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s = 1/2 at^2 where a = 32 ft/sec/sec

t = time = 6.27 seconds neglecting air resistance

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A rock falls from a cliff 144 ft high How long does it take the rock to reach the ground?

Assuming the rock is dropped (initial velocity is 0), the time it takes for the rock to reach the ground can be calculated using the formula: time = sqrt(2 * distance / gravity). The acceleration due to gravity is approximately 32 ft/s^2. Plugging in the values, the time it takes for the rock to reach the ground would be approximately 3 seconds.


If A rock is dropped from the top of a 15m tall building. How fast is it moving just before it strikes the ground?

The speed of the rock just before it strikes the ground can be determined using the equation (v = \sqrt{2gh}), where (v) is the speed, (g) is the acceleration due to gravity (approximately 9.81 m/s(^2)), and (h) is the height of the building (15m). Plugging in the values, the speed of the rock just before it strikes the ground would be approximately (17.15 , \text{m/s}).


A 1.50 kg bal is dropped from a roof top 12.0m above the ground How long does the ball take to reach the ground?

The ball will take approximately 1.74 seconds to reach the ground. This can be calculated using the equation ( t = \sqrt{\frac{2h}{g}} ), where ( h = 12.0 , m ) and ( g = 9.81 , m/s^2 ).


What ball is dropped from a treetop 256 feet above the ground How long does it take to hit?

The ball would take approximately 4 seconds to hit the ground, neglecting air resistance. This calculation is based on the constant acceleration due to gravity (9.8 m/s²), assuming the ball is dropped and not thrown.


When You Drop An Object From A Certain Height It Takes Time T To Reach The Ground With No Air Resistance. If You Dropped It From Three Times That Height How Long Would It Take To Reach The Ground?

When an object is dropped from a certain height, the time it takes to reach the ground is independent of the height (assuming no air resistance). Therefore, whether you drop the object from three times the initial height or the original height, it will still take the same time (T) to reach the ground.

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