Chickens with an average mass of 1.7 kg (k = 0 .45 W/m .K, and α = 0 .13 × 10 -6 m 2 /s) and initially at a uniform temperature of 15°C are to be chilled in agitated brine at -7°C. The average heat transfer coefficient between the chicken and the brine is determined experimentally to be 440 W/m 2 K. Taking the average density of the chicken to be 0.95 g/cm 3 and treating the chicken as a spherical lump, determine the center and the surface temperatures of the chicken in 2 h and 45 mm. Also, determine if any part of the chicken will freeze during this process. Solve this problem using the analytical one-term approximation method.
Chickens with an average mass of 1.7 kg (k = 0 .45 W/m .K, and α = 0 .13 × 10 -6 m 2 /s) and initially at a uniform temperature of 15°C are to be chilled in agitated brine at -7°C. The average heat transfer coefficient between the chicken and the brine is determined experimentally to be 440 W/m 2 K. Taking the average density of the chicken to be 0.95 g/cm 3 and treating the chicken as a spherical lump, determine the center and the surface temperatures of the chicken in 2 h and 45 mm. Also, determine if any part of the chicken will freeze during this process. Solve this problem using the analytical one-term approximation method.
Chickens with an average mass of 1.7 kg
(k = 0
.45 W/m
.K, and
α
= 0
.13
×
10
-6
m
2
/s)
and initially at a uniform temperature of 15°C are to be chilled in agitated brine at -7°C. The average heat transfer coefficient between the chicken and the brine is determined experimentally to be 440 W/m2 K. Taking the average density of the chicken to be 0.95 g/cm3 and treating the chicken as a spherical lump, determine the center and the surface temperatures of the chicken in 2 h and 45 mm. Also, determine if any part of the chicken will freeze during this process. Solve this problem using the analytical one-term approximation method.
500
Q3: The attachment shown in Fig.3 is made of
1040 HR. The static force is 30 kN. Specify the
weldment (give the pattern, electrode
number, type of weld, length of weld, and leg
size).
Fig. 3
All dimension
in mm
30 kN
100
(10 Marks)
(read image) (answer given)
A cylinder and a disk are used as pulleys, as shown in the figure. Using the data
given in the figure, if a body of mass m = 3 kg is released from rest after falling a
height h 1.5 m, find:
a) The velocity of the body.
b) The angular velocity of the disk.
c) The number of revolutions the cylinder has made.
T₁
F
Rd =
0.2 m
md =
2 kg
T
T₂1
Rc = 0.4 m
mc = 5 kg
☐ m = 3 kg
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First Law of Thermodynamics, Basic Introduction - Internal Energy, Heat and Work - Chemistry; Author: The Organic Chemistry Tutor;https://www.youtube.com/watch?v=NyOYW07-L5g;License: Standard youtube license