wo blocks, M and M2, are connected by a massless string nat passes over a massless pulley as shown in the figure. M2, hich has a mass of 15.0 kg, rests on a long ramp of angle = 31.0°. Friction can be ignored in this problem. M.

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Chapter1: Units, Trigonometry. And Vectors
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Two blocks, M, and M2, are connected by a massless string
that passes over a massless pulley as shown in the figure. M2,
which has a mass of 15.0 kg, rests on a long ramp of angle
0 = 31.0°. Friction can be ignored in this problem.
M,
M,
Determine the mass m, of block M, for which the two blocks
are in equilibrium (no acceleration).
kg
If the actual mass of M1 is 5.00 kg and the system is allowed
m/s?
to move, what is the acceleration a of the two blocks? A
a =
positive acceleration corresponds to M2 moving up
the incline.
What distance d does block M2 move in 2.00 s?
m
d =
Transcribed Image Text:Two blocks, M, and M2, are connected by a massless string that passes over a massless pulley as shown in the figure. M2, which has a mass of 15.0 kg, rests on a long ramp of angle 0 = 31.0°. Friction can be ignored in this problem. M, M, Determine the mass m, of block M, for which the two blocks are in equilibrium (no acceleration). kg If the actual mass of M1 is 5.00 kg and the system is allowed m/s? to move, what is the acceleration a of the two blocks? A a = positive acceleration corresponds to M2 moving up the incline. What distance d does block M2 move in 2.00 s? m d =
Two blocks of mass M1 and M2 are connected by a massless
string that passes over a massless pulley as shown in the
figure. M1 has a mass of 8.75 kg and rests on an incline of
M2
01 = 63.5°. M2 rests on an incline of 02 33.5°. Find the
%3D
M,
mass of block M2 so that the system is in equilibrium (i.e.,
not accelerating). All surfaces are frictionless.
0,
Figure is not to scale.
kg
M2 =
Transcribed Image Text:Two blocks of mass M1 and M2 are connected by a massless string that passes over a massless pulley as shown in the figure. M1 has a mass of 8.75 kg and rests on an incline of M2 01 = 63.5°. M2 rests on an incline of 02 33.5°. Find the %3D M, mass of block M2 so that the system is in equilibrium (i.e., not accelerating). All surfaces are frictionless. 0, Figure is not to scale. kg M2 =
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