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Structural times

Coherent lattice motions can create periodic modulation of the electronic band structure. Time-resolved photo-emission (TRPE) studies [20-22] demonstrated the capability to detect coherent phonons as an oscillatory shift of... [Pg.52]

Phospholipid fatty acid (PLFA) Methanol-KOH extraction Indicates bacterial population structure time-consuming determined in nonstandard laboratory with specialized equipment expensive equipment Dick et al. (1996)... [Pg.284]

DNA Extraction and quantification Indicates total biological structure time-consuming expensive equipment determined in nonstandard laboratory with specialized equipment difficult for complete extraction Arbeli and Fuentes (2007)... [Pg.284]

Investigations of the conformational properties of the flavan-3-ols and oligomeric proanthocyanidins have hitherto involved a variety of molecular mechanics and molecular orbital computations in combination with crystal structures, time-resolved fluorescence, as well as and NMR methods. Representative references to all these techniques may be found in the papers listed in Refs. 241-247, 250. These NMR papers incidentally also represent the major contributions regarding the conformation of proanthocyanidins, and may be summarized in a conformational context by reference to the significant contributions of Hatano and Hemingway. [Pg.604]

In the plane-wave approximation, all electromagnetic effects are derived from the structured time-like potential difference... [Pg.176]

The fluctuating forces that a medium exerts on a solute molecule produces fluctuations in the molecular structure, time-dependent vibrational eigenstates, and, thus, time-dependent vibrational energy eigenvalues. Time evolution of the vibrational energy eigenvalues produces fluctuations in the... [Pg.241]

In order to better understand the magnetic properties of BrjCrNbOj , and to determine the effect of the oxygen deficiency on the structure, time-of-flight (TOF)... [Pg.16]

From the generated MD trajectory one can obtain average motions of atoms over time, average interaction energy values for the bound structure, time correlations for atomic positions and velocities, and RMS geometric fluctuations to be compared with any available experimental data. A particular intermolecular distance, or the interaction energy between two functional groups... [Pg.554]

Taking depression as an example, an extensive evidence base exists for the efficacy of several forms of psychotherapy. These include cognitive therapy (in which individuals identify faulty views and negative automatic thoughts and attempt to replace them with ways of thinking less likely to lead to depression), interpersonal therapy (which focuses on relationships, roles and losses), brief dynamic psychotherapy (a time-limited version of traditional psychoanalysis) and cognitive analytical therapy (another well structured time-limited therapy which combines the best points of cognihve therapy and traditional analysis). [Pg.368]

Balaz, S., Wiese, M., Chi, H.-L. and Seydel, J.K. (1990). Subcellular Pharmacokinetics and Quantitative Structure/Time/Activity Relationships. Anal.Chim.Acta, 235,195-207. [Pg.533]

AC Hahn. Forecasting, Structural Time Series Models and the Kalman Filter. Cambridge University Press, New York, NY, 1989. [Pg.284]

Planning Orientation of task based on the potential of the performing laboratory with respect to instrumentation, staff, staff expertise, organizational structure, time schedule... [Pg.1527]

Zeolite structure time-of-flight Zeolite structure Zeolite structure Zeolite structure ... [Pg.209]

An analysis of the lag structures (time lag between change in concentration of PM and death) used in the studies found that the greatest effects were observed at lag 1 or lag 0-1 day, and the use of a distributed lag model resulted in slightly larger (by 30%) risk estimates compared to single-day lags (Zeka et al. 2005). [Pg.534]

Figure 19.2 Definition of the depth of concrete removal for structures subjected to chloride-induced corrosion as a function of the present condition of the structure (time t ) and the estimated evolution of the chloride penetration damage at the time if when use of the structure is expected to finish (or new repair is planned). Figure 19.2 Definition of the depth of concrete removal for structures subjected to chloride-induced corrosion as a function of the present condition of the structure (time t ) and the estimated evolution of the chloride penetration damage at the time if when use of the structure is expected to finish (or new repair is planned).
Dealy, J. M., and Tsang, W., Structural time dependency in the rheological behavior of molten polymers, / Appl. Polym. ScL, 26, 1149-1158 (1981). [Pg.697]

NON-LINEAR STEADY STATES - DISSIPATIVE STRUCTURE (TIME ORDER AND SPACE ORDER)... [Pg.99]

For CCTL we use interval structures. Time progresses in the states of the structure. The transitions are labeled with intervals. [Pg.149]


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See also in sourсe #XX -- [ Pg.6 , Pg.172 ]




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Applications of Structured Catalysts in Short Contact Time Processes

Creep compliance structural-relaxation times

Dispersion mechanisms structural relaxation time

Dynamic structure factor long-time

Effect of Time Delay and Age Structure

Entropy theory structural relaxation times

Equal-time structure factor

Example Optimal Reactor Structure for Minimum Residence Time

Fast-Time Structure

Femtosecond time scale structural determinations

Glassy system dynamics structural relaxation times

Initiation Time for Marine Structures

Insertion devices time structure

Nonequilibrium structures in time and space

Particle current, time structure

Pump pulse femtosecond time scale, structural

Relaxation time structural

Relaxation times dendrimer structures

Residence time and structure of alloys

Residence time distribution transport structures

Retention times and structures

Space-time structure

Structural failure time

Structural properties femtosecond time scale

Structural relaxation time aging phenomena

Structural relaxation time basic principles

Structural relaxation time basic properties

Structural relaxation time correspondence

Structural relaxation time coupling model

Structural relaxation time dispersion correlation with

Structural relaxation time glass transition temperature

Structural relaxation time many-molecule dynamics

Structural relaxation time molecular glass-forming liquids, temperature

Structural relaxation time molecular mobility dependences

Structural relaxation time pressure combinations

Structural relaxation time pressure dependence

Structural relaxation times, polymer glass

Structural techniques, time scales

Structural techniques, time scales Structure

Structural techniques, time scales layered

Structural techniques, time scales pairs

Structural time series models

Structural-relaxation time definition

Structural-relaxation time universal dependence

Structure analysis methods molecular correlation time

Structure analysis methods relaxation time

Synchrotron radiation properties time structure

Synchrotron radiation time structure

Temperature structural relaxation time

Tg Defined by the Structural Relaxation Time ts 1,000 sec

Time Dependent Structure of Profile Data

Time average structure

Time scales for structural techniques

Time series modeling model structures

Time structure

Time structure

Time structure analysis

Time structure, synchrotron

Time-Reversal Symmetry and Matrix Block Structure

Time-averaged structure

Time-dependent structural changes

Viscoelastic spectrum structural-relaxation times

Water short-time structures

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