A 3-m-internal-diameter spherical tank made of 1-cm-thick stainless steel is use to store iced water at 0 o C . The tank is located outdoors at 25 o C . Assuming the entire steel tank to be at 0 o C and thus the thermal resistance of the tank to be negligible, determine (a) the rate of heat transfer to the iced water in the tank and (b) the amount of ice at 0 o C that melts during a 24-h period. The heat of fusion of water at atmospheric pressure is h i f = 333.7 kJ/kg . and The emissivity of the outer surface of the tank is 0.75, and the convection heat transfer coefficient on the outer surface can be taken to be 30 W/m 2 . K . Assume the average surrounding surface temperature for radiation exchange to be 15 o C .
A 3-m-internal-diameter spherical tank made of 1-cm-thick stainless steel is use to store iced water at 0 o C . The tank is located outdoors at 25 o C . Assuming the entire steel tank to be at 0 o C and thus the thermal resistance of the tank to be negligible, determine (a) the rate of heat transfer to the iced water in the tank and (b) the amount of ice at 0 o C that melts during a 24-h period. The heat of fusion of water at atmospheric pressure is h i f = 333.7 kJ/kg . and The emissivity of the outer surface of the tank is 0.75, and the convection heat transfer coefficient on the outer surface can be taken to be 30 W/m 2 . K . Assume the average surrounding surface temperature for radiation exchange to be 15 o C .
A 3-m-internal-diameter spherical tank made of 1-cm-thick stainless steel is use to store iced water at
0
o
C
.
The tank is located outdoors at
25
o
C
.
Assuming the entire steel tank to be at
0
o
C
and thus the thermal resistance of the tank to be negligible, determine (a) the rate of heat transfer to the iced water in the tank and (b) the amount of ice at
0
o
C
that melts during a 24-h period. The heat of fusion of water at atmospheric pressure is
h
i
f
=
333.7
kJ/kg
.
and The emissivity of the outer surface of the tank is 0.75, and the convection heat transfer coefficient on the outer surface can be taken to be
30 W/m
2
.
K
.
Assume the average surrounding surface temperature for radiation exchange to be
15
o
C
.
Three cables are pulling on a ring located at the origin, as shown in the diagram below. FA is 200 N in magnitude with a transverse angle of 30° and an azimuth angle of 140°. FB is 240 N in magnitude with coordinate direction angles α = 135° and β = 45°. Determine the magnitude and direction of FC so that the resultant of all 3 force vectors lies on the z-axis and has a magnitude of 300 N. Specify the direction of FC using its coordinate direction angles.
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