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Energy dissipation maximum, table

Fig. 2. Properties of model and biological particle systems Micro scale related particle diameter dp/riL versus maximum energy dissipation e , in stirred reactors explanations see Table 3 and Table 4... Fig. 2. Properties of model and biological particle systems Micro scale related particle diameter dp/riL versus maximum energy dissipation e , in stirred reactors explanations see Table 3 and Table 4...
Table 4.7 Hysteresis energy dissipation ( ih) data at 300% maximum strain tests conducted at variable strain rate for PUll (DBD1 BG PTHF)... Table 4.7 Hysteresis energy dissipation ( ih) data at 300% maximum strain tests conducted at variable strain rate for PUll (DBD1 BG PTHF)...
Table 13-3 Maximum Energy Dissipation in Various Geometries... Table 13-3 Maximum Energy Dissipation in Various Geometries...
The charge time is 0.6/300 kHz or 2jUS maximum on time. The parameter tables use a timing capacitor value of 100pF which is fairly small and will not dissipate much energy. I will use this value. The value of R8, therefore, is... [Pg.166]

By experiment results maximum force F,n, dissipated energy before the onset of fracture A, , total dissipated energy A,a as well as estimated stiffness dF/de in the elastic region are calculated and shown in Table 1. From these values and the diagrams in Fig.4, the results can be analyzed and discussed in the following. [Pg.360]

In the radiolysis by f3- or y-radiation with maximum energy of about 1 Mev. the most typical process (see Table II) is the electronic transitions of valence electrons of molecules. Other processes like direct vibrational excitations of the ground state or electron capture by molecules are characteristic only for the subexcitation electrons with kinetic energy below the threshold E0 of electronic excitations. By the interactions of subexcitation electrons a fraction of about 10 to 15% of the total absorbed energy is dissipated. This fraction may partially be utilized for chemical changes however, the corresponding yield should always be considered separately since the mechanisms are much more intricate here and depend strongly on the nature of the medium. [Pg.526]

The low temperature adhesive properties, as well as the impact properties at -320°F for molded PBI in TABLE IV are noteworthy. GiIlham s Torsional Braid Analysis observed a low temperature dampening maximum which indicates that relaxation mechanisms are available to dissipate energy [17]. [Pg.360]


See other pages where Energy dissipation maximum, table is mentioned: [Pg.115]    [Pg.258]    [Pg.294]    [Pg.780]    [Pg.150]    [Pg.146]    [Pg.199]    [Pg.2]    [Pg.76]    [Pg.449]    [Pg.214]    [Pg.300]    [Pg.311]   
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