It is now well known that complete transfer of power can be effected from one to another of two waveguides provided there is distributed coupling between the waveguides and provided the phase veloc
Wave induced transport can produce diffusions both in coordinate space and in velocity space at a much closer rate than that in the case of a classic transort.
T h e theory of the helix traveling-wave has been treated in previous papers, 1 - 4 for eases in which the electrons move along straight lines parallel to the axis of the helix, as though immersed
It has been reported (Marzetta, T.L., Proc. 37th Annual Allerton Conf.
In this report, multiple-scale analysis is used to study linear wave propagation in a rapidly-spun fiber and its predictions are shown to be consistent with results obtained by other methods.
I ' I V HE problem of wave propagation along a transmission system A composed of an overhead wire parallel to the (plane) surface of the earth, in spite of its great technical importance, does not
HK purpose of this investigation is to define the character of wave transmission along a pair of wires each of which is loaded with a continuous sheath of magnetic material.
On t h e basis of Maxwell's laws a n d t h e conditions of cont i n u i t y of electric and magnetic forces at t h e surfaces of t h e conductor, t h e f u n d a m e n t a l equations are establish
AS pointed out in a number of recent papers,1,2 a mercury-arc rectifier draws a distorted current from the a-c supply system, even though power to the system is supplied by a sine-wave source.
Network design tools are routinely used to design optical networks that can carry a set of demands at the least cost.