A fully three-dimensional solution of the magneto-convection equations -the nonlinearly coupled momentum, induction and temperature equations -is presented in spherical geometry. Two very different methods for solving the momentum equation are presented, corresponding to the limits of slow and rapid
Analytical solution in spherical geometry of the monoenergetic S2 and S4 differential equations, and of the Sn equations in vacuum
✍ Scribed by T Auerbach; W Hälg; J Mennig; H Beuchat
- Publisher
- Elsevier Science
- Year
- 1974
- Tongue
- English
- Weight
- 822 KB
- Volume
- 15
- Category
- Article
- ISSN
- 0021-9991
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📜 SIMILAR VOLUMES
are undefined at the poles. These facts prevent a straightforward implementation of finite-difference and spectral A new gridding technique for the solution of partial differential equations in spherical geometry is presented. The method is based methods previously developed in Cartesian coordinates
We preses the SI -1 So fluorescente spectrum, between 740 and 940 om, of azulene sohitions (íOm3 M ìn methanol) excited wïth a @svitched ruby laser. The nitrogerrlaser excïted Sz + SI fíuorescence spectrum, between 700 and 930 om, is also reporteb Tbe transient St + Sn s@etrmn between 500 and 6.50 r