2. Energy Nonconservation A mass m, = 1.00-kg is sitting on a plane inclined at an angle of 0 = 60° from the horizontal and is also attached to a pulley which connects m, to freely hanging mass m2 2.00-kg. The coefficient of kinetic friction between m, and the incline is u = 0.27. Assuming the masses are released from rest, use work/energy arguments to find their final speed after they travel for a distance d = 1.00-m.

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2. Energy Nonconservation
A mass m, = 1.00-kg is sitting on
a plane inclined at an angle of 0
= 60° from the horizontal and is
also attached to a pulley which
connects m, to freely hanging
mass
m2
2.00-kg.
The
coefficient of kinetic friction
between m, and the incline is u
= 0.27. Assuming the masses are
released
from
rest,
use
work/energy arguments to find
their final speed after they travel
for a distance d =
1.00-m.
Transcribed Image Text:2. Energy Nonconservation A mass m, = 1.00-kg is sitting on a plane inclined at an angle of 0 = 60° from the horizontal and is also attached to a pulley which connects m, to freely hanging mass m2 2.00-kg. The coefficient of kinetic friction between m, and the incline is u = 0.27. Assuming the masses are released from rest, use work/energy arguments to find their final speed after they travel for a distance d = 1.00-m.
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