Journal
HEAT AND MASS TRANSFER
Volume 41, Issue 1, Pages 1-4Publisher
SPRINGER
DOI: 10.1007/s00231-004-0520-x
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Similarity solution of the laminar boundary layer equations corresponding to an unsteady stretching surface have been studied. The governing time-dependent boundary layer are transformed to ordinary differential equations containg Prandtl number and unsteadiness parameter. The effect of various govern-ing parameters such as Prandtl number and unsteadiness param-eter which determine the velocity and temperature profiles and heat transfer coefficient are studied.
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