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Sauron [17]
3 years ago
7

Suppose you throw a small rock over a lake so that it sails over the surface of the water. The rock has a mass of 0.090 kg and i

s initially moving at 8.0 m/s. How much net force does it take to bring the rock to a stop in 1.00 s?
A. 89 N

B. 0.120 N

C. 0.72 N

D. 0.011 N
Physics
2 answers:
boyakko [2]3 years ago
4 0

The answer is C. 0.72 N.

LenaWriter [7]3 years ago
3 0
M = 0.09 kg
v o = 8 m / s
v = v o - a t
v = 0 m/s ( velocity is zero when the rock stops )
0 = 8 - a * 1
a = 8 m/s²
F = m * a
F = 0.09 kg * 8 m/s² = 0.72 N
Answer: C ) 0.72 N 
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The distance travelled by the ball that is thrown horizontally from a window that is 15.4 meters high at a speed of 3.01 m/s is 5.34 m

s = ut + 1 / 2 at²

s = Distance

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a = Acceleration

Vertically,

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15.4 = 0 + ( 1 / 2 * 9.8 * t² )

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Horizontally,

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Given the distance traveled and time elapsed, the average speed of the train is approximately 26.944m/s.

<h3>What is the average speed of the train?</h3>

Speed is simply referred to as distance traveled per unit time.

Mathematically, Speed = Distance ÷ time.

Given the data in the question;

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First we convert miles to meters and Hours minutes to seconds.

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