An object of mass m₁ = 4.00 kg is tied to an object of mass m₂ = 3.20 kg with String 1 of length = 0.500 m. The combination is swung 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 the figure. At the top of its motion, m₂ is traveling at v= 6.10 m/s. String 1 String 2 e (a) What is the tension in String 1 at this instant? Enter a number. 5 of m₂ affect the force needed to make m₁ travel in a circle? N (b) What is the tension in String 2 at this instant? N (c) Which string will break first the combination is rotated faster and faster? O string 1 O string 2

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An object of mass m₁ = 4.00 kg is tied to an object of mass m₂ = 3.20 kg with String 1 of length = 0.500 m. The combination is swung 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 the figure. At the top of its motion, m₂ is traveling at v = 6.10 m/s.
m₁
String 1
String
m₂
(a) What is the tension in String 1 at this instant?
X
Enter a number. 5 of m₂ affect the force needed to make m₁ travel in a circle? N
(b) What is the tension in String 2 at this instant?
N
(c) Which string will break first if the combination is rotated faster and faster?
string 1
O string 2
Transcribed Image Text:An object of mass m₁ = 4.00 kg is tied to an object of mass m₂ = 3.20 kg with String 1 of length = 0.500 m. The combination is swung 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 the figure. At the top of its motion, m₂ is traveling at v = 6.10 m/s. m₁ String 1 String m₂ (a) What is the tension in String 1 at this instant? X Enter a number. 5 of m₂ affect the force needed to make m₁ travel in a circle? N (b) What is the tension in String 2 at this instant? N (c) Which string will break first if the combination is rotated faster and faster? string 1 O string 2
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