3.) Uniform box A has a weight of 40 Ib, and is leaning against box B as shown. Box B has a weight of WB. Friction coefficients between the various surfaces are as shown. (friction-less) X = 20 in. 24 in. Y = 10 in. 30 deg- Z = 24 in. W = 40 Ib j = 0.4 a. Draw FBD's of box A and box B. b. Determine if the system is in static equilibrium. Note - Only check for sliding of A and B.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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3.)
Uniform box A has a weight of
40 Ib, and is leaning against box
B as shown. Box B has a
weight of WB. Friction
coefficients between the various
20
in.
(friction-less)
X =
24 in.
Y =
10 in.
30 deg.
surfaces are as shown.
24 in.
W =
40
Ib
u-0.7
H= 0.4
a. Draw FBD's of box A and box B.
b. Determine if the system is in static equilibrium. Note – Only check for sliding
of A and B.
N
Transcribed Image Text:3.) Uniform box A has a weight of 40 Ib, and is leaning against box B as shown. Box B has a weight of WB. Friction coefficients between the various 20 in. (friction-less) X = 24 in. Y = 10 in. 30 deg. surfaces are as shown. 24 in. W = 40 Ib u-0.7 H= 0.4 a. Draw FBD's of box A and box B. b. Determine if the system is in static equilibrium. Note – Only check for sliding of A and B. N
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