Physics Kinematics of a rock drop

In summary, the question involves finding the height of a sea cliff given that a rock is dropped and the sound of it striking the ocean is heard 3.2 seconds later, with the speed of sound being 340 m/s. After discussing various approaches to solving the problem, the final solution is found to be 46.02m.
  • #1
jai6638
263
0
Hey... need some help with this quesiton:

A rock is dropped from a sea cliff and the sound of it striking the ocean is heard 3.2 seconds later. Ifthe speed of sound is 340 m/s, how high is the cliff?

multiplying 3.2 by 340 gets me 1088 m which doesn't seem right.

How do I go about solving this problem?


Thanks much.
 
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  • #2
That does not seem right. The question seems rather ambiguous as to whether they mean 3.2 seconds after the rock strikes the ocean or after it is dropped. Try it the other way; 3.2 seconds after the rock is dropped
 
Last edited:
  • #3
There was already a thread on this. Try searching.
 
  • #4
I read the other thread but I still don't get it.

H(t) = -4.9t^2+ h0

I do not know h0 so that remains an unknown. IF I add that to v/h then I am going to have quite a few unknowns.
 
  • #5
Is h0 the initial speed? If so, shouldn't it be zero?
 
  • #6
H0 is imo the initial height.

If h0 = 0 ,

H= (-4.9)(3.2) = 15.68 m

H+ (v/h) = 15.68 + ( 340/15.68) = 37.36 m

Is that correct?
 
  • #7
haha are you in my class?

number 47 right Maccully
 
  • #8
haha are you in my class?

number 47 right Maccully

huh...? what's 47? This is from the Giancoli book by Prentice Hall.
 
  • #9
its number 47, in the book
 
  • #10
probably is.. dunno... anyhow, still need the answer.. got a test tomorrow on this chapter :(
 
  • #11
Time spent falling + time for sound to travel up cliff = 3.2s

To work out the time spent falling reaarange your equation of motion
[tex]x=ut+\frac{1}{2}at^2[/tex]
[tex]u=0[/tex]
[tex]x=\frac{1}{2}at^2[/tex]
[tex]t=\sqrt{\frac{2x}{a}}[/tex]
The time for the sound to travel up the cliff is x/v, so your equation is:
[tex]\sqrt{\frac{2x}{a}} + \frac{x}{v} = 3.2[/tex]
which has a solution at 46.02m
 

1. What is the definition of kinematics?

Kinematics is the study of motion of objects without considering the forces that cause the motion.

2. How is kinematics related to the physics of a rock drop?

Kinematics is essential in understanding the motion of a rock as it falls due to gravity. It helps us analyze the speed, acceleration, and displacement of the rock as it drops.

3. What is the difference between speed and velocity?

Speed is the rate at which an object moves, while velocity is the rate at which an object changes its position in a specific direction. In other words, velocity takes into account the direction of motion, while speed does not.

4. How can we calculate the acceleration of a rock as it drops?

The acceleration of an object is equal to the change in its velocity divided by the time taken for that change to occur. In the case of a rock drop, the acceleration due to gravity is constant, and can be calculated using the formula a = g = 9.8 m/s^2.

5. What is the significance of studying the kinematics of a rock drop?

Understanding the kinematics of a rock drop allows us to predict the motion of falling objects and calculate various parameters such as speed, acceleration, and displacement. This knowledge is essential in fields such as engineering and physics, and has practical applications in activities like skydiving and bungee jumping.

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