Review Constar Two blocks connected by a cord passing over a small, frictionless pulley rest on frictionless planes (the figure (Figure 1)). Part A Which way will the system move when the blocks are released from rest? O the blocks will slide to the left O the blocks will slide to the right Submit Request Answer Part B Figure < 1 of 1> What is the aceleration of the blocks? Express your answer in meters per second squared. 100 kg 50 kg a = m/s2 3.17 Submit Request Answer 30.0° 53.1° Part C What is the tension in the cord?

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I Review | Constants
Two blocks connected by a cord passing over a small,
frictionless pulley rest on frictionless planes (the figure
(Figure 1)).
Part A
Which way will the system move when the blocks are released from rest?
O the blocks will slide to the left
O the blocks will slide to the right
Submit
Request Answer
Part B
Figure
1 of 1
What is the acceleration of the blocks?
Express your answer in meters per second squared.
?
100 kg
50 kg
a =
m/s?
Submit
Request Answer
30.0°
53.1°
Part C
What is the tension in the cord?
Transcribed Image Text:I Review | Constants Two blocks connected by a cord passing over a small, frictionless pulley rest on frictionless planes (the figure (Figure 1)). Part A Which way will the system move when the blocks are released from rest? O the blocks will slide to the left O the blocks will slide to the right Submit Request Answer Part B Figure 1 of 1 What is the acceleration of the blocks? Express your answer in meters per second squared. ? 100 kg 50 kg a = m/s? Submit Request Answer 30.0° 53.1° Part C What is the tension in the cord?
Part C
What is the tension in the cord?
Express your answer in newtons.
?
T =
N
Submit
Request Answer
Transcribed Image Text:Part C What is the tension in the cord? Express your answer in newtons. ? T = N Submit Request Answer
Expert Solution
Step 1

(a)

Let F1 be defined as the downward force due to the block of mass 100 kg, and F2 be defined as the downward force due to the block of mass 50 kg. Therefore,

F1=m1gsin30°F2=m2gsin53.1°

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