Determine the erosion depth per year of a Mylar film placed in the outer surface of a spacecraft oriented in the ram direction at an orbital altitude of 100 km during where the average atomic-oxygen number densities is 5 x 108 atoms. The erosion yield of Mylar film is 2.3 × 10-24. cm³ cm³ oxygen atom
Determine the erosion depth per year of a Mylar film placed in the outer surface of a spacecraft oriented in the ram direction at an orbital altitude of 100 km during where the average atomic-oxygen number densities is 5 x 108 atoms. The erosion yield of Mylar film is 2.3 × 10-24. cm³ cm³ oxygen atom
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Determine the erosion depth per year of a Mylar film placed in the outer surface of a spacecraft oriented in the ram direction at an orbital altitude of 100 ?? during where the average atomic-oxygen number densities is 5 × 108 ????? ??3. The erosion yield of Mylar film is 2.3 × 10−24 ??3 ?????? ????
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![Exercise 3:
Determine the erosion depth per year of a Mylar film placed in the outer surface of a spacecraft oriented in
the ram direction at an orbital altitude of 100 km during where the average atomic-oxygen number densities
cm³
is 5 x 108 atoms
The erosion yield of Mylar film is 2.3 × 10-24.
cm³
oxygen atom](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff3cfcb52-c7f4-4081-9531-9e9bfc3965aa%2F570ec558-c7d2-438d-ac8d-f9b390610970%2Fne09a5b_processed.png&w=3840&q=75)
Transcribed Image Text:Exercise 3:
Determine the erosion depth per year of a Mylar film placed in the outer surface of a spacecraft oriented in
the ram direction at an orbital altitude of 100 km during where the average atomic-oxygen number densities
cm³
is 5 x 108 atoms
The erosion yield of Mylar film is 2.3 × 10-24.
cm³
oxygen atom
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