Radioactive wastes are packed in a long, thin-walledcylindrical container. The wastes generate thermal energynonuniformly according to the relation q ˙ = q ˙ 0 [ 1 − ( r / r 0 ) 2 ] , where q ˙ the local rate of energy generation perunit volume, q ˙ 0 is a constant, and r o is the radius of thecontainer. Steady—state conditions are maintained by submerging the container in a liquid that is at T ∞ and provides a uniform convection coefficient h . Obtain an expression for the total rate at which energyis generated in a unit length of the container. Use this result to obtain an expression the temperature T s of thecontainer wall.
Radioactive wastes are packed in a long, thin-walledcylindrical container. The wastes generate thermal energynonuniformly according to the relation q ˙ = q ˙ 0 [ 1 − ( r / r 0 ) 2 ] , where q ˙ the local rate of energy generation perunit volume, q ˙ 0 is a constant, and r o is the radius of thecontainer. Steady—state conditions are maintained by submerging the container in a liquid that is at T ∞ and provides a uniform convection coefficient h . Obtain an expression for the total rate at which energyis generated in a unit length of the container. Use this result to obtain an expression the temperature T s of thecontainer wall.
Solution Summary: The author describes the expression for total rate of energy generation in unit length of container and temperature of wall.
Radioactive wastes are packed in a long, thin-walledcylindrical container. The wastes generate thermal energynonuniformly according to the relation
q
˙
=
q
˙
0
[
1
−
(
r
/
r
0
)
2
]
, where
q
˙
the local rate of energy generation perunit volume,
q
˙
0
is a constant, and
r
o
is the radius of thecontainer. Steady—state conditions are maintained by submerging the container in a liquid that is at
T
∞
and provides a uniform convection coefficient h.
Obtain an expression for the total rate at which energyis generated in a unit length of the container. Use this result to obtain an expression the temperature
T
s
of thecontainer wall.
What is the weight of a 5-kg substance in N, kN, kg·m/s², kgf, Ibm-ft/s², and lbf?
The weight of a 5-kg substance in N is 49.05
N.
The weight of a 5-kg substance in kN is
KN.
The weight of a 5-kg substance in kg·m/s² is 49.05
kg-m/s².
The weight of a 5-kg substance in kgf is 5.0 kgf.
The weight of a 5-kg substance in Ibm-ft/s² is 11.02 lbm-ft/s².
The weight of a 5-kg substance in lbf is 11.023
lbf.
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