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Ber [7]
2 years ago
7

a 20 kg body is taken to a planet where the acceleration due to to gravity is 3 times thst of the earth. what is the weight of t

his body on the surface of thus planet (take g=10m/s2) plzzz​
Physics
1 answer:
zysi [14]2 years ago
4 0
  • Mass (m) = 20 Kg
  • Acceleration due to gravity on the earth (g) = 10 m/s^2
  • Acceleration due to gravity on the planet (g1) = 10 × 3 m/s^2 = 30 m/s^2
  • We know, weight = mass × acceleration due to gravity
  • Therefore, the weight of the body on the surface of the planet
  • = (20 × 30) N
  • = 600 N

<u>Answer</u><u>:</u>

<u>6</u><u>0</u><u>0</u><u> </u><u>N</u>

Hope you could understand.

If you have any query, feel free to ask.

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Explanation:

1)

Refraction occurs when light propagates from a medium into a second medium.

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n=\frac{c}{v}

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Higher index of refraction means higher optical density, and light propagater slower into a medium with higher optical density.

In this problem, light propagates faster through medium "a" than medium "b": this means that medium "a" has lower refractive index of medium "b", and so "b" has more optical density.

2)

We can answer this part by referring to Snell's law, which gives the relationship between the direction of the incident ray and of the refracted ray when light passes through the interface between two media:

n_1 sin \theta_1 = n_2 sin \theta_2

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\theta_1, \theta_2 are the angle of incidence and of refraction (the angle that light makes with the normal to the surface in medium 1 and medium 2)

Here we want the direction of propagation of the light ray not to change: this means that it must be

sin \theta_1 = sin \theta_2 (1)

However, here we have two mediums "a" and "b" with different index of refraction, so

n_1\neq n_2

Therefore the only angle that can satisfy eq.(1) is

\theta_1 = \theta_2 = 0

So, the light must hit the surface perpendicular to the interface between the two mediums.

Learn more about refraction:

brainly.com/question/3183125

brainly.com/question/12370040

#LearnwithBrainly

3 0
3 years ago
Isss in the pic pls help
defon

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