A train travelling at 30km/h stops when it's brakes are applied. The train suffers a deceleration our 2m/s.

@. How long does the train take to come to rest?
b) what is its final velocity?

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To find the time it takes for the train to come to rest, we can use the equation:

v = u + at

where v is the final velocity, u is the initial velocity, a is the acceleration, and t is the time taken.

In this case, the initial velocity (u) is 30 km/h, which we need to convert to m/s. To convert km/h to m/s, simply divide by 3.6:

u = 30 km/h / 3.6 = 8.33 m/s

The acceleration (a) is -2 m/s² (negative because it is deceleration).

The final velocity (v) is 0 m/s since the train comes to rest.

Substituting these values into the equation, we have:

0 = 8.33 m/s + (-2 m/s²) * t

Simplifying the equation:

-8.33 m/s = -2 m/s² * t

Dividing both sides of the equation by -2 m/s²:

t = -8.33 m/s / -2 m/s²

t = 4.165 s

Therefore, the train takes approximately 4.165 seconds to come to rest.

To find the final velocity (v), we can use the formula:

v = u + at

Using the same values for u, a, and t as before:

v = 8.33 m/s + (-2 m/s²) * 4.165 s

v = 8.33 m/s - 8.33 m/s

v = 0 m/s

Therefore, the final velocity of the train is 0 m/s.