Problem 3: μs = 0.60 between wedges B and C and us = 0.40 between the surfaces B & A and C & D. If the spring is compressed 200 mm in the position shown, find the smallest force P required to move the wedge. Neglect the weight of the wedges. A 15° B k = 500 N/m D 15° 15° C P

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Problem 3: µs = 0.60 between wedges B and C and us = 0.40 between the surfaces B & A and C & D.
If the spring is compressed 200 mm in the position shown, find the smallest force P required to move the wedge.
Neglect the weight of the wedges.
A
15°
B
D
k = 500 N/m
15°
15° C
P
Transcribed Image Text:Problem 3: µs = 0.60 between wedges B and C and us = 0.40 between the surfaces B & A and C & D. If the spring is compressed 200 mm in the position shown, find the smallest force P required to move the wedge. Neglect the weight of the wedges. A 15° B D k = 500 N/m 15° 15° C P
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