A 16.1 kg mass is connected to a nail on a frictionless table by a massless string 2.9 m long. There is no appreciable friction between the nail and the string.If the tension in the string is 96.5 N while the mass moves in a uniform circle on the table, how long does it take for the mass to make one complete revolution in seconds?
A 16.1 kg mass is connected to a nail on a frictionless table by a massless string 2.9 m long. There is no appreciable friction between the nail and the string.If the tension in the string is 96.5 N while the mass moves in a uniform circle on the table, how long does it take for the mass to make one complete revolution in seconds?
Related questions
Question
#05

Transcribed Image Text:A 16.1 kg mass is connected to a nail ona fictionless table by a massless string 2.9 m long. There is no
appreciable friction between the nail and the string. If the tension in the string is 96.5 N while the mass moves in
a uniform circle on the table, how long does it take for the mass to make one complete revolution in seconds?
Expert Solution

This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
Step by step
Solved in 2 steps
