A diffuse, opaque surface at 700 K has spectral emissivities of ε λ = 0 for 0 ≤ λ ≤ 3 μ m , ε λ = 0.5 for 3 μ m,and ε λ = 0.9 f o r 10 μ m < λ < ∞ for. A radiant flux of 1000 W / m 2 , which is uniformly distributed between 1 and 6 μ m , is incident on the sur- face at an angle of 30 ∘ relative to the surface normal. Calculate the total radiant power from a 10 − 4 m 2 area of the surface that reaches a radiation detector positioned along the normal to the area. The aperture of the detector is 10 − 5 m 2 , and its distance from the sur- face is 1 m.
A diffuse, opaque surface at 700 K has spectral emissivities of ε λ = 0 for 0 ≤ λ ≤ 3 μ m , ε λ = 0.5 for 3 μ m,and ε λ = 0.9 f o r 10 μ m < λ < ∞ for. A radiant flux of 1000 W / m 2 , which is uniformly distributed between 1 and 6 μ m , is incident on the sur- face at an angle of 30 ∘ relative to the surface normal. Calculate the total radiant power from a 10 − 4 m 2 area of the surface that reaches a radiation detector positioned along the normal to the area. The aperture of the detector is 10 − 5 m 2 , and its distance from the sur- face is 1 m.
Solution Summary: The author explains the radiation energy leaving an aperture.
A diffuse, opaque surface at 700 K has spectral emissivities of
ε
λ
=
0
for 0
≤
λ
≤
3
μ
m
,
ε
λ
=
0.5
for 3
μ
m,and
ε
λ
=
0.9
f
o
r
10
μ
m
<
λ
<
∞
for. A radiant flux of
1000
W
/
m
2
, which is uniformly distributed between
1 and 6
μ
m
, is incident on the sur- face at an angle of
30
∘
relative to the surface normal. Calculate the total radiant power from a
10
−
4
m
2
area of the surface that reaches a radiation detector positioned along the normal to the area. The aperture of the detector is
10
−
5
m
2
, and its distance from the sur- face is 1 m.
3.) 15.40 – Collar B moves up at constant velocity vB = 1.5 m/s. Rod AB has length = 1.2 m. The incline is
at angle = 25°. Compute an expression for the angular velocity of rod AB, ė and the velocity of end A of the
rod (✓✓) as a function of v₂,1,0,0. Then compute numerical answers for ȧ & y_ with 0 = 50°.
2.) 15.12 The assembly shown consists of the straight rod ABC which passes through and is welded to the
grectangular plate DEFH. The assembly rotates about the axis AC with a constant angular velocity of 9 rad/s.
Knowing that the motion when viewed from C is counterclockwise, determine the velocity and acceleration of
corner F.
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)
Elementary Surveying: An Introduction To Geomatics (15th Edition)
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