A watermelon initially at 35°C is to be cooled by dropping it into a lake at 15°C. After 4 h and 40 miii of cooling, the center temperature of the watermelon is titeasured to be 20°C. Treating the watermelon as a 20-cm-diameter sphere and using the properties k = 0 .618 W/m .K, α = 0 .15 × 10 -6 m 2 /s, p = 995 kg/m 3 , and c p = 4 .18 kJ/kg .K, determine the average heat transfer coefficient and the surface temperature of the watermelon at the end of the cooling period. Solve this problem using the analytical one-term approximation method.
A watermelon initially at 35°C is to be cooled by dropping it into a lake at 15°C. After 4 h and 40 miii of cooling, the center temperature of the watermelon is titeasured to be 20°C. Treating the watermelon as a 20-cm-diameter sphere and using the properties k = 0 .618 W/m .K, α = 0 .15 × 10 -6 m 2 /s, p = 995 kg/m 3 , and c p = 4 .18 kJ/kg .K, determine the average heat transfer coefficient and the surface temperature of the watermelon at the end of the cooling period. Solve this problem using the analytical one-term approximation method.
Solution Summary: The author explains the average heat transfer coefficient and the surface temperature of watermelon at the end of cooling.
A watermelon initially at 35°C is to be cooled by dropping it into a lake at 15°C. After 4 h and 40 miii of cooling, the center temperature of the watermelon is titeasured to be 20°C. Treating the watermelon as a 20-cm-diameter sphere and using the properties
k = 0
.618 W/m
.K,
α
= 0
.15
×
10
-6
m
2
/s,
p
=
995
kg/m
3
, and
c
p
= 4
.18 kJ/kg
.K,
determine the average heat transfer coefficient and the surface temperature of the watermelon at the end of the cooling period. Solve this problem using the analytical one-term approximation method.
PROBLEM 3.23
3.23 Under normal operating condi-
tions a motor exerts a torque of
magnitude TF at F. The shafts
are made of a steel for which
the allowable shearing stress is
82 MPa and have diameters of
dCDE=24 mm and dFGH = 20
mm. Knowing that rp = 165
mm and rg114 mm, deter-
mine the largest torque TF
which may be exerted at F.
TF
F
rG-
rp
B
CH
TE
E
1. (16%) (a) If a ductile material fails under pure torsion, please explain the failure
mode and describe the observed plane of failure.
(b) Suppose a prismatic beam is subjected to equal and opposite couples as shown
in Fig. 1. Please sketch the deformation and the stress distribution of the cross
section.
M
M
Fig. 1
(c) Describe the definition of the neutral axis.
(d) Describe the definition of the modular ratio.
using the theorem of three moments, find all the moments, I only need concise calculations with minimal explanations. The correct answers are provided at the bottom
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