Solve Quadratics: Find Time for Rock Dropped from Washington Monument

  • Thread starter jubbly
  • Start date
In summary, the formula h(t) = -16t^2 + vot + ho can be used to find the approximate time it takes for a rock to hit the ground when dropped from a height of 555 feet, using the complete the square method. However, the value of vo should be 0, not -9.8.
  • #1
jubbly
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0

Homework Statement


A rock is dropped from the Washington Monument which is 555 feet tall. Using the formula h(t) = -16t^2 + vot + ho , find approximately how long it will take for the rock to hit the ground.


Homework Equations


h(t) = -16t^2 + vot + ho


The Attempt at a Solution


I'm doing the complete the square method
0 = -16t^2 - 9.8t + 555
-16t^2-9.8t=-555
-16t^2-9.8t +24.01 = -555-384.16 = -939.16
-16(t-4.9)^2 = -939.16
Divide both sides by 16
(t-4.9)^2 = 58.69
Take the square roots
t-4.9 = sqrt58.69

At this point I'm confused as to how to get a number for the time. If anyone can help it'd be a great! thanks.
 
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  • #2
jubbly said:

Homework Statement


A rock is dropped from the Washington Monument which is 555 feet tall. Using the formula h(t) = -16t^2 + vot + ho , find approximately how long it will take for the rock to hit the ground.


Homework Equations


h(t) = -16t^2 + vot + ho


The Attempt at a Solution


I'm doing the complete the square method
0 = -16t^2 - 9.8t + 555
-16t^2-9.8t=-555
-16t^2-9.8t +24.01 = -555-384.16 = -939.16
-16(t-4.9)^2 = -939.16
Divide both sides by 16
(t-4.9)^2 = 58.69
Take the square roots
t-4.9 = sqrt58.69

At this point I'm confused as to how to get a number for the time. If anyone can help it'd be a great! thanks.
You erroneously put in vo = -9.8, when in fact vo = 0. I think you got velocity (v) and acceleration (g) mixed up. (Incidentally, if you were looking at acceleration, in the ft/sec/sec units, g is 32 ft/sec/sec. That's where the 16 comes from, it was built into the equation already, per the 1/2at^2 term of the kinematic equation).
 

1. How do you solve a quadratic equation?

To solve a quadratic equation, you can use the quadratic formula, factoring, or completing the square. The quadratic formula is the most commonly used method and is written as x = (-b ± √(b^2 - 4ac)) / 2a.

2. How do you find the time for a rock dropped from the Washington Monument?

To find the time for a rock dropped from the Washington Monument, you can use the formula t = √(2h/g), where h is the height of the monument (in meters) and g is the acceleration due to gravity (9.8 m/s^2).

3. What is the Washington Monument?

The Washington Monument is an obelisk located on the National Mall in Washington D.C., dedicated to George Washington, the first president of the United States. It stands at 555 feet and 5 1/8 inches tall and is one of the most iconic landmarks in the city.

4. How do you measure the height of the Washington Monument?

The height of the Washington Monument is measured from the ground to the top of the structure. This can be done using a variety of methods, including laser technology, traditional surveying techniques, or even by scaling the building using specialized equipment.

5. Why is it important to solve for the time of a rock dropped from the Washington Monument?

Solving for the time of a rock dropped from the Washington Monument is important because it allows us to understand the physics involved in the motion of the rock. It also has practical applications, such as predicting the impact of the rock and ensuring the safety of people and structures in the surrounding area.

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