The energy flux associated with solar radiation incident on the outer surface of the earth’s atmosphere has been accurately measured and is known to be 1368 W / m 2 . The diameters of the sun and earth are 1.39 x 10 9 and 1.27 x 10 7 m , respectively, and the distance between the sun and the earth is 1.5 x 10 11 m . (a) What is the emissive power of the sun? (b) Approximating the sun’s surface as black, what is its temperature? (c) At what wavelength is the spectral emissive power of the sun a maximum? (d) Assuming the earth’s surface to be black and the sun to be the only source of energy for the earth, estimate the earth’ s surface temperature.
The energy flux associated with solar radiation incident on the outer surface of the earth’s atmosphere has been accurately measured and is known to be 1368 W / m 2 . The diameters of the sun and earth are 1.39 x 10 9 and 1.27 x 10 7 m , respectively, and the distance between the sun and the earth is 1.5 x 10 11 m . (a) What is the emissive power of the sun? (b) Approximating the sun’s surface as black, what is its temperature? (c) At what wavelength is the spectral emissive power of the sun a maximum? (d) Assuming the earth’s surface to be black and the sun to be the only source of energy for the earth, estimate the earth’ s surface temperature.
Solution Summary: The author explains the emissive power of sun and earth.
The energy flux associated with solar radiation incident on the outer surface of the earth’s atmosphere has been accurately measured and is known to be
1368
W
/
m
2
. The diameters of the sun and earth are
1.39
x
10
9
and
1.27
x
10
7
m
, respectively, and the distance between the sun and the earth is
1.5
x
10
11
m
. (a) What is the emissive power of the sun? (b) Approximating the sun’s surface as black, what is its temperature? (c) At what wavelength is the spectral emissive power of the sun a maximum? (d) Assuming the earth’s surface to be black and the sun to be the only source of energy for the earth, estimate the earth’ s surface temperature.
4-105. Replace the force system acting on the beam by an equivalent resultant force and couple
moment at point B.
A
30 in.
4 in.
12 in.
16 in.
B
30%
3 in.
10 in.
250 lb
260 lb
13
5
12
300 lb
Sketch and Describe a hatch coaming and show how the hatch coamings are framed in to ships strucure?
Sketch and describe hatch coamings. Describe structrual requirements to deck plating to compensate discontinuity for corners of a hatch. Show what is done to the deck plating when the decks are cut away and include the supporting members.
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