Buoyancy-driven heat transfer during application of a thermal gradient for the study of vapor deposition at low pressure using an ideal gas

Title
  1. Buoyancy-driven heat transfer during application of a thermal gradient for the study of vapor deposition at low pressure using an ideal gas [microform] / D.O. Frazier ... [et al.].
Published by
  1. [Washington, D.C. : National Aeronautics and Space Administration, 1997]

Details

Additional authors
  1. Frazier, Donald O.
  2. United States. National Aeronautics and Space Administration.
Description
  1. p. 289-302 : ill.
Series statement
  1. [NASA contractor report] ; NASA-CR-204700
Uniform title
  1. Journal of Crystal Growth. 1997.
  2. NASA contractor report ; NASA CR-204700.
Alternative title
  1. Buoyancy driven heat transfer during application of a thermal gradient for the study of vapor deposition at low pressure using an ideal gas
Subject
  1. Vapor-plating
  2. Heat > Convection
  3. Thin films
  4. Optoelectronic devices
Call number
  1. GPO Microfiche NAS 1.26:204700
Note
  1. Reprinted from Journal of Crystal Growth, v. 171, 1997.
  2. Shipping list no.: 98-0356-M.
  3. Originally published: Amsterdam, The Netherlands : Elsevier Science B.V., 1997.
Bibliography (note)
  1. Includes bibliographical references (p. 301-302).
Reproduction (note)
  1. Microfiche.
Title
  1. Buoyancy-driven heat transfer during application of a thermal gradient for the study of vapor deposition at low pressure using an ideal gas [microform] / D.O. Frazier ... [et al.].
Imprint
  1. [Washington, D.C. : National Aeronautics and Space Administration, 1997]
Series
  1. [NASA contractor report] ; NASA-CR-204700
  2. NASA contractor report ; NASA CR-204700.
Bibliography
  1. Includes bibliographical references (p. 301-302).
Reproduction
  1. Microfiche. [Washington, D.C. : National Aeronautics and Space Administration, 1997] 1 microfiche : negative.
Added author
  1. Frazier, Donald O.
  2. United States. National Aeronautics and Space Administration.
Added title
  1. Journal of Crystal Growth. 1997.
Gpo item no.
  1. 0830-H-14 (MF)
Sudoc no.
  1. NAS 1.26:204700
Research call number
  1. GPO Microfiche NAS 1.26:204700
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