A 2.2 tonne racing car has a wheel base of 2.4 m and a track of 1.4 m from the rear axle. The equiva- lent mass of engine parts is 140 kg with radius of gyration of 150 mm. The back axle ratio is 5. The engine shaft and flywheel rotate clockwise when viewed from the front. Each wheel has a diameter of 0.8 m and a moment of inertia of 0.7 kg-m². Determine the load distribution on the wheels when the car is rounding a curve of 100 m radius at a speed of 72 km /h to the left. 14.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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couple action, determine the pressure on each rail.
A 2.2 tonne racing car has a wheel base of 2.4 m and a track of 1.4 m from the rear axle. The equiva-
lent mass of engine parts is 140 kg with radius of gyration of 150 mm. The back axle ratio is 5. The
engine shaft and flywheel rotate clockwise when viewed from the front. Each wheel has a diameter of
0.8 m and a moment of inertia of 0.7 kg-m?. Determine the load distribution on the wheels when the
car is rounding a curve of 100 m radius at a speed of 72 km/h to the left.
A disc has a mass of 30 kg and a radius of gyration about its axis of symmetry 125 mm while its radius
JAns. 4328 N ; 16 704 NJ
14.
15
Transcribed Image Text:couple action, determine the pressure on each rail. A 2.2 tonne racing car has a wheel base of 2.4 m and a track of 1.4 m from the rear axle. The equiva- lent mass of engine parts is 140 kg with radius of gyration of 150 mm. The back axle ratio is 5. The engine shaft and flywheel rotate clockwise when viewed from the front. Each wheel has a diameter of 0.8 m and a moment of inertia of 0.7 kg-m?. Determine the load distribution on the wheels when the car is rounding a curve of 100 m radius at a speed of 72 km/h to the left. A disc has a mass of 30 kg and a radius of gyration about its axis of symmetry 125 mm while its radius JAns. 4328 N ; 16 704 NJ 14. 15
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