The controlling force F (in N) and r the radius of rotation r (in mm) for a spring loaded governor are related by the expression F = 6r - 144 Each ball has a mass of 20 kg and the extreme radii of ball rotation are 150 mm and 240 mm respectively. The minimum equilibrium speed is
The controlling force F (in N) and r the radius of rotation r (in mm) for a spring loaded governor are related by the expression F = 6r - 144 Each ball has a mass of 20 kg and the extreme radii of ball rotation are 150 mm and 240 mm respectively. The minimum equilibrium speed is
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![The controlling force F (in N) and r the radius of rotation r (in mm) for a spring loaded
governor are related by the expression
F = 6r - 144
Each ball has a mass of 20 kg and the extreme radii of ball rotation are 150 mm and 240 mm
respectively. The minimum equilibrium speed is](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc181f6e9-8999-4bd3-b175-32740a92ea45%2F5c72bdc4-4c94-4906-87b2-fb00a5a6e1a6%2F5vhr2uj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The controlling force F (in N) and r the radius of rotation r (in mm) for a spring loaded
governor are related by the expression
F = 6r - 144
Each ball has a mass of 20 kg and the extreme radii of ball rotation are 150 mm and 240 mm
respectively. The minimum equilibrium speed is
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