Q2) The 12-kg block has an initial speed of vo = 4 m/s when it is midway between springs A and B as shown in Figure 2. After striking spring B, it rebounds and slides across the horizontal plane toward spring. If the coefficient of kinetic friction between the plane and the block, μ is 0.4, determine the total distance travelled by the block before it comes to rest. 0.6 m KA = 100 N/m. M A -0.3 m -Vo = 4 m/s Figure Q2 kB = 300 N/m www B
Q2) The 12-kg block has an initial speed of vo = 4 m/s when it is midway between springs A and B as shown in Figure 2. After striking spring B, it rebounds and slides across the horizontal plane toward spring. If the coefficient of kinetic friction between the plane and the block, μ is 0.4, determine the total distance travelled by the block before it comes to rest. 0.6 m KA = 100 N/m. M A -0.3 m -Vo = 4 m/s Figure Q2 kB = 300 N/m www B
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:Q2) The 12-kg block has an initial speed of vo = 4 m/s when it is midway between springs
A and B as shown in Figure 2. After striking spring B, it rebounds and slides across the
horizontal plane toward spring. If the coefficient of kinetic friction between the plane and the
block, μ is 0.4, determine the total distance travelled by the block before it comes to rest.
KA = 100 N/m.
M
A
-0.6 m-
-0.3 m
Vo = 4 m/s
Figure Q2
kB = 300 N/m
wwwwww
B
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