An small asteroid with a mass of 6.25 x 1014 kg (almost 10 billion times less mass than the Earth) creates a force of 360 N on a nearby spacecraft that has a mass of 7.20 x 105 kg, how far apart are these two objects in km?

Answers

Answer 1
Answer:

The Objects separated by gravitational force of 360 N, masses 6.25 × 10¹⁴ kg and 7.20 × 10⁵ kg. Applying Newton's law with G = 6.67430 × 10⁻¹¹ m³ kg⁻¹ s⁻² yields distance is 2.79139 km.

We can apply Newton's law of universal gravitation to calculate the distance between the two objects. The formula takes the form:

F = (G ⋅ m₁ ⋅ m₂) / r²

Where:

F represents the force between the two objects

G stands for the gravitational constant (6.67430 × 10⁻¹¹ m³ kg⁻¹ s⁻²)

m₁ and m₂ denote the masses of the two objects

r indicates the distance between the centers of the two objects

Given that the force F = 360 N, m₁ = 6.25 × 10¹⁴ kg, and m₂ = 7.20 × 10⁵ kg, we can solve for r:

r² = (G ⋅ m₁ ⋅ m₂) / F

r = √((G ⋅ m₁ ⋅ m₂) / F)

Now, substituting the values and solving for r:

r = √(((6.67430 × 10⁻¹¹ m³ kg⁻¹ s⁻²) ⋅ (6.25 × 10¹⁴ kg) ⋅ (7.20 × 10⁵ kg)) / 360 N)

r ≈ 2791.39 m

Finally, converting the distance from meters to kilometers:

r ≈ 2.79139 km

Consequently, the two objects are approximately 2.79139 kilometers apart.

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Answer 2
Answer: The distance between the asteroid and the spacecraft is 2.3 km.

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Answers

When a wave transfers from one medium to another with different properties, the speed of the wave can change. In this case, we know that the wavelength changes when the wave transfers from the first type of rope to the second type of rope. If the wavelength becomes one-fourth of what it was before the transfer, this means that the second type of rope has a higher wave speed than the first type of rope.

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Determine the kinetic energy of a 1000kg roller coaster car that is moving with a speed of 20.0m/s

Answers

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What is the potential energy of a 1-kilogram ball is thrown into the air with an initial velocity of 30m/sec?

Answers

the ball thrown from height=0
potental energy(PE) =0
kinetic energy(KE) = 0.5mv^2 = 0.5(1)(30^2) = 450

at the highest point the ball does not moved, v=0
potential energy at its maximum
kinetic energy = 0

Energy is conserved then
total energy before = after
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conservation of energy is fun fact
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g=10m/s^2 (assuming)
u=30m/s
height(h)=u^2/2g
=900/20=45m
P.E.=mgh
=1×10×45=450 joules

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B. There would be half as many extraterrestrial civilizations.
C. There would be twice as many extraterrestrial civilizations.
D. There would be four times as many extraterrestrial civilizations.

Answers

The right answer for the question that is being asked and shown above is that: "D. There would be four times as many extraterrestrial civilizations." the effect of doubling the rate of star formation, R*, on the results of the Drake equation is that there would be four times as many extraterrestrial civilizations.

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Answers

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i hope this help. good luck

closed and unsecure circuit


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