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When an electron jumps from the fourth orbit tothe second orbit, one gets the      [2000]
  • a)
    second line of Lyman series
  • b)
    second line of Paschen series
  • c)
    second line of Balmer series
  • d)
    first line of Pfund series
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
When an electron jumps from the fourth orbit tothe second orbit, one g...
When the electron drops from any orbit to
second orbit, then wavelength of line
obtained belongs to Balmer series.
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Most Upvoted Answer
When an electron jumps from the fourth orbit tothe second orbit, one g...
Explanation:

When an electron jumps from a higher energy level to a lower energy level, it releases energy in the form of light. This light can be observed as a spectral line. The spectral lines can be classified into different series depending on the energy levels involved.

Balmer series

The Balmer series is a set of spectral lines emitted by excited hydrogen atoms when the electron falls from a higher energy level to the second energy level. The Balmer series lies in the visible region of the electromagnetic spectrum. The Balmer series is given by the formula:

λ = RH (1/22 - 1/n2)

where λ is the wavelength of the spectral line, RH is the Rydberg constant, and n is an integer greater than 2.

Answer:

When an electron jumps from the fourth orbit to the second orbit, it releases energy in the form of light, which corresponds to the second line of the Balmer series. Therefore, the correct answer is option 'C'.
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