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Static Behavior

Since neither the analytic approach nor the application of shell finite elements is able to handle the general problem of d3mamic actuation and response in the rotating environment, the developed beam finite elements need to be counter-checked by means of the individual solution components, see Section 9.2.3. [Pg.190]

the steady-state solution with the elongation of the blade resulting from the centrifugal forces will be examined. The formulation for the analytical approach is provided by Eq. (9.8). The required linear and constant portions of the line force n x) in the lengthwise direction depicting the centrifugal effects are [Pg.191]

The contained constant m represents mass per length of the beam. For the two different cross-sections under consideration, it takes the following form. [Pg.191]

Rectangular cross-section Convex cross-section  [Pg.191]


Although it has been generally demonstrated (15,77,86—89) that antistaticaHy treated fabrics exhibit increased surface conductivities, many examples have been found where static behavior is not always related to the conductivity of the fabric (90) or the material. One of the main reasons for this is the fact that static charges decay not only by conduction but also by radiation. [Pg.293]

In the narrower sense, dioxin term is assumed for 2,3,7,8-tetrachlordibenzo-p-dioxin (2,3,7,8-TCDD) only. 2,3,7,8-TCDD is odorless and colorless non-hygroscopic powder, featuring high adhesion ability and static behavior. [Pg.85]

Schmitz and Sorensen951 have prepared the primary cyclopropylmethyl cation 531 which shows static behavior. The nortricyclylmethyl cation 531 is regarded as a vinyl... [Pg.244]

The control loop affects both the static behavior and the dynamic behavior of the system. Our main objective is to stabilize the unstable saddle-type steady state of the system. In the SISO control law (7.72) we use the steady-state values Yfass = 0.872 and Yrdss = 1.5627 as was done in Figures 7.14(a) to (c). A new bifurcation diagram corresponding to this closed-loop case is constructed in Figure 7.20. [Pg.468]

In practical devices, just as in the case of the varistor, Nm is usually limited by the capacitance of the diode, rather than by its static behavior. An evaluation of the diode shows that its minimum size is set by lithography, rather than by current density considerations. A small (2 X 2-jim) back-to-back diode, fabricated in a 5000-A-thick amorphous Si film has a capacitance in the order of 10-3 pF. The impedance of this capacitance limits the maximum number of lines that can be addressed. It appears that large displays, several hundred lines, can be addressed since the typical capacitance of a 1 X 1-mm LCD cell is about 10 pF. [Pg.122]

In the last few years, several models have been developed which more or less allow the anomalies of the static behavior of liquid water to be explained qualitatively. These can be divided into the following groups ... [Pg.293]

From the above discussion, it would seem that the mean-field approach with the pair approximation provides a reasonably accurate description of the static behavior of the ZGB model and extensions thereof. For the dynamic behavior, though, one has to be careful. Especially for more... [Pg.763]

Part II Modeling the Dynamic and Static Behavior of Chem ical Processes 43... [Pg.3]

The state equations with the associated state variables constitute the mathematical model of a process, which yields the dynamic or static behavior of the process. The application of the conservation principle... [Pg.35]


See other pages where Static Behavior is mentioned: [Pg.248]    [Pg.293]    [Pg.985]    [Pg.248]    [Pg.9]    [Pg.218]    [Pg.148]    [Pg.592]    [Pg.667]    [Pg.9]    [Pg.39]    [Pg.218]    [Pg.106]    [Pg.293]   


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Combined Static and Dynamic Bifurcation Behavior of Industrial FCC Units

Electrical behavior in the quasi-static state

Mechanical behavior dynamic/static

Mechanical properties quasi-static behavior

Scattering behavior static structure

Simple Behavioral Aspects of Static and Kinetic Friction

Static Mechanical Behaviors

Static Tensile Behavior

Static and dynamic behavior

Static scattering behavior

Static scattering behavior polyelectrolytes

Static sensitization, effect behavior

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