize and handle all of these hmitations during the model development. However, the current state-of-the-art requires the intervention of skilled analysts to draw accurate conclusions about plant operation. [Pg.2550]

Taken together, this set of articles provides a wide-ranging and authoritative review of the current state of knowledge in the field and a depth of treatment of many of the most important issues relating to chemistry in the marine environment. The volume will be of interest equally to environmental scientists. [Pg.103]

We have seen that physical chemistry evolved from a deep dissatisfaction in the minds of a few pioneers with the current state of chemistry as a whole one could say that its emergence was research-driven and spread across the world by hordes of new Ph.Ds. Chemical engineering was driven by industrial needs and the corresponding changes that were required in undergraduate education. Polymer science started from a wish to understand certain natural products and moved by... [Pg.50]

An even more up-to-date account of the current state of nanotube research from physicists perspective is in an excellent group of articles published in June 2000... [Pg.442]

As discussed earlier, the successful diagnosis of faults in automated control systems is highly dependent on the mental model the worker has built up of the current state of the plant processes. Such a model takes time to construct. An individual who has to act quickly may not be able to make the necessary diagnoses without time to build up and consult his or her mental model. Even in a highly automated plant, provision needs to be made to display major process deviations quickly. [Pg.63]

In addition to these assessments of the causes and consequences of errors, the baseline assessment should also include an evaluation of the systems that are currently in place to control errors. This will include an evaluation of the current state of a representative set of the PIFs discussed in Chapter 3. Typical factors would include... [Pg.361]

This review outlines developments in zinc-mediated cyclopropanation from the initial reports in the 1950s through to the current state of the art methods. The presentation will rely heavily on how the evolution of mechanistic understanding aided in the rationalization and optimization of each new advance in the asymmetric process. [Pg.86]

Knowledge of material-handling techniques is vital to the layout planner, and detailed consideration will need to be given to the various techniques and equipment, which are available. References 2, 8 and 9 contain valuable information and trade journals report the current state of the market. [Pg.79]

Discrete dynamics at each discrete unit time, each cell updates its current state according to a transition rule taking into account the states of cells in its neighborhood. [Pg.5]

State transitions are therefore local in both space and time individual cells evolve iteratively according to a fixed, and usually deterministic, function of the current state of that cell and its neighboring cells. One iteration step of the dynamical evolution is achieved after the simultaneous application of the rule (p to each cell in the lattice C. [Pg.41]

This section reports on the current state of knowledge on nonaqueous electrolytes for lithium batteries and lithium-ion batteries. The term electrolyte in the current text refers to an ion-conducting solution which consists of a solvent S and a salt, here generally a lithium salt. Often 1 1-salts of the LiX type are preferred for reasons given below only a few l 2-salts Li2X have attained some importance for batteries, and 1 3-salts Li3X are not in use. [Pg.457]


See other pages where Current state is mentioned: [Pg.753]    [Pg.497]    [Pg.11]    [Pg.319]    [Pg.552]    [Pg.568]    [Pg.162]    [Pg.199]    [Pg.205]    [Pg.29]    [Pg.475]    [Pg.422]    [Pg.726]    [Pg.2378]    [Pg.23]    [Pg.232]    [Pg.361]    [Pg.7]    [Pg.237]    [Pg.237]    [Pg.573]    [Pg.364]    [Pg.944]    [Pg.179]    [Pg.240]    [Pg.105]    [Pg.771]    [Pg.95]    [Pg.95]    [Pg.245]    [Pg.544]    [Pg.273]    [Pg.583]    [Pg.596]    [Pg.531]    [Pg.106]    [Pg.399]   
See also in sourсe #XX -- [ Pg.54 , Pg.148 ]




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Analyzing current state

Application current state

Conductivity measurements steady-state electronic current

Current State Map

Current State of DIVI Biomarkers

Current State of Process Raman Spectroscopy

Current State on (B,C,N) Compounds of Calcium and Lanthanum

Current at steady state

Current density steady-state

Current diffusion-limited steady-state

Current implementation institutional responsibilities (national and state)

Current state analysis

Current state of progress

Current state of the model

Current steady-state

Current transition state hypothesis

Current-potential curves, steady state

Current-potential curves, steady state hydrogen oxidation

Current-potential curves, steady state oxygen reduction

Current-potential relationship for steady-state electron transfer

Dependence of steady-state current

Diffusion nonsteady-state current

Exchange current density steady state

Knowledge current state

Limiting-current measurement unsteady-state effects

Microelectrodes steady state current

Molecular graphics current state

Normalized steady-state tip current

Oxidation, steady-state current-potential

Passive state current density, decreased

Process evolution current state

Raman techniques current state

Space charge limited currents localized states

State short-circuit current density

Steady state limiting current

Steady-State Effect of Current

Steady-State Limiting Current at a Microdisc

Steady-state Current Overpotential Behaviour

Steady-state analysis charging current

Steady-state background current

Steady-state current hemisphere

Steady-state current measurements

Steady-state current microdisc

Steady-state current sphere

Steady-state process current densities

Step 3 Perform a current state analysis

Temperature Effects on Steady-State Currents

The Current State

The Transition Current Between Two States

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