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lesantik [10]
3 years ago
13

Two uniform cylinders have different masses and different rotational inertias. They simultaneously start from rest at the top of

an inclined plane and roll without sliding down the plane. The cylinder that gets to the bottom first is: A) the one with the larger mass B) the one with the smaller mass C) the one with the larger rotational inertia D) the one with the smaller rotational inertia E) neither (they arrive together)
Physics
1 answer:
NARA [144]3 years ago
7 0

Option (E) is correct

Neither (they arrive together)

<u>Explanation:</u>

Neither of the cylinders gets to the bottom first, they both will arrive together. Every object can gain speed with time if it is pushed, it is called the acceleration of that object. It the acceleration that decides which object reaches the bottom first.

Acceleration = I / mr^2.

In the case of both the cylinders, the acceleration will be the same, with the same acceleration they will reach the bottom at the same time.

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Answer:

- They are orbiting the Sun

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Explanation:

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- Asteroids are irregular bodies whose size range from a few km to even a few hundreds of km, that orbit the Sun in an area of the Solar System located between Mars and Jupiter, called "Asteroid belt". They are made mainly of rock and metal debris

So now we  can analyze the statements given:

- They are made of ice: FALSE, because this is only valid for comets

- They are orbiting the Sun: TRUE for both  comets and asteroids

- They are made of metal debris: FALSE, this is only valid for asteroids

- They are small compared to the planets: TRUE for both (the biggest asteroid, Ceres, has a radius of approx 500 km, much smaller than the smallest planet, Mercury)

- They are at the center of the solar system: FALSE for both

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Aspirin is a compound composed of carbon, hydrogen, and oxygen atoms
vekshin1

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A homogeneous Mixture

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Answer:

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where \mu_s is called coefficient of static friction, and it is generally larger than the coefficient of kinetic friction.

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