The brightness of a star depends on its (color, composition of atmosphere, or distance from earth), and stars that are closer look (brighter, dimmer, or white).(in parentheses is options)

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Answer 1
Answer: The brightness of stars depends on its distance from earth. Stars that are closer look brighter. Star stuff is my favorite thing to learn about because I'm a sweaty nerd, so if you have anymore related questions I'd love to answer them.
Answer 2
Answer:

The apparent brightness of a star depends on how bright it really IS, and also on its distance from Earth.  Just like matches, flashlights, and fireflies, stars that are closer to us look brighter to us.  (Think about the Sun.)


Related Questions

Who gave us close up views of the gas giants and showed us their moons
1. Initial velocity 5m/s, finalvelocity 36km/hr,acceleration 1.25m/s/s.Distance?
2. When the pump removed the air inthe bell, the ballooncontractedexpanded
Which section of the graph represents negative acceleration?
Give an example of each of the terms below write your answer on the line next to the terman element ____________a pure substance ____________a mixture ___________a solution ___________a compound ___________

A place in which there is no matter is called a (n)

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By definition, a region of space that contains no matter at all is a vacuum.

A mixture of oil and water is place in a glass beaker and stirred.which picture depicts what is most likely to happen after the Beaker sits for 3 minutes?

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H, I think. The oil has a lower density than the water, so after the 3 minutes it would float on top of the water.

Molecules have properties that are different than ____________that form them

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Isn't it elements cuz molecules are made only out of elements. So that will be the only right answer that is available. 


Elements because only molecules arw made of elements...i think

A fighter bomber is making a bombing run flying horizontally at 500 knots (256m/s) at an altitude of 100.0m. a) How long will it take for the bomb to hit the ground after it is dropped from the plane?

b) How far will the bomb go over the ground (in the x direction) before it hits the target?

Answers

Answer:

(a) t = 4.52 sec

(b) X = 1,156.49 m

Explanation:

Horizontal Launching

If an object is launched horizontally, its initial speed is zero in the y-coordinate and the horizontal component of the velocity v_o remains the same in time. The distance x is computed as.

\displaystyle x=v_o.t

(a)

The vertical component of the velocity v_y starts from zero and gradually starts to increase due to the acceleration of gravity as follows

v_y=gt

This means the vertical height is computed by

\displaystyle h=h_o-(gt^2)/(2)

Where h_o is the initial height. Our fighter bomber is 100 m high, so we can compute the time the bomb needs to reach the ground by solving the above equation for t knowing h=0

\displaystyle t=\sqrt{(2h_o)/(g)}

\displaystyle t=\sqrt{(2(100))/(9.8)}=4.52\ sec

(b)

We now compute the horizontal distance knowing v_o=256\ m/s

\displaystyle x=(256).(4.52)

X=1,156.49\ m

If a 2,300 kg car is accelerating at 16 m/s^2, what is the force it is producing?

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Force = (mass) x (acceleration)

In order to acceleratethe car at that rate, a force of

                  (2,300 kg) x (16 m/s²) = 36,800 newtons
                                               (about  8,270 pounds ... 4.14 tons !)

has to be coming from somewhere ... presumably from the straining,
screaming, smoking engine under the hood.

The force it might apply to an object it runs into will depend on the
shape and composition of that object.

Rocks are composed of different kinds ofA) soils.
B) sands.
C) minerals.
D) water crystals.

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Answer: C) Minerals

rocks are made up from the makeup of minerals

so my answer is C.)minerals