A) what is the acceleration of the 4.00 kg crate? B) use Newton’s second law to find the tension T in the rope that connects the two crates. C) Force F has a larger magnitude, use Newton’s second law to calculate the magnitude of the force F. Express answer in Newtons.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter5: Newton's Laws Of Motion
Section: Chapter Questions
Problem 49PQ: A block with mass m1 hangs from a rope that is extended over an ideal pulley and attached to a...
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A) what is the acceleration of the 4.00 kg crate? B) use Newton’s second law to find the tension T in the rope that connects the two crates. C) Force F has a larger magnitude, use Newton’s second law to calculate the magnitude of the force F. Express answer in Newtons.
Two crates, one with mass 4.00 kg and the other with mass
6.00 kg, sit on the frictionless surface of a frozen pond,
connected by a light rope (Figure 1). A woman wearing golf shoes
(so she can get traction on the ice) pulls horizontally on the
6.00 kg crate with a force F that gives the crate an acceleration
of 2.00 m/s².
Figure
4.00 kg
T
6.00 kg
2
1 of 1
L
E
F
Sub
Provide Feed
Transcribed Image Text:Two crates, one with mass 4.00 kg and the other with mass 6.00 kg, sit on the frictionless surface of a frozen pond, connected by a light rope (Figure 1). A woman wearing golf shoes (so she can get traction on the ice) pulls horizontally on the 6.00 kg crate with a force F that gives the crate an acceleration of 2.00 m/s². Figure 4.00 kg T 6.00 kg 2 1 of 1 L E F Sub Provide Feed
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