The correct answer is
C. Light can pass through Object B faster than it can pass through Object A.
In fact, the index of refraction of a material is defined as:
where c is the speed of light in vacuum and v is the speed of light in the material. Rearranging the equation, we can write the speed of light in the material as:
So we that, the smaller the refractive index n, the greater the speed of light in the material, v. In this problem, object B has lower refractive index than object A, so light travels faster in object B.
2) moon
3) Kuiper Belt object
4) meteor
2. Which explanation of the solar system best fits the observations of the planets and how they orbit the sun?
1) A comet hit the sun and sent off fragments that became the planets.
2) The gravity of a large, massive star passing the sun ripped off blobs of material from it that formed the planets.
3) The planets formed at the center of a collapsing spinning cloud of gas and dust.
4) The sun and planets formed from a collapsing spinning cloud of gas and dust.
Answer:
1: C. Kuiper Belt object
2: D. The sun and planets formed from a collapsing spinning cloud of gas and dust.
Explanation:
I just took the test!!!
Answer:
Therefore the wavelength of the particle is 4.83 m.
Explanation:
Transverse wave: A transverse wave is a moving wave whose direction of wave and oscillation are perpendicular to each other.
Amplitude:The amplitude of a wave is the maximum the distance from its rest position covered by a particle.
Here amplitude (A) = 3.0 cm
The ratio of maximum speed to the speed of the particle is 3.9
The maximum speed of the particle = A×ω
The speed of the particle C= f×λ
Then,
[∵ω=2πf]
m
Therefore the wavelength of the particle is 4.83 m
inertia is the answer haha i'm late
Answer:
Buoyancy or Upthrust
Explanation:
This is an upward force exerted by a fluid that opposes the weight of a partially or fully immersed object.
b. False
Answer:
FALSE
Explanation:
verified answer***
Nuclear energy is released from an atom through one of two processes: nuclear fusion or nuclear fission. In nuclear fusion, energy is released when the nuclei of atoms are combined or fused together. But isn't rapidly release