A package is dropped from the plane which is flying with a constant horizontal velocity of UA = 175 ft/s. Suppose that h = 1850 ft (Figure 1) Figure < 1 of 1 1) Determine the radius of curvature of the path of motion at the moment the package is released at A. 2) Determine the normal component and the tangential component of acceleration just before it strikes the ground at B. 3) Determine the radius of curvature of the path of motion just before it strikes the ground at B.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A package is dropped from the plane which is fiying with a constant horizontal velocity of
UA = 175 ft/s. Suppose that h = 1850 ft (Figure 1)
Figure
K 1 of 1
1) Determine the radius of curvature of the
path of motion at the moment the package
is released at A.
2) Determine the normal component and the
tangential component of acceleration just
before it strikes the ground at B.
3) Determine the radius of curvature of the
path of motion just before it strikes the
ground at B.
Transcribed Image Text:A package is dropped from the plane which is fiying with a constant horizontal velocity of UA = 175 ft/s. Suppose that h = 1850 ft (Figure 1) Figure K 1 of 1 1) Determine the radius of curvature of the path of motion at the moment the package is released at A. 2) Determine the normal component and the tangential component of acceleration just before it strikes the ground at B. 3) Determine the radius of curvature of the path of motion just before it strikes the ground at B.
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