body with mass m₁ = kg moves down on an inclined plane with an angle = 45° without friction. The acceleration along the inclined plane is a₁. A second body with mass m₂ = 1.0001 kg moves down on an identical inclined plane and the friction is described by the coefficient of kinetic friction µ = 0.25. The acceleration of the second body along the inclined plane is a2. Identify and draw all the forces. Draw the free-body diagrams for both bodies. Determine the ratio between the two values of acceleration a2/a₁. (You do not w the value for the gravitational acceleration g, the experiment takes place on an nown planet). Show your work. A numerical value is required for (b). OW YOUR WORK means SHOW YOUR WORK starting with Newton's ond Law. Write Newton's Law in SYMBOLS for each body.

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Chapter1: Units, Trigonometry. And Vectors
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2. One body with mass m₁ 1.0000 kg moves down on an inclined plane with an angle
= 45° without friction. The acceleration along the inclined plane is a₁. A second body
with mass m₂ = 1.0001 kg moves down on an identical inclined plane and the friction is
described by the coefficient of kinetic friction Mk = 0.25. The acceleration of the second
body along the inclined plane is a2.
(a)
Identify and draw all the forces. Draw the free-body diagrams for both bodies.
(b) Determine the ratio between the two values of acceleration a2 / a₁. (You do not
know the value for the gravitational acceleration g, the experiment takes place on an
unknown planet). Show your work. A numerical value is required for
(b).
SHOW YOUR WORK means SHOW YOUR WORK starting with Newton's
Second Law. Write Newton's Law in SYMBOLS for each body.
m₁ = 1 kg
m₂ = 1.0001 kg
No friction
0 = 45°
a₁
HK = 0.25
0 = 45°
22
Transcribed Image Text:2. One body with mass m₁ 1.0000 kg moves down on an inclined plane with an angle = 45° without friction. The acceleration along the inclined plane is a₁. A second body with mass m₂ = 1.0001 kg moves down on an identical inclined plane and the friction is described by the coefficient of kinetic friction Mk = 0.25. The acceleration of the second body along the inclined plane is a2. (a) Identify and draw all the forces. Draw the free-body diagrams for both bodies. (b) Determine the ratio between the two values of acceleration a2 / a₁. (You do not know the value for the gravitational acceleration g, the experiment takes place on an unknown planet). Show your work. A numerical value is required for (b). SHOW YOUR WORK means SHOW YOUR WORK starting with Newton's Second Law. Write Newton's Law in SYMBOLS for each body. m₁ = 1 kg m₂ = 1.0001 kg No friction 0 = 45° a₁ HK = 0.25 0 = 45° 22
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