Q1. Not from book. For the pulley system shown below, determine the vertical accelerations of the two masses A and B, whose masses are, respectively, m1 and m2. The pulleys and ropes are massless, frictionless and the roles are thin and inextensible. Given m¡ = 10 kg, m2 = 10 kg, and g = 9.81 m/s?. Be clear in your notation whether downwards is positive or negative. Hint: In addition to FBD and "F = ma," you will need a relation between the accelerations of A and B due to their being connected. Recall "constrained motion" and we derived this exact relation in class. Re-do the derivation here and use it. -ropez ropel. (m.) (ma)

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Please help. This problem involves finding the acceleration of masses attached to pulleys. Thank you.

Q1. Not from book. For the pulley system shown below, determine the vertical accelerations of
the two masses A and B, whose masses are, respectively, m1 and m2. The pulleys and ropes are
massless, frictionless and the roles are thin and inextensible. Given m, = 10 kg, m2 =
= 9.81 m/s?. Be clear in your notation whether downwards is positive or negative.
10 kg, and g
Hint: In addition to FBD and "F = ma," you will need a relation between the accelerations of A and
B due to their being connected. Recall "constrained motion" and we derived this exact relation in
class. Re-do the derivation here and use it.
%3D
ropez
ropel,
A
(m.)
(ma)
Transcribed Image Text:Q1. Not from book. For the pulley system shown below, determine the vertical accelerations of the two masses A and B, whose masses are, respectively, m1 and m2. The pulleys and ropes are massless, frictionless and the roles are thin and inextensible. Given m, = 10 kg, m2 = = 9.81 m/s?. Be clear in your notation whether downwards is positive or negative. 10 kg, and g Hint: In addition to FBD and "F = ma," you will need a relation between the accelerations of A and B due to their being connected. Recall "constrained motion" and we derived this exact relation in class. Re-do the derivation here and use it. %3D ropez ropel, A (m.) (ma)
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