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valentina_108 [34]
3 years ago
12

What is the force of gravity on Earth?

Physics
1 answer:
Pepsi [2]3 years ago
5 0

Answer:

9.807 m/s²

Explanation:

the force of gravity on Earth 9.807 m/s²

<u>-TheUnknown</u><u>S</u><u>c</u><u>ientist</u>

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For an object to appear red, what must happen?
Lapatulllka [165]

Answer:

<h2><em><u>C. It must reflect red light wavel</u></em></h2>

Explanation:

<em>The color of the object is reflected by the object other colors are absorbed by the object.</em>

Here <em>object appears in red color so red color is reflected by the object and other colors are absorbed.</em>

3 0
3 years ago
Which of the following is an example of Potential Energy?
eduard
Apple on tree branch has potential energy
8 0
3 years ago
A ball is thrown straight up. What can be said about the sign of work done by the force exerted by gravity while the ball moves
dolphi86 [110]

Answer:

I think the answer is E....

5 0
3 years ago
A car and a train move together along straight, parallel paths with the same constant cruising speed v0. At t=0 the car driver n
satela [25.4K]

Answer:

a) t1 = v0/a0

b) t2 = v0/a0

c) v0^2/a0

Explanation:

A)

How much time does it take for the car to come to a full stop? Express your answer in terms of v0 and a0

Vf = 0

Vf = v0 - a0*t

0 = v0 - a0*t

a0*t = v0

t1 = v0/a0

B)

How much time does it take for the car to accelerate from the full stop to its original cruising speed? Express your answer in terms of v0 and a0.

at this point

U = 0

v0 = u + a0*t

v0 = 0 + a0*t

v0 = a0*t

t2 = v0/a0

C)

The train does not stop at the stoplight. How far behind the train is the car when the car reaches its original speed v0 again? Express the separation distance in terms of v0 and a0 . Your answer should be positive.

t1 = t2 = t

Distance covered by the train = v0 (2t) = 2v0t

and we know t = v0/a0

so distanced covered = 2v0 (v0/a0) = (2v0^2)/a0

now distance covered by car before coming to full stop

Vf2 = v0^2- 2a0s1

2a0s1 = v0^2

s1 = v0^2 / 2a0

After the full stop;

V0^2 = 2a0s2

s2 = v0^2/2a0

Snet = 2v0^2 /2a0 = v0^2/a0

Now the separation between train and car

= (2v0^2)/a0 - v0^2/a0

= v0^2/a0

8 0
4 years ago
5. A 4.00 kg object slides down a frictionless inclined plane with an acceleration of 3.00 m/s2. What is the angle of the inclin
Kazeer [188]

Answer:

The angle of the incline above horizontal is 17.81 degrees.

Explanation:

Given that,

Mass of the object, m = 4 kg

Acceleration of the object above the incline, a=3\ m/s^2

We need to find the angle of the incline above horizontal. The net force acting on the object along the incline is given by :

F_{net}=mg\ sin\theta

ma=mg\ sin\theta

a=g\ sin\theta

sin\theta=\dfrac{a}{g}

sin\theta=\dfrac{3}{9.8}

\theta=17.81^{\circ}

So, the angle of the incline above horizontal is 17.81 degrees. Hence, this is the required solution.

5 0
4 years ago
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