## Nature of physical problem the program. For (T/Z 2) ~2 x 104Β°Kthe maximum Radiative recombinatlon coefficients are required error in a 1 will be 2.5% and the error a~for n > 1
A program to calculate radiative recombination coefficients of hydrogenic ions
β Scribed by D.R. Flower; M.J. Seaton
- Publisher
- Elsevier Science
- Year
- 1984
- Tongue
- English
- Weight
- 64 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0010-4655
No coin nor oath required. For personal study only.
β¦ Synopsis
Title of program (32 characters maximum): HYDROGENIC RECOMBINATION COEFFS Catalogue number: ACQD Computer for which the program is designed and others upon which it is operable Computer: IBM 360/65. Installation: University College London Operating system or monitor under which the program is executed: SYSTEM/360 -Programming languages used: FORTRAN IV High speed store required: 1851 words. No. of bits in a word: 32 Is the program overlaid? No No. of magnetic tapes required: None What other peripherals are used? Card Reader, Line Printer No. of cards in combined program and test deck: 306
π SIMILAR VOLUMES
of solution
Title of program (32 characters maximum): HYDROGENIC INTERACTION INTEGRAL Calalogue number: ABWA Computer for which the program is designed and others upon which il is operable Computer: CDC 6400. Installation: Smithsonian Astrophysical Observatory, Cambridge. Massachusetts Operating system or monit
The hyperspherical harmonics approach to the few-body problem has been discussed extensively. For solving three-body problems, the so-called Raynal-Revai coefficient (R-R) is a necessity. A program written in Fortran 77 for computing R-R in two or three dimensions is presented.