Calculating Time Interval for Ball to Strike Ground | Ball Velocity Question

  • Thread starter Thread starter I am a Newbie
  • Start date Start date
  • Tags Tags
    Ball Velocity
AI Thread Summary
A ball is thrown downward with an initial speed of 7.75 m/s from a height of 30.8 m, and the question is to find the time it takes to hit the ground. The initial attempt to calculate the time using only gravitational acceleration of 9.8 m/s² was incorrect, as it neglected the initial velocity. The ball accelerates at 9.81 m/s², and it's essential to use kinematic equations that account for both initial velocity and acceleration. Participants suggest reviewing constant acceleration equations to solve the problem accurately. Understanding these principles is crucial for correctly determining the time interval for the ball to strike the ground.
I am a Newbie
Messages
4
Reaction score
0

Homework Statement


A ball is thrown directly downward, with an initial speed of 7.75 m/s, from a height of 30.8 m. After what time interval does the ball strike the ground?




The Attempt at a Solution


The way I understand it is that since it is freefalling, it is moving at 9.8m/s towards that ground, thereby I neglected the 7.75m and did 30.8/9.8 = 3.14s..however it is wrong and the similar problem book is even numbered therefore cannot work through it backwards.. Any help?
 
Physics news on Phys.org
I am a Newbie said:

The Attempt at a Solution


The way I understand it is that since it is freefalling, it is moving at 9.8m/s towards that ground, thereby I neglected the 7.75m and did 30.8/9.8 = 3.14s..however it is wrong and the similar problem book is even numbered therefore cannot work through it backwards.. Any help?
I'm afraid that is incorrect; the ball is accelerating at 9.81m/s2 which makes a big difference. I'm assuming that your doing a mechanics course, so which kinematic equations do you know?
 
Actually just in a standard Calc based physics, thereby I have no equations
 
Hint: The ball is moving at a constant acceleration.

You should have plenty of constant acceleration equations in a Calculus based Physics course to relate velocity, displacement, acceleration, and time.

If not, check out these...

http://hyperphysics.phy-astr.gsu.edu/hbase/mot.html

CS
 
Kindly see the attached pdf. My attempt to solve it, is in it. I'm wondering if my solution is right. My idea is this: At any point of time, the ball may be assumed to be at an incline which is at an angle of θ(kindly see both the pics in the pdf file). The value of θ will continuously change and so will the value of friction. I'm not able to figure out, why my solution is wrong, if it is wrong .
TL;DR Summary: I came across this question from a Sri Lankan A-level textbook. Question - An ice cube with a length of 10 cm is immersed in water at 0 °C. An observer observes the ice cube from the water, and it seems to be 7.75 cm long. If the refractive index of water is 4/3, find the height of the ice cube immersed in the water. I could not understand how the apparent height of the ice cube in the water depends on the height of the ice cube immersed in the water. Does anyone have an...
Back
Top