12. A 5.00 [kg] block is set into motion up a ramp with initial = speed of vi 8.00 [m/s]. The ramp is rough with coefficient of friction k = 0.50 and is inclined at an angle = 30.0°. The block comes to rest after compressing an ideal spring with force constant k = 500 [N/m] attached at the top of the ramp. The initial and final position of the block is shown in the figure. What is the maximum compression d of the spring? A. 0.250 [m] B. 0.302 [m] C. 0.550 [m] Y2 = 2.00 [m] 30.0° D. 0.832 [m] Mk Y₁ = 0.500 [m]
12. A 5.00 [kg] block is set into motion up a ramp with initial = speed of vi 8.00 [m/s]. The ramp is rough with coefficient of friction k = 0.50 and is inclined at an angle = 30.0°. The block comes to rest after compressing an ideal spring with force constant k = 500 [N/m] attached at the top of the ramp. The initial and final position of the block is shown in the figure. What is the maximum compression d of the spring? A. 0.250 [m] B. 0.302 [m] C. 0.550 [m] Y2 = 2.00 [m] 30.0° D. 0.832 [m] Mk Y₁ = 0.500 [m]
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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![=
12. A 5.00 [kg] block is set into motion up a ramp with initial
speed of vi = 8.00 [m/s]. The ramp is rough with
coefficient of friction μk 0.50 and is inclined at
an angle = 30.0°. The block comes to rest after
compressing an ideal spring with force constant
k =
500 [N/m] attached at the top of the ramp. The
initial and final position of the block is shown in the
figure. What is the maximum compression d of the spring?
A. 0.250 [m]
B. 0.302 [m]
C. 0.550 [m]
Y2 = 2.00 [m]-
=
У1
30.0°
D. 0.832 [m]
Mk
0.500 [m]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fce5ec770-36b3-45c3-8a9e-9b20332c3d4a%2Ff28e42a9-c93d-4b15-a24c-68828a55dac3%2Ftnw7j9n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:=
12. A 5.00 [kg] block is set into motion up a ramp with initial
speed of vi = 8.00 [m/s]. The ramp is rough with
coefficient of friction μk 0.50 and is inclined at
an angle = 30.0°. The block comes to rest after
compressing an ideal spring with force constant
k =
500 [N/m] attached at the top of the ramp. The
initial and final position of the block is shown in the
figure. What is the maximum compression d of the spring?
A. 0.250 [m]
B. 0.302 [m]
C. 0.550 [m]
Y2 = 2.00 [m]-
=
У1
30.0°
D. 0.832 [m]
Mk
0.500 [m]
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