In a hydrogen atom, the electron makes a transition from n=2 to n=1. The magnetic field produced by the circulating electron at the nucleus:
1. decreases 16 times
2. increases 4 times
3. decreases 4 times
4. increases 32 times
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Angular momentum (L) and radius (r) of a hydrogen atom are related as:
1. Lr = constant
2. =constant
3. =constant
4. None of these
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An electron in the ground state of hydrogen has an angular momentum and an electron in the first excited state of lithium has an angular momentum . Then
1.
2.
3.
4.
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The voltage applied to an X-ray tube is 18 kV. The maximum mass of photon emitted by the X-ray tube will be:
1.
2.
3.
4.
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The force acting on the electron in a hydrogen atom depends on the principal quantum number as:
1.
2.
3.
4.
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The ratio (in SI units) of magnetic dipole moment to that of the angular momentum of an electron of mass m kg and charge e coulomb in Bohr's orbit of hydrogen atom is:
1.
2.
3.
4. none of these
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If the first excitation potential of the hydrogen-like atom is V volt, then the ionization energy of this atom will be:
1. V electron volt
2. electron volt
3. electron volt
4. cannot be calculated by the given information
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Hydrogen atom in a sample is excited to n = 5 state and it is found that photons of all possible wavelengths are present in the emission spectra. The minimum number of hydrogen atoms in the sample would be:
1. 5
2. 6
3. 10
4. infinite
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The radius of the first permitted Bohr orbit for the electron in a hydrogen atom equals and its ground state energy equals -13.6 eV. If the electron in the hydrogen atom is replaced by muon [ charge same as electron and mass 207], the first Bohr radius and ground state energy will be- ( represents mass of electron)
1. 0.53
2. 25.6
3. 2.56
4. 2.56
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Due to transitions among its first three energy levels, the hydrogen atom emits radiation at three discrete wavelengths . Then,
1.
2.
3.
4.
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