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Juli2301 [7.4K]
4 years ago
13

The Sun formed when a rotating cloud of gas and dust that was bigger than the present solar system contracted under the influenc

e of its own gravity. According to conservation of angular momentum, as the cloud shrunk in size, its rotation period (i.e., the time needed to rotate once around its axis):
Physics
1 answer:
stepladder [879]4 years ago
7 0

Answer:

decreased

Explanation:

As we know that the low density cloud of interstellar gas and dust is called nebula.

In initial positions cloud particles were randomly moving but nebula still had net rotation. With the proceeding collapse the rotational speed of the clouds increased thus it's orientation period decreased.

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How far does a runner run if he runs for 60 seconds at 5 m/s
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Explanation:

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How much energy is consumed by a 12 W night light left on for 10 hr?
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Ted wants to hang a wall clock on the wall by using a string. If the mass of the wall clock is 0. 250 kilograms, what should be
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7 0
2 years ago
A runner starts from rest and in 3 s reaches a speed of 8 m/s. If we assume that the speed changed at a constant rate (constant
Stells [14]

Answer:

The average speed of the runner is 4 m/s.

Explanation:

Hi there!

The average speed (a.s) is calculated by dividing the traveled distance (d) over the time needed to travel that distance (t):

a.s = d / t

So, let´s find the distance traveled in those 3 s. For that, we can use the equation of position of an object moving in a straight line with constant acceleration:

x = x0 + v0 · t + 1/2 · a · t²

Where:

x = position of the object at time t.

x0 = initial position.

v0 = initial velocity.

t = time.

a = acceleration.

If we place the origin of the frame of reference at the point where the runner starts, then, x0 = 0. Since the runner starts from rest, v0 = 0. So, the equation gets reduced to this:

x = 1/2 · a · t²

We have the time (3 s), so let´s find the acceleration. For that, we can use the equation of velocity of an object moving in a straight line with constant acceleration:

v = v0 + a · t

Where "v" is the velocity at a time "t". Since v0 = 0, then:

v = a · t

At t = 3 s, v = 8 m/s

8 m/s = a · 3 s

8/3 m/s² = a

So let´s find the position of the runner at t = 3 s (In this case, the position of the runner will be equal to the traveled distance):

x = 1/2 · a · t²

x = 1/2 · 8/3 m/s² · (3 s)²

x = 12 m

Now, we can calcualte the average speed:

a.s = d/t

a.s = 12 m / 3 s

a.s = 4 m/s

The average speed of the runner is 4 m/s.

4 0
3 years ago
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