1. Present your solution neat and orderly. 2. All the assumptions must be clearly stated and referenced. 3. Pictures and sketches (if any) must be label, applicable and the fewest. 4. Present this page as front page and staple the solution to it. The density of atmospheric air varies with elevation, decreasing with increasing altitude. (a) Plot the density of air (y-axes) versus the elevation (x-axes). (b) Using the data given in the table, obtain a relation for the variation of density with elevation, and calculate the density at an elevation of 7000 m, 14000 m, 21000m, and 28000m. (c) Calculate the mass of the atmosphere using the correlation you obtained. (d) Explain the validity of your solution. (Very briefly, max five lines.) Assume the earth is a perfect sphere and the diameter of the Earth is about 12750 km, and also take the thickness of the atmosphere to be 28 km. z, km 6377 6378 6379 6380 6381 6382 6383 6385 6387 6392 6397 6402 p, kg/m³ 1.225 1.112 1.007 0.9093 0.8194 0.7364 0.6601 0.5258 0.4135 0.1948 0.08891 0.04008

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Can someone please help me to solve all of the following parts of this question. Also plotting and making needed graphs in excel. Show all neatly work please
1. Present your solution neat and orderly.
2. All the assumptions must be clearly stated and referenced.
3. Pictures and sketches (if any) must be label, applicable and the fewest.
4. Present this page as front page and staple the solution to it.
The density of atmospheric air varies with elevation, decreasing with increasing altitude.
(a) Plot the density of air (y-axes) versus the elevation (x-axes).
(b) Using the data given in the table, obtain a relation for the variation of density with elevation,
and calculate the density at an elevation of 7000 m, 14000 m, 21000m, and 28000m.
(c) Calculate the mass of the atmosphere using the correlation you obtained.
(d) Explain the validity of your solution. (Very briefly, max five lines.)
Assume the earth is a perfect sphere and the diameter of the Earth is about 12750 km, and also
take the thickness of the atmosphere to be 28 km.
z, km
6377
6378
6379
6380
6381
6382
6383
6385
6387
6392
6397
6402
p, kg/m³
1.225
1.112
1.007
0.9093
0.8194
0.7364
0.6601
0.5258
0.4135
0.1948
0.08891
0.04008
jour colution so this page as the front page)
Transcribed Image Text:1. Present your solution neat and orderly. 2. All the assumptions must be clearly stated and referenced. 3. Pictures and sketches (if any) must be label, applicable and the fewest. 4. Present this page as front page and staple the solution to it. The density of atmospheric air varies with elevation, decreasing with increasing altitude. (a) Plot the density of air (y-axes) versus the elevation (x-axes). (b) Using the data given in the table, obtain a relation for the variation of density with elevation, and calculate the density at an elevation of 7000 m, 14000 m, 21000m, and 28000m. (c) Calculate the mass of the atmosphere using the correlation you obtained. (d) Explain the validity of your solution. (Very briefly, max five lines.) Assume the earth is a perfect sphere and the diameter of the Earth is about 12750 km, and also take the thickness of the atmosphere to be 28 km. z, km 6377 6378 6379 6380 6381 6382 6383 6385 6387 6392 6397 6402 p, kg/m³ 1.225 1.112 1.007 0.9093 0.8194 0.7364 0.6601 0.5258 0.4135 0.1948 0.08891 0.04008 jour colution so this page as the front page)
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