*..33 Go In Fig. 8-46, a spring with k = 170 N/m is at the top of a fric- tionless incline of angle e = 37.0°. %3D The lower end of the incline is dis- tance D = 1.00 m from the end of the spring, which is at its relaxed length. A 2.00 kg canister is pushed against the spring until the spring is compressed 0.200 m and released from rest. (a) What is the speed of the canister at the instant the spring returns to its relaxed length (which is when the canister loses contact with the spring)? (b) What is the speed of the canister when it reaches the lower end of the incline? Figure 8-46 Problem 33.

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*..33 Go In Fig. 8-46, a spring with
k = 170 N/m is at the top of a fric-
tionless incline of angle e = 37.0°.
%3D
The lower end of the incline is dis-
tance D = 1.00 m from the end of
the spring, which is at its relaxed
length. A 2.00 kg canister is pushed
against the spring until the spring is
compressed 0.200 m and released
from rest. (a) What is the speed of
the canister at the instant the spring
returns to its relaxed length (which is when the canister loses contact
with the spring)? (b) What is the speed of the canister when it
reaches the lower end of the incline?
Figure 8-46 Problem 33.
Transcribed Image Text:*..33 Go In Fig. 8-46, a spring with k = 170 N/m is at the top of a fric- tionless incline of angle e = 37.0°. %3D The lower end of the incline is dis- tance D = 1.00 m from the end of the spring, which is at its relaxed length. A 2.00 kg canister is pushed against the spring until the spring is compressed 0.200 m and released from rest. (a) What is the speed of the canister at the instant the spring returns to its relaxed length (which is when the canister loses contact with the spring)? (b) What is the speed of the canister when it reaches the lower end of the incline? Figure 8-46 Problem 33.
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