Ball and Runner: Catching at the Bottom of a Building

AI Thread Summary
A ball is thrown from a 25m tall building with an initial speed of 12m/s, and a person on the ground, 31m away, needs to catch it. To determine the average speed required for the person to catch the ball, the time it takes for the ball to hit the ground must be calculated using kinematic equations. The relevant equations include V^2 = V_initial^2 + 2ax and y = V_initial * t + 0.5 * a * t^2. The discussion emphasizes the importance of correctly applying these equations and paying attention to the signs of velocity and acceleration. Accurate calculations will yield the average speed needed for the person to reach the building in time to catch the ball.
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Homework Statement



A ball is thrown from top of a 25m tall building. The balls initail speed is 12m/s. At the same instant a person is running on the ground at the distance of 31m from the building. What must be the avg speed of the person if he is to catch the ball at the bottem of the building?

Homework Equations


Ball
V initial = +12m/s
x= 25m
t=?
a= -9.8m/s^2

so i use the equation V^2=Vinti^2+ax to find the final v
and then use the Vfinal= v initial+at to find the time the ball hits the ground
and use this time to find the avg velocity of the boy running to the building

The Attempt at a Solution


Am i taking the right steps thank you
 
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Do you need the final velocity?
You know Vinit and distance - you want time
What's the motion equation for distance/time/Vinit ?

ps V^2=Vinti^2+2ax by the way.
 
mgb_phys said:
Do you need the final velocity?
You know Vinit and distance - you want time
What's the motion equation for distance/time/Vinit ?

ps V^2=Vinti^2+2ax by the way.

do i use the equa y=vinitial t +.5 at^2
 
Yes, watch the signs of v and a
 
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