series of compound levers is used as weighbridge. If a mass of 14.4kg is placed on the pan P and it is required that x = 475mm to balance the beam ABC, determine the mass (in 1 decimal digit of a kg) of the truck. There are pins at all points lettered. Take EF - 0. 2m, FD = 3m, KG = GH = 7m, and HI = KJ - 0.2m. 2nd question (answer in Bonus problem e): Is it necessary for the truck to be symmetrically placed on the scale? Explain. JKG & GHI are INDEPENDENT of EACH OTHER.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A series of compound levers is used as weighbridge. If a mass of 14.4kg is placed on the pan P and it is required that x = 475mm to balance the beam ABC, determine the mass (in 1 decimal digit of a kg) of the truck. There are pins at all points lettered. Take EF - 0. 2m, FD = 3m, KG = GH = 7m, and HI = KJ - 0.2m.

2nd question (answer in Bonus problem e): Is it necessary for the truck to be symmetrically placed on the scale? Explain. JKG & GHI are INDEPENDENT of EACH OTHER.

A series of compound levers is used as weighbridge. If a mass of 14.4kg is placed on the pan Pand it is required that x 475mm to balance the beam ABC, determine the mass lin 1 decimal digit of
a kgl of the truck. There are pins at all points lettered. Take EF - 0. 2m, FD = 3m, KG - GH = 7m, and HI - KJ - 0.2m.
2nd question Janswer in Bonus problem e): Is it necessary for the truck to be symmetrically placed on the scale? Explain. JKG & GHI are INDEPENDENT of EACH OTHER
02m
Transcribed Image Text:A series of compound levers is used as weighbridge. If a mass of 14.4kg is placed on the pan Pand it is required that x 475mm to balance the beam ABC, determine the mass lin 1 decimal digit of a kgl of the truck. There are pins at all points lettered. Take EF - 0. 2m, FD = 3m, KG - GH = 7m, and HI - KJ - 0.2m. 2nd question Janswer in Bonus problem e): Is it necessary for the truck to be symmetrically placed on the scale? Explain. JKG & GHI are INDEPENDENT of EACH OTHER 02m
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