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Shaping methods

A completely different approach, in particular for fast imimolecular processes, extracts state-resolved kinetic infomiation from molecular spectra without using any fomi of time-dependent observation. This includes conventional line-shape methods, as well as the quantum-dynamical analysis of rovibrational overtone spectra [18, 33, 34 and 35]. [Pg.2116]

Lifetimes of 1 ps translate into linewidths of about 5 cm Thus, Ime-shape methods are ideally suited to measure very fast decay processes, in particular predissociation of excited species. An example is the... [Pg.2140]

Shaping method Type of feed material Type of shape... [Pg.205]

Shaping method Molecular weight Wt% stearic acid ... [Pg.158]

In the present paper, interfacial tensions were measured for a number of heavy crude oils at temperatures up to 200°C using the spinning drop technique. However, reliable data cannot be obtained by this or any other drop shape method because of the small density difference between heavy crudes and water which, moreover, tends to decrease as the temperature increases. This problem was overcome by using aqueous D20 instead of H20 as has been previously described [5,8,211. The influence of surfactant type and concentration, mono- and divalent cation concentrations, and pH on the attainment of low interfacial tensions are reported and discussed. [Pg.330]

Our band shape methods have made use of the principal component method of factor analysis (Pancoska etal., 1979 Malinowski, 1991) to characterize the protein spectra in terms of a relatively small number of coefficients (loadings) (Pancoska et al., 1994 1995 Baumruk et al., 1996). This approach is similar, in its initial stages, to various methods (Selcon, Variselect, etc.) that have been used for determining protein secondary structure from ECD data (Hennessey and Johnson, 1981 Provencher and Glockner, 1981 Johnson, 1988 Pancoska and Keiderling, 1991 Sreerama and Woody, 1993, 1994 Venyaminov and Yang, 1996). At this point, one can say these traditional quantitative methods have had little impact upon structural studies of denatured proteins. [Pg.167]

LSD-25 (lysergic acid diethylamide), 2 93 L-shaped method, optimization via, 26 1028... [Pg.537]

Drop shape method (can also be used for high pressure and temperature)... [Pg.37]

In the validation study by Hawkins et al. (60), the shapematching method ROCS was compared to 7 well-known docking tools, in terms of their abilities to recover known ligands for 21 different protein targets. The comparative study showed that the 3D shape method (ROCS) performed at least the same as, and often better than, the docking tools studied. Their work indicated that shape-based virtual screening method could be both efficient (in terms of the computational speed) and effective (in terms of hit enrichment) in virtual screening projects. [Pg.125]

Ebalunode, J. O., Zheng, W. (2009) Unconventional 2D shape similarity method affords comparable enrichment as a 3D shape method in virtual screening experiments. J Chem Inf Model 49, 1313-1320. [Pg.133]

This unit will introduce two fundamental protocols—the Wilhelmy plate method (see Basic Protocol 1 and Alternate Protocol 1) and the du Noiiy ring method (see Alternate Protocol 2)—that can be used to determine static interfacial tension (Dukhin et al., 1995). Since the two methods use the same experimental setup, they will be discussed together. Two advanced protocols that have the capability to determine dynamic interfacial tension—the drop volume technique (see Basic Protocol 2) and the drop shape method (see Alternate Protocol 3)—will also be presented. The basic principles of each of these techniques will be briefly outlined in the Background Information. Critical Parameters as well as Time Considerations for the different tests will be discussed. References and Internet Resources are listed to provide a more in-depth understanding of each of these techniques and allow the reader to contact commercial vendors to obtain information about costs and availability of surface science instrumentation. [Pg.631]

All shaping methods (also called molding ) mentioned are well-known in the ceramic industry [244, 247], Selection criteria depend on economical and technical requirements. Simple shaped parts mainly produced by uniaxial pressing, cold isostatic pressing, casting and especially injection moulding are favoured for components with complex geometry [263]. [Pg.82]

Analysis of Polymer Processing in Terms of Elementary Steps and Shaping Methods, 14... [Pg.1]

ANALYSIS OF POLYMER PROCESSING IN TERMS OF ELEMENTARY STEPS AND SHAPING METHODS... [Pg.14]

The first shaping method is a steady continuous process. It is among the oldest methods, and is used extensively in the rubber and plastics industries. It includes the classic calendering, as well as various continuous coating operations, such as knife and roll coating. [Pg.15]


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See also in sourсe #XX -- [ Pg.15 , Pg.16 ]




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Alpha-shape method

Core-first method, star-shaped copolymers

Drop shape method

Drop shape method and video-image digitization techniques

Finite element method shape functions

Generalized-peak-shape method

Instrument line shape method

Interfacial angle method, shape analysis

Liquid Drop Weight and Shape Method

Molding Compounds and Shaping Methods

Molding methods complex shapes

Molecular shape analysis method

Molecular shape analysis method description

Molecular shape valence-bond method

Numerical Methods and Characterization of Wave Shape

Optical methods of determining molecular sizes and shapes

Other methods of shape analysis

Peak-shape method

Polarity Reversal Method for Shape Control

Scientific shape-based method

Shape comparisons using least-squares fitting method

Shape groups method

Shape methods

Shape similarity method

Shaping methods calendering

Shaping methods compression molding

Shaping methods definition

Shaping methods molding

Stitch shaped-and-cut method

Superposition-Free Shape Similarity Methods

Surface drop shape methods

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