The transition from the state \(n=3\) to \(n=1\) in hydrogen-like atoms results in ultraviolet radiation. Infrared radiation will be obtained in the transition from:
1. \(3\rightarrow 2\)
2. \(4\rightarrow 2\)
3. \(4\rightarrow 3\)
4. \(2\rightarrow 1\)

Subtopic:  Spectral Series |
 78%
From NCERT
AIPMT - 2012
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An electron in the hydrogen atom jumps from the excited state n to the ground state. The wavelength so emitted illuminates a photosensitive material having a work function of 2.75 eV. If the stopping potential of the photoelectron is 10V, then the value of n is:
1. 2
2. 3
3. 4
4. 5

Subtopic:  Bohr's Model of Atom |
From NCERT
AIPMT - 2011
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Out of the following which one is not possible energy for a photon to be emitted by hydrogen atom according to Bohr's atomic model?

1. 0.65 eV

2. 1.9 eV

3. 11.1 eV

4. 13.6 eV

Subtopic:  Bohr's Model of Atom |
 67%
From NCERT
AIPMT - 2011
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The electrons in the hydrogen atom jump from the excited state (n = 3) to its ground state (n = 1) and the photons thus emitted irradiate a photosensitive material. If the work function of the material is 5.1 eV, the stopping potential is estimated to be (the energy of the electron in nth state En=-13.6n2eV):
1. 12.1 V

2. 17.2 V

3. 7 V

4. 5.1 V

Subtopic:  Bohr's Model of Atom |
 67%
From NCERT
AIPMT - 2010
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An electron in hydrogen atom makes a transition \(n_1 \rightarrow n_2\) where \(n_1\) and \(n_2\) are principal quantum numbers of the two states. Assuming Bohr's model to be valid, the time period of the electron in the initial state is eight times that in the final state. The possible values of \(n_1\) and  \(n_2\) are:
1. \( n_1 = 6~\text{and}~n_2 = 2\)
2. \( n_1 = 8~\text{and}~ n_2 = 1\)
3. \( n_1 = 8~\text{and}~ n_2 = 2\)
4. \(n_1 = 4~\text{and}~n_2 = 2\)
Subtopic:  Bohr's Model of Atom |
 64%
From NCERT
NEET - 2013
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The radius of Germanium (Ge) nuclide is measured to be twice the radius of Be49. The number of nucleons in Ge is:

1. 73

2. 74

3. 75

4. 72

Subtopic:  Various Atomic Models |
 64%
From NCERT
AIPMT - 2006
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The ionization potential of the hydrogen atom is 13.6 V. Hydrogen atoms in the ground state are excited by monochromatic radiation of photon energy 12.1 eV. According to Bohr’s theory, the spectral lines emitted by hydrogen will be:

1. two

2. three

3. four

4. one

Subtopic:  Bohr's Model of Atom |
 66%
From NCERT
AIPMT - 2006
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The total energy of an electron in the ground state of a hydrogen atom is -13.6 eV. The kinetic energy of an electron in the first excited state is:
1. 3.4 eV

2. 6.8 eV

3. 13.6 eV

4. 1.7 eV

Subtopic:  Bohr's Model of Atom |
 70%
From NCERT
AIPMT - 2007
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If the nucleus Al1327 has a nuclear radius of about 3.6 fermis, then Te52125 would have its radius approximately as:

1. 6.0 Fermi

2. 9.6 Fermi

3. 12.0 Fermi

4. 4.8 Fermi

Subtopic:  Various Atomic Models |
 72%
From NCERT
AIPMT - 2007
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The ground state energy of the hydrogen atom is -13.6 eV. When its electron is in the first excited state, its excitation energy is:

1. 3.4 eV

2. 6.8 eV

3. 10.2 eV

4. zero

Subtopic:  Bohr's Model of Atom |
 51%
From NCERT
AIPMT - 2008
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