Our atmosphere is not homogenous. At different levels, the composition of air changes. According to its refractive index also changes. The Refractive index fluctuates as the composition of the atmosphere is slightly variable. The twinkling of a star occurs due to the atmospheric refraction of starlight. The light from the stars is feeble as it comes from very, very long distances. On entering the earth's atmosphere. It undergoes refraction through various layers of the atmosphere continuously before it reaches the earth.
Read again
Our atmosphere is not homogenous. At different levels, the composition of air changes. According to its refractive index also changes. The Refractive index fluctuates as the composition of the atmosphere is slightly variable. The twinkling of a star occurs due to the atmospheric refraction of starlight. The light from the stars is feeble as it comes from very, very long distances. On entering the earth's atmosphere.it undergoes refraction through various layers of the atmosphere continuously before it reaches the earth
Read Again in deep
Our atmosphere is not homogenous. At different levels, the composition of air changes. According to its refractive index also changes. The Refractive index fluctuates as the composition of the atmosphere is slightly variable. The twinkling of a star occurs due to the atmospheric refraction of starlight. The light from the stars is feeble as it comes from very, very long distances. On entering the earth's atmosphere.it undergoes refraction through various layers of the atmosphere continuously before it reaches the earth
Our atmosphere is not homogenous. At different levels, the composition of air changes. According to its refractive index also changes. The Refractive index fluctuates as the composition of the atmosphere is slightly variable. The twinkling of a star occurs due to the atmospheric refraction of starlight. The light from the stars is feeble as it comes from very, very long distances. On entering the earth's atmosphere. It undergoes refraction through various layers of the atmosphere continuously before it reaches the earth.
Read again
Our atmosphere is not homogenous. At different levels, the composition of air changes. According to its refractive index also changes. The Refractive index fluctuates as the composition of the atmosphere is slightly variable. The twinkling of a star occurs due to the atmospheric refraction of starlight. The light from the stars is fragile as it comes from very, very long distances. On entering the earth's atmosphere.it undergoes refraction through various layers of the atmosphere continuously before it reaches the earth
Read Again in deep
Our atmosphere is not homogenous. At different levels, the composition of air changes. According to its refractive index also changes. The Refractive index fluctuates as the composition of the atmosphere is slightly variable. The twinkling of a star occurs due to the atmospheric refraction of starlight. The light from the stars is fragile as it comes from very, very long distances. On entering the earth's atmosphere. It undergoes refraction through various layers of the atmosphere continuously before it reaches the earth.
Our atmosphere is not homogenous. At different levels, the composition of air changes. According to its refractive index also changes. The Refractive index fluctuates as the composition of the atmosphere is slightly variable. The twinkling of a star occurs due to the atmospheric refraction of starlight. The light from the stars is fragile as it comes from very, very long distances. On entering the earth's atmosphere. It undergoes refraction through various layers of the atmosphere continuously before it reaches the earth.
The planets are much closer to the earth and, therefore, they appear bigger in size.
that is why the stars twinkle and planets do
Caption
not
the planets are much
the planets are much closer to the earth and, therefore, they appear bigger in size.
that is why the stars twinkle and planets do
Caption
not
the planets are much closer to the earth and, therefore, they appear bigger in size.
that is why the stars twinkle and planets do
Caption
not
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