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Hydrodynamic models of a cepheid atmosphereA method for including the solution of the transfer equation in a standard Henyey type hydrodynamic code was developed. This modified Henyey method was used in an implicit hydrodynamic code to compute deep envelope models of a classical Cepheid with a period of 12(d) including radiative transfer effects in the optically thin zones. It was found that the velocity gradients in the atmosphere are not responsible for the large microturbulent velocities observed in Cepheids but may be responsible for the occurrence of supersonic microturbulence. It was found that the splitting of the cores of the strong lines is due to shock induced temperature inversions in the line forming region. The adopted light, color, and velocity curves were used to study three methods frequently used to determine the mean radii of Cepheids. It is concluded that an accuracy of 10% is possible only if high quality observations are used.
Document ID
19750007448
Acquisition Source
Legacy CDMS
Document Type
Thesis/Dissertation
Authors
Karp, A. H.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
September 3, 2013
Publication Date
November 1, 1974
Subject Category
Astronomy
Report/Patent Number
X-671-74-336
NASA-TM-X-70803
Report Number: X-671-74-336
Report Number: NASA-TM-X-70803
Accession Number
75N15520
Funding Number(s)
CONTRACT_GRANT: NGL-21-002-033
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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