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yKpoI14uk [10]
2 years ago
12

An astronaut is standing on the surface of a planet that has a mass of 6.42×1023 kg and a radius of 3397 km. The astronaut fires

a 2.6-g bullet straight up into the air with an initial velocity of 406 m/s. What is the greatest height the bullet will reach? The planet has no atmosphere
Physics
1 answer:
nikitadnepr [17]2 years ago
5 0

Answer:

Height = 11.975 km

Explanation:

As we know… g = Gm/r^{2} so, by substituting the values requires

g = Gm/r2 = 6.673 x 10^-11 x 6.42 x 10^23 / (3397000 m)2 = 3.71 ms-1

P.E = K.E so, mgh = 1/2m v^{2}

h = v^{2}/2g = (406)2 / 2(3.71) = 11976 m or 11.975 km

The bullet will travel a maximum height of 11.975 km vertically upward applying assumption of no atmosphere on the planet…

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<h3><u>Answer</u>;</h3>

= 22°

<h3><u>Explanation</u>;</h3>
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2 years ago
You are driving on the highway, and you come to a steep downhill section. As you roll down the hill, you take your foot off the
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Answer:

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Two swift canaries fly toward each other, each moving at 15.0 m/s relative to the ground, each warbling a note of frequency 1750
lesya692 [45]

Answer:

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f = 1911.5 Hz

Part b)

\lambda = 0.186 m

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v_s = 15 m/s

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Part b)

Apparent wavelength is given by the formula

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here we will have

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6.096 \ m = 0 \times t +\frac{1}{2} \times 9.8 m/s^2 (t)^2 \\\\\ t = 1.12 \ s

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Summary:
m=1kg
a=8 m/s^2
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I hope to help you

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