I Review | Constants A 2.00-kg package is released on a 53.1° incline, 4.00 m from a long spring with force constant 120 N/m that is attached at the bottom of the incline (Figure 1). The coefficients of friction between the package and the incline are us = 0.40 and µk the spring is negligible. Part A 0.20. The mass of What is the speed of the package just before it reaches the spring? V ΑΣφ m/s Figure 1 of 1 Request Answer Submit m = 2.00 kg Part B 4.00 m What is the maximum compression of the spring? V ΑΣφ 53.1° d = m Suhmit Request Answer II wwwwwwww I Review A 2.00-kg package is released on a 53.1° incline, 4.00 m from a long spring with force constant 120 N/m that is attached at the bottom of the incline (Figure 1). The coefficients of friction between the package and the incline are us the spring is negligible. ν Α φ 0.40 and µk 0.20. The mass of d = Request Answer Submit Figure 1 of 1 Part C The package rebounds back up the incline. How close does it get to its initial position? = 2.00 kg m Πνα ΑΣφ 4.00 m Request Answer Submit 53.1° Provide Feedback నా wwwwww

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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I Review | Constants
A 2.00-kg package is released on a 53.1° incline, 4.00
m from a long spring with force constant 120 N/m that
is attached at the bottom of the incline (Figure 1). The
coefficients of friction between the package and the
incline are us = 0.40 and µk
the spring is negligible.
Part A
0.20. The mass of
What is the speed of the package just before it reaches the spring?
V ΑΣφ
m/s
Figure
1 of 1
Request Answer
Submit
m = 2.00 kg
Part B
4.00 m
What is the maximum compression of the spring?
V ΑΣφ
53.1°
d =
m
Suhmit
Request Answer
II
wwwwwwww
Transcribed Image Text:I Review | Constants A 2.00-kg package is released on a 53.1° incline, 4.00 m from a long spring with force constant 120 N/m that is attached at the bottom of the incline (Figure 1). The coefficients of friction between the package and the incline are us = 0.40 and µk the spring is negligible. Part A 0.20. The mass of What is the speed of the package just before it reaches the spring? V ΑΣφ m/s Figure 1 of 1 Request Answer Submit m = 2.00 kg Part B 4.00 m What is the maximum compression of the spring? V ΑΣφ 53.1° d = m Suhmit Request Answer II wwwwwwww
I Review
A 2.00-kg package is released on a 53.1° incline, 4.00
m from a long spring with force constant 120 N/m that
is attached at the bottom of the incline (Figure 1). The
coefficients of friction between the package and the
incline are us
the spring is negligible.
ν
Α φ
0.40 and µk
0.20. The mass of
d =
Request Answer
Submit
Figure
1 of 1
Part C
The package rebounds back up the incline. How close does it get to its initial position?
= 2.00 kg
m
Πνα ΑΣφ
4.00 m
Request Answer
Submit
53.1°
Provide Feedback
నా
wwwwww
Transcribed Image Text:I Review A 2.00-kg package is released on a 53.1° incline, 4.00 m from a long spring with force constant 120 N/m that is attached at the bottom of the incline (Figure 1). The coefficients of friction between the package and the incline are us the spring is negligible. ν Α φ 0.40 and µk 0.20. The mass of d = Request Answer Submit Figure 1 of 1 Part C The package rebounds back up the incline. How close does it get to its initial position? = 2.00 kg m Πνα ΑΣφ 4.00 m Request Answer Submit 53.1° Provide Feedback నా wwwwww
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