Part A You are an industrial engineer with a shipping company. As part of the package-handling system, a small box with mass 1.60 kg is placed against a light spring that is compressed 0.280 m. The spring, whose other end is attached to a wallI, has force constant What is the speed of the box at the instant when it leaves the spring? k = 45.0 N/m. The spring and box are released from rest, and the box travels along a horizontal surface for which the coefficient of kinetic friction with the box is u = 0.300. When the box has traveled 0.280 m and the spring has reached its equilibrium length, the box loses contact with the spring. Express your answer with the appropriate units. v = Value Units Submit Request Answer Part B What is the maximum speed of the box during its motion? Express your answer with the appropriate units. HA ? Umax = Value Units Submit Request Answer Provide Feedback
Part A You are an industrial engineer with a shipping company. As part of the package-handling system, a small box with mass 1.60 kg is placed against a light spring that is compressed 0.280 m. The spring, whose other end is attached to a wallI, has force constant What is the speed of the box at the instant when it leaves the spring? k = 45.0 N/m. The spring and box are released from rest, and the box travels along a horizontal surface for which the coefficient of kinetic friction with the box is u = 0.300. When the box has traveled 0.280 m and the spring has reached its equilibrium length, the box loses contact with the spring. Express your answer with the appropriate units. v = Value Units Submit Request Answer Part B What is the maximum speed of the box during its motion? Express your answer with the appropriate units. HA ? Umax = Value Units Submit Request Answer Provide Feedback
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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If you can help me with both that will be great thanks.

Transcribed Image Text:Part A
You are an industrial engineer with a shipping company. As part of the package-handling
system, a small box with mass 1.60 kg is placed against a light spring that is compressed
0.280 m. The spring, whose other end is attached to a wallI, has force constant
What is the speed of the box at the instant when it leaves the spring?
k = 45.0 N/m. The spring and box are released from rest, and the box travels along a
horizontal surface for which the coefficient of kinetic friction with the box is u = 0.300.
When the box has traveled 0.280 m and the spring has reached its equilibrium length, the
box loses contact with the spring.
Express your answer with the appropriate units.
v =
Value
Units
Submit
Request Answer
Part B
What is the maximum speed of the box during its motion?
Express your answer with the appropriate units.
HA
?
Umax =
Value
Units
Submit
Request Answer
Provide Feedback

Transcribed Image Text:Part A
The potential energy of a pair of hydrogen atoms separated by a large distance z is given
by U(z) = -C6/2®, where C6 is a positive constant.
What is the force that one atom exerts on the other?
Express your answer in terms of C6 and x.
?
F =
Submit
Previous Answers Request Answer
X Incorrect; Try Again; 3 attempts remaining
Part B
Is this force attractive or repulsive?
O attractive
O repulsive
Submit
Request Answer
Drovide Feedhack
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