Use the illustration below of a tracking station having two telescopes that are 1 mile apart. The telescopes can lock onto a rocket after it is launched and record the angles of elevation to the rocket. Suppose the angles of elevation from telescopes A and B are 30° and 80°, respectively. How far is the rocket from telescope A? A) 0.78 mi B) 1.29 mi C) 0.65 mi D) 1.53 mi
Use the illustration below of a tracking station having two telescopes that are 1 mile apart. The telescopes can lock onto a rocket after it is launched and record the angles of elevation to the rocket. Suppose the angles of elevation from telescopes A and B are 30° and 80°, respectively. How far is the rocket from telescope A? A) 0.78 mi B) 1.29 mi C) 0.65 mi D) 1.53 mi
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Transcribed Image Text:Use the illustration below of a tracking station having two telescopes that are 1 mile apart. The telescopes can lock onto a rocket
after it is launched and record the angles of elevation to the rocket. Suppose the angles of elevation from telescopes A and B are
30° and 80°, respectively. How far is the rocket from telescope A?
(A) 0.78 mi
B) 1.29 mi
C) 0.65 mi
1.53 mi
80"
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