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 In a H-like sample electrons make transition from 4th excited state to 2nd state then
  • a)
    10 different spectral lines are observed
  • b)
    6 different spectral lines are observed               
  • c)
    number of lines belonging to the balmier series is 3               
  • d)
    Number of lines belonging to paschen series is 2.
Correct answer is option 'B,C,D'. Can you explain this answer?
Most Upvoted Answer
In a H-like sample electrons make transition from 4th excited state to...
Explanation:

When an electron moves from a higher energy level to a lower energy level, it emits electromagnetic radiation in the form of photons. These photons have a specific wavelength or frequency, which corresponds to a specific color or spectral line.

In a hydrogen-like sample, the energy levels are determined by the equation:

E_n = -13.6/n^2 * Z^2

where E_n is the energy of the nth level, Z is the atomic number, and n is the principal quantum number (n=1 corresponds to the ground state).

Given that an electron makes a transition from the 4th excited state to the 2nd state, let's calculate the energy difference between these two levels:

ΔE = E_4 - E_2
ΔE = (-13.6/4^2 * Z^2) - (-13.6/2^2 * Z^2)
ΔE = -0.85 * Z^2 eV

where ΔE is the energy difference in electron volts.

Now, we can use the Rydberg formula to calculate the wavelengths of the emitted photons:

1/λ = RZ^2(1/n_2^2 - 1/n_1^2)

where λ is the wavelength in meters, R is the Rydberg constant (1.097 x 10^7 m^-1), and n_1 and n_2 are the initial and final quantum numbers, respectively.

Let's plug in the values for our transition (n_1=4, n_2=2) and solve for λ:

1/λ = RZ^2(1/2^2 - 1/4^2)
λ = 6.56 x 10^-7 m

This corresponds to a spectral line in the visible region of the electromagnetic spectrum, specifically in the red part of the spectrum.

Now let's address the options:

a) 10 different spectral lines are observed
This is not true, as there is only one transition from the 4th to the 2nd level, resulting in one spectral line.

b) 6 different spectral lines are observed
This is also not true, as there is only one spectral line.

c) number of lines belonging to the Balmer series is 3
The Balmer series corresponds to transitions from higher levels to the second level (n=2). The transition we are considering (from n=4 to n=2) is indeed part of the Balmer series, so this statement is true.

d) Number of lines belonging to Paschen series is 2
The Paschen series corresponds to transitions from higher levels to the third level (n=3). The transition we are considering is not part of the Paschen series, so this statement is false.

Therefore, the correct options are b), c), and d).
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Community Answer
In a H-like sample electrons make transition from 4th excited state to...
4th excited state means electron are in 5th shell and 2nd state means in 2nd shell
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The only electron in the hydrogen atom resides under ordinary conditions on the first orbit. When energy is supplied, the electron moves to higher energy orbit depending on the amount of energy absorbed. When this electron returns to any of the lower orbits, it emits energy. Lyman series is formed when the electron returns to the lowest orbit while Balmer series is formed when the electron returns to second orbit. Similarly, Paschen, Brackett and Pfund series are formed when electron returns to the third, fourth and fifth orbits from higher energy orbits respectively. Maximum number of lines produced when an electron jumps from nth level to ground level is equal to . For examle, in the case of n = 4, number of lines produced is 6. (4 3, 4 2, 4 1, 3 2, 3 1, 2 1). When an electron returns from n2 to n1 state, the number of lines in the spectrum will be equal toIf the electron comes back from energy level having energy E2 to energy level having energy E1, then the difference may be expressed in terms of energy of photon as :Since h and c are constants, E corresponds to definite energy; thus each transition from one energy level to another will produce a light of definite wavelength. This is actually observed as a line in the spectrum of hydrogen atom.Wave number of line is given by the formulawhere R is a Rydbergs constant(R = 1.1 107 m-1)Q.In a collection of Hatom, electrons make transition from 5th excited state to 2nd excited state then maximum number of different types of photons observed are

In a H-like sample electrons make transition from 4th excited state to 2nd state thena)10 different spectral lines are observedb)6 different spectral lines are observedc)number of lines belonging to the balmier series is 3d)Number of lines belonging to paschen series is 2.Correct answer is option 'B,C,D'. Can you explain this answer?
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In a H-like sample electrons make transition from 4th excited state to 2nd state thena)10 different spectral lines are observedb)6 different spectral lines are observedc)number of lines belonging to the balmier series is 3d)Number of lines belonging to paschen series is 2.Correct answer is option 'B,C,D'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about In a H-like sample electrons make transition from 4th excited state to 2nd state thena)10 different spectral lines are observedb)6 different spectral lines are observedc)number of lines belonging to the balmier series is 3d)Number of lines belonging to paschen series is 2.Correct answer is option 'B,C,D'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for In a H-like sample electrons make transition from 4th excited state to 2nd state thena)10 different spectral lines are observedb)6 different spectral lines are observedc)number of lines belonging to the balmier series is 3d)Number of lines belonging to paschen series is 2.Correct answer is option 'B,C,D'. Can you explain this answer?.
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