The figure shows a graph of force against distance for a locomotive pushing a carriage along a train track. x (m) Note: Please enter all your answers in this question to full precision. For the case where x:= 330 m x,= 750 m x, =1260 m and Fmax 31000 N, calculate the work done by the locomotive in megajoules for: (a) the part of the journey where the force is increasing (i.e. the first stage): MJ (b) the part of the journey where the force is constant (i.e. the second stage): MJ (c) the part of the journey where the force is decreasing (l.e. the third stage): MJ (d) Calculate the total work done by the locomotive: MJ

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The figure shows a graph of force against distance for a locomotive pushing a carriage along
a train track.
x (m)
Note: Please enter all your answers in this question to full precision.
For the case where x:= 330 m x,= 750 m x, =1260 m and Fmax 31000 N, calculate the work
done by the locomotive in megajoules for:
(a) the part of the journey where the force is increasing (i.e. the first stage): MJ
(b) the part of the journey where the force is constant (i.e. the second stage): MJ
(c) the part of the journey where the force is decreasing (l.e. the third stage): MJ
(d) Calculate the total work done by the locomotive: MJ
Transcribed Image Text:The figure shows a graph of force against distance for a locomotive pushing a carriage along a train track. x (m) Note: Please enter all your answers in this question to full precision. For the case where x:= 330 m x,= 750 m x, =1260 m and Fmax 31000 N, calculate the work done by the locomotive in megajoules for: (a) the part of the journey where the force is increasing (i.e. the first stage): MJ (b) the part of the journey where the force is constant (i.e. the second stage): MJ (c) the part of the journey where the force is decreasing (l.e. the third stage): MJ (d) Calculate the total work done by the locomotive: MJ
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