The Thrust SSC car raised the world land speed record in 1997. The mass of the car was 1.0 x 10 kg. A 12 s run by the car may be considered in two stages of constant acceleration. Stage one was from O to 4.0 s and stage two 4.0 s to 12 s. (i) In stage one the car accelerates from rest to 44 m s- in 4.0 s. Calculate the acceleration produced and the force required to accelerate the car. In stage two the car continued to accelerate so that it reached (ii) 280 m s- in a further 8.0 s. Calculate the acceleration of the car during stage two. (ii) Calculate the distance travelled by the car from rest to reach a speed of 280 ms-.

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(c)
The Thrust SSC car raised the world land speed record in 1997. The
mass of the car was 1.0 x 10 kg. A 12 s run by the car may be
considered in two stages of constant acceleration. Stage one was from
O to 4.0 s and stage two 4.0 s to 12 s.
(i) In stage one the car accelerates from rest to 44 m s in 4.0 s.
Calculate the acceleration produced and the force required to
accelerate the car.
(ii) In stage two the car continued to accelerate so that it reached
280 m s- in a further 8.0 s. Calculate the acceleration of the car
during stage two.
(iii)
Calculate the distance travelled by the car from rest to reach a
speed of 280 ms.
Transcribed Image Text:(c) The Thrust SSC car raised the world land speed record in 1997. The mass of the car was 1.0 x 10 kg. A 12 s run by the car may be considered in two stages of constant acceleration. Stage one was from O to 4.0 s and stage two 4.0 s to 12 s. (i) In stage one the car accelerates from rest to 44 m s in 4.0 s. Calculate the acceleration produced and the force required to accelerate the car. (ii) In stage two the car continued to accelerate so that it reached 280 m s- in a further 8.0 s. Calculate the acceleration of the car during stage two. (iii) Calculate the distance travelled by the car from rest to reach a speed of 280 ms.
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