Tables Of Spherical Bessel Functions Of The First And Second Kinds For Complex Arguments


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Tables of Spherical Bessel Functions of the First and Second Kinds for Complex Arguments


Tables of Spherical Bessel Functions of the First and Second Kinds for Complex Arguments

Author:

language: en

Publisher:

Release Date: 1983


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Tables of values of the spherical Bessel functions of the first and second kinds of complex argument are provided. Although these tables are not extensive, they are useful for checking the validity of computer routines that calculate spherical Bessel functions. A description of the method of computation is provided and verification procedures used are presented.

Tables of Spherical Bessel Functions of the First and Second Kinds for Complex Arguments


Tables of Spherical Bessel Functions of the First and Second Kinds for Complex Arguments

Author: Jean C. Piquette

language: en

Publisher:

Release Date: 1983


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Tables of values of the spherical Bessel functions of the first and second kinds of complex argument are provided. Although these tables are not extensive, they are useful for checking the validity of computer routines that calculate spherical Bessel functions. A description of the method of computation is provided and verification procedures used are presented.

Field Theory Handbook


Field Theory Handbook

Author: Parry Moon

language: en

Publisher: Springer

Release Date: 2012-12-06


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Let us first state exactly what this book is and what it is not. It is a compendium of equations for the physicist and the engineer working with electrostatics, magne tostatics, electric currents, electromagnetic fields, heat flow, gravitation, diffusion, optics, or acoustics. It tabulates the properties of 40 coordinate systems, states the Laplace and Helmholtz equations in each coordinate system, and gives the separation equations and their solutions. But it is not a textbook and it does not cover relativistic and quantum phenomena. The history of classical physics may be regarded as an interplay between two ideas, the concept of action-at-a-distance and the concept of a field. Newton's equation of universal gravitation, for instance, implies action-at-a-distance. The same form of equation was employed by COULOMB to express the force between charged particles. AMPERE and GAUSS extended this idea to the phenomenological action between currents. In 1867, LUDVIG LORENZ formulated electrodynamics as retarded action-at-a-distance. At almost the same time, MAXWELL presented the alternative formulation in terms of fields. In most cases, the field approach has shown itself to be the more powerful.