A 16 b a m₂ = 2.00 kg. 37 Two blocks are connected by a string and are pulled vertically upward by a force of 165 N applied to the upper block, as shown in Fig. 4-42. (a) Find the tension 7 in the string connecting the blocks. (b) If the blocks start from rest, what is their velocity after having moved a distance of 10.0 cm? F 165 N 2.00 kg U T M 1.00 kg Fig. 4-42 I ✩ E AA

Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
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Chapter5: The Laws Of Motion
Section: Chapter Questions
Problem 3P: A 3.00-kg object undergoes an acceleration given by a=(2.00i+5.00j)m/s2. Find (a) the resultant...
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A 16
b
a
m₂ = 2.00 kg.
37 Two blocks are connected by a string and are pulled
vertically upward by a force of 165 N applied to the
upper block, as shown in Fig. 4-42.
(a) Find the tension 7 in the string connecting the
blocks.
(b) If the blocks start from rest, what is their velocity
after having moved a distance of 10.0 cm?
F
165 N
2.00 kg
U
T
M
1.00 kg
Fig. 4-42
I
✩
E
AA
Transcribed Image Text:A 16 b a m₂ = 2.00 kg. 37 Two blocks are connected by a string and are pulled vertically upward by a force of 165 N applied to the upper block, as shown in Fig. 4-42. (a) Find the tension 7 in the string connecting the blocks. (b) If the blocks start from rest, what is their velocity after having moved a distance of 10.0 cm? F 165 N 2.00 kg U T M 1.00 kg Fig. 4-42 I ✩ E AA
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