4-29. A zip line supporting a person weighing W = 200 lb is attached at two points by a cable. The geometry and free-body dia- gram are shown in Fig. P4.29. (a) Determine the angles 01 and 02 if d = d, = 20 ft, h, = 9.75 ft, and h2 = 5 ft. (b) Write all of the forces shown in the free-body diagram in terms of the unknown tensions T, and T,, in rect- angular form (i.e., with î and î). %3D FBD: y T1 T2 72 d1 W Figure P4.29 Zip line supporting a person.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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4-29. A zip line supporting a person weighing
W = 200 lb is attached at two points by
a cable. The geometry and free-body dia-
gram are shown in Fig. P4.29.
(a) Determine the angles 0, and 02
if d = d, = 20 ft, h, = 9.75 ft, and
h, = 5 ft.
(b) Write all of the forces shown in the
free-body diagram in terms of the
unknown tensions T, and T, in rect-
angular form (i.e., with î and ĵ).
1
FBD:
y
T1
T2
X.
h2
02
d2
d1
W
Figure P4.29 Zip line supporting a person.
Transcribed Image Text:4-29. A zip line supporting a person weighing W = 200 lb is attached at two points by a cable. The geometry and free-body dia- gram are shown in Fig. P4.29. (a) Determine the angles 0, and 02 if d = d, = 20 ft, h, = 9.75 ft, and h, = 5 ft. (b) Write all of the forces shown in the free-body diagram in terms of the unknown tensions T, and T, in rect- angular form (i.e., with î and ĵ). 1 FBD: y T1 T2 X. h2 02 d2 d1 W Figure P4.29 Zip line supporting a person.
(c) Knowing that T, + T, + W = 0, solve
for the unknown tensions T, and T,.
%3D
Transcribed Image Text:(c) Knowing that T, + T, + W = 0, solve for the unknown tensions T, and T,. %3D
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