Finding the distance in an acceleration problem (different)

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The problem involves calculating the stopping distance of a car traveling at 60 km/h when a pink elephant is 0.125 km away. The car decelerates at -5.0 m/s², and the driver takes 20 m to react before braking. To solve the problem, all units should be converted to SI units, and the equations of motion with constant acceleration should be applied. The final velocity when the car stops is zero, and the correct approach involves using the equation v² = v₀² + 2a(x - x₀) to find the stopping distance. The calculated distance from the elephant when the car stops is 77 meters.
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Homework Statement


You are traveling at 60km/h when all of a sudden you see a pink elephant which is 0.125km down the road. Your car can slow down at a rate of -5.0m/s^2. If it takes you 20 m of distance to react and hit the brake, how far will you be from the elephant when you stop?

Homework Equations


D = (V1+V2/2)t
A = V2-V1/T

The Attempt at a Solution


To be honest, I really don't even know where to begin with this problem. I don't even know how to visualize this.

Okay so the break is hit when it's 0.105km away. (0.125 - 20).

Time = Velocity / Acceleration
= 60/-0.03 (5m = 0.005km/s = 0.03km/h)
= 200 hours?

Just from this point I know it's wrong. I can't continue further because I'm already starting off on the wrong foot.

I need some guidance in the RIGHT direction, please & thank you!

Also, the answer is supposed to be 77m.
 
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Take care of the units and dimensions. The acceleration is not 5 m, neither 0.005 km/s, and 0.005 km/s is not 0.03 km/h.

The best thing first when you start to solve a problem to convert all units to Si ones: m, s, kg, and so on.

ehild
 
You need to use the equations for motion with constant acceleration.

Time is the variable you do not know, so use an equation that does not include time: v2=v02+2a(x-x0)

The final velocity (the v on the left side of the equation) will be zero (because you will be stopped). You want to solve for (x-x0) and then try to work it out from there using the distance you travel before braking and the distance you start from the elephant. Also, convert the 60km/hr to meters/second.

I worked the problem and came up with 77m.
 
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