30. An object of mass m = V 4.00 kg is tied to an object of mass m 3.00 kg with String 1 of length 0.500 m. The combination is swung т String 1 тg String 2 in a vertical circular path on a second string, String 2, of length = 0.500 m. During the motion, the two strings are collinear at all times as shown in Figure P6.30. At the top of its motion, m., is traveling at v = 4.00 m/s. (a) What is the tension in String 1 at this instant? (b) What is the tension in String 2 at this instant? (c) Which string will break first if the combina- Figure P6.30 tion is rotated faster and faster?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter5: More Applications Of Newton’s Laws
Section: Chapter Questions
Problem 47P: Figure P5.47 shows a photo of a swing ride at an amusement park. The structure consists of a...
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30. An object of mass m =
V 4.00 kg is tied to an
object of mass m
3.00 kg with String 1 of
length 0.500 m. The
combination is swung
т
String 1
тg
String 2
in a vertical circular
path on a second string,
String 2, of length =
0.500 m. During the motion, the two strings are collinear at
all times as shown in Figure P6.30. At the top of its motion,
m., is traveling at v = 4.00 m/s. (a) What is the tension in
String 1 at this instant? (b) What is the tension in String 2 at
this instant? (c) Which string will break first if the combina-
Figure P6.30
tion is rotated faster and faster?
Transcribed Image Text:30. An object of mass m = V 4.00 kg is tied to an object of mass m 3.00 kg with String 1 of length 0.500 m. The combination is swung т String 1 тg String 2 in a vertical circular path on a second string, String 2, of length = 0.500 m. During the motion, the two strings are collinear at all times as shown in Figure P6.30. At the top of its motion, m., is traveling at v = 4.00 m/s. (a) What is the tension in String 1 at this instant? (b) What is the tension in String 2 at this instant? (c) Which string will break first if the combina- Figure P6.30 tion is rotated faster and faster?
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