•22 O Figure 15-34 shows block 1 of mass 0.200 kg slid- ing to the right over a friction- less elevated surface at a speed of 8.00 m/s. The block undergoes an elastic collision with stationary block 2, which is attached to a spring of spring constant 1208.5 N/m. (Assume that the spring does not affect the collision.) After the collision, block 2 oscillates in SHM with a period of 0.140 s, and block 1 slides off the opposite end of the elevated surface, landing a dis- tance d from the base of that surface after falling height h = 4.90 Figure 15-34 Problem 22. m. What is the value of d?

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Chapter1: Units, Trigonometry. And Vectors
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•22 O Figure 15-34 shows
block 1 of mass 0.200 kg slid-
ing to the right over a friction-
less elevated surface at a
speed of 8.00 m/s. The block
undergoes an elastic collision
with stationary block 2, which
is attached to a spring of spring
constant 1208.5 N/m. (Assume
that the spring does not affect the collision.) After the collision,
block 2 oscillates in SHM with a period of 0.140 s, and block 1
slides off the opposite end of the elevated surface, landing a dis-
tance d from the base of that surface after falling height h = 4.90
Figure 15-34 Problem 22.
m. What is the value of d?
Transcribed Image Text:•22 O Figure 15-34 shows block 1 of mass 0.200 kg slid- ing to the right over a friction- less elevated surface at a speed of 8.00 m/s. The block undergoes an elastic collision with stationary block 2, which is attached to a spring of spring constant 1208.5 N/m. (Assume that the spring does not affect the collision.) After the collision, block 2 oscillates in SHM with a period of 0.140 s, and block 1 slides off the opposite end of the elevated surface, landing a dis- tance d from the base of that surface after falling height h = 4.90 Figure 15-34 Problem 22. m. What is the value of d?
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