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We also provide the amount of required feedback information to create more than one beam for a given number of users, subchannels and transmit antennas.
This index allows one to estimate the amount of control energy by the piezoelectric actuators to the beam for a given control input.
Due to the geometrical nonlinearity, several static equilibrium shapes can exist for large deflections of a cantilever beam for a given load.
The results of the sIngle-iteration aparticularon are quitheclargest the iterative modeflectionin approach, which indicathe that this approximate solution is an excellent tool for the analysis of the moving mass probeam.
To account for the polarization of the primary beam, for a given reflection, we consider the angle ϕ between the sample reflection plane formed by the h vector and the - z-axis, and the laboratory horizontal.
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Without any index matching, there is a limit on the range of both beam position and angle for which the light beam of a given diameter and shape can be coupled in and out of the anterior chamber of the eye.
We consider minimum weight optimization of sandwich beams for a given stiffness.
Numerical results show the existence of the isospectral non-uniform beams for a given uniform beam, which occur as local minima.
The analytical formulae are employed to determine optimal geometries of the sandwich beams that maximise the shock resistance of the beams for a given mass.
Using the analytical formulae, optimal design charts are constructed to minimize the mass of multilayer sandwich beams for a given low-velocity impact resistance.
A method of extremum weight design of thin-walled I beams for a given natural frequency of torsional vibrations is presented.
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