#22 The figure shows a simple governor operated by two balls and a slotted plate which transmits the motion of the balls to the sleeve. The mass of each ball is 1,2 kg. (i) Determine the mass of the blate and collar so that the height h is 150mm when the governor rotates of 250 r.f.m. (22,75kg) C (ii) Calculate the change in height of the balls when the angular velocity is increased by 75 r.pm (61,25mm) The driving collay at the top of the g a light uniform rod. Find the tension in

Elements Of Electromagnetics
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#22
The figure shows a simple governor
operated by two balls and a slotted
plate which transmits the motion of the
balls to the sleeve. The mass of each
ball is 1,2 kg.
(i) Determine the mass of the blate and
collar so that the height h is 150mm
when the governor rotates af 250 r.f.m.
(22,75kg)
(i) Calculate the change in height of the balls
when the angular velocity is increased by
75 r.p.m (G1,25mm)
h
ii) The driving collay at the top of the governor is linked to each ball by
a light uniform rod. Find the tension in each rod when the geveYROY
a rod and the spinels is 10°
turns at 225 r.p.m., if the angle betrusen
at an orgulay velocity of 250 v7/2m. (ZZ/ N)
Transcribed Image Text:#22 The figure shows a simple governor operated by two balls and a slotted plate which transmits the motion of the balls to the sleeve. The mass of each ball is 1,2 kg. (i) Determine the mass of the blate and collar so that the height h is 150mm when the governor rotates af 250 r.f.m. (22,75kg) (i) Calculate the change in height of the balls when the angular velocity is increased by 75 r.p.m (G1,25mm) h ii) The driving collay at the top of the governor is linked to each ball by a light uniform rod. Find the tension in each rod when the geveYROY a rod and the spinels is 10° turns at 225 r.p.m., if the angle betrusen at an orgulay velocity of 250 v7/2m. (ZZ/ N)
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