The spring is fixed to block A and block B is pressed against the spring. If the spring is compressed s = 200 mm and then the blocks are released, determine their speeds at the instant block B loses contact with the spring. The masses of blocks A and B are 13 kg and 16 kg , respectively. (Figure 1)
The spring is fixed to block A and block B is pressed against the spring. If the spring is compressed s = 200 mm and then the blocks are released, determine their speeds at the instant block B loses contact with the spring. The masses of blocks A and B are 13 kg and 16 kg , respectively. (Figure 1)
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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determine the speed of block A and block B
![The spring is fixed to block A and block B is pressed
against the spring. If the spring is compressed s = 200
mm and then the blocks are released, determine their
speeds at the instant block B loses contact with the
spring. The masses of blocks A and B are 13 kg and 16
kg , respectively. (Figure 1)
Figure
1 of 1
k = 5 kN/m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fed7b56a3-2e66-4877-848b-86d54658cb11%2Fa889e288-2d12-4c56-ade9-669e4a2f23ab%2F4sp42qq_processed.png&w=3840&q=75)
Transcribed Image Text:The spring is fixed to block A and block B is pressed
against the spring. If the spring is compressed s = 200
mm and then the blocks are released, determine their
speeds at the instant block B loses contact with the
spring. The masses of blocks A and B are 13 kg and 16
kg , respectively. (Figure 1)
Figure
1 of 1
k = 5 kN/m
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