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pro vyhledávání: '"Leonard Eyges"'
Autor:
Leonard Eyges
The Classical Electromagnetic Field emphasizes physics first, then mathematics. This and the fact that lucid exposition of theory receives priority over subsequent manipulation marks the book unusual, not to say unique, among field physics texts for
Autor:
Leonard Eyges
Publikováno v:
Journal of Navigation. 40:274-277
Autor:
Leonard Eyges
Publikováno v:
Annals of Physics. 90:266-282
An integral equation is derived for the electrostatic potential ψ that arises when a uniform dielectric body of arbitrary shape is placed in an applied electrostatic field. By expansion of ψ in a certain basic set, the integral equation becomes a s
Autor:
Leonard Eyges, Arthur R. Nelson
Publikováno v:
Annals of Physics. 100:37-61
A perturbation solution is derived for the following problem: A time harmonic wave of amplitude ψ, propagating in a medium with wave number k, is incident on an irregular volume V, inside of which the propagation constant k′(r) can be an arbitrary
Autor:
Leonard Eyges
Publikováno v:
Journal of Mathematical Physics. 21:571-581
If a dielectric ellipsoid or elliptical cylinder is placed in a uniform applied field it is well known that the field inside remains uniform, and is changed only by a depolarization factor that multiplies each applied field component. This paper gene
Autor:
Leonard Eyges
Publikováno v:
Journal of Mathematical Physics. 10:644-654
We extend to the N‐body case previous techniques for solving three‐body problems with repulsive interparticle potentials and periodic boundary conditions on each particle. For clarity, we begin with one‐dimensional problems, although the techni
Autor:
Leonard Eyges
Publikováno v:
American Journal of Physics. 33:790-802
This paper considers from a simple physical point of view the Mossbauer effect, i.e., the “recoilless emission” of gamma rays from a nucleus bound in a crystal lattice. It begins with a discussion of the kinematics of gamma-ray emission from such
Autor:
Leonard Eyges
Publikováno v:
Physical Review. 123:1673-1684
A new method for solving the problem of one electron in a periodic potential is presented; it is discussed in this paper mainly for k = 0, although it can be generalized to other k. The periodic potential is considered to be generated by spherically
Autor:
Leonard Eyges
Publikováno v:
Physical Review. 126:93-102
Autor:
Leonard Eyges
Publikováno v:
Physical Review. 115:1643-1655