I drag a mass m = 21 kg in a straight line, along a horizontal surface, a distance D = 23 m .I drag it at constant speed v = 0.90 m.s¯ in a straight line using a horizontal force. The coefficients of friction are u, = 1.2 and µ = 1.1. How much work do I do? W =. J.

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1. [#661] What a drag!
I drag a mass m = 21 kg in a straight line, along a horizontal surface, a distance D = 23 m . I drag it at constant speed
v = 0.90 m.s
much work do I do? W :
–1
s- in a straight line using a horizontal force. The coefficients of friction are us
1.2 and µk
1.1. How
_ J.
Enter answer here
2. [#662] A rubber band.
A rubber band has mass m =
0.30 g and a spring constant k
15 N.m-
1
.Istretch it by 5.0 cm (which in this case
doubles its length). Assume the rubber band behaves as a Hooke's law spring. Assume that, when you launch the rubber
band, all of the stored potential energy is converted into kinetic energy. How fast is it at the launch?
V =
m.s¬l.
Enter answer here
Transcribed Image Text:1. [#661] What a drag! I drag a mass m = 21 kg in a straight line, along a horizontal surface, a distance D = 23 m . I drag it at constant speed v = 0.90 m.s much work do I do? W : –1 s- in a straight line using a horizontal force. The coefficients of friction are us 1.2 and µk 1.1. How _ J. Enter answer here 2. [#662] A rubber band. A rubber band has mass m = 0.30 g and a spring constant k 15 N.m- 1 .Istretch it by 5.0 cm (which in this case doubles its length). Assume the rubber band behaves as a Hooke's law spring. Assume that, when you launch the rubber band, all of the stored potential energy is converted into kinetic energy. How fast is it at the launch? V = m.s¬l. Enter answer here
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