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An ionized H-molecule consists of an ele...

An ionized H-molecule consists of an electron and two protons. The protons are separated by a small the ground state distance of the order of angstrom. In the ground state
(a) The electron would not move in circular orbits
The energy would be (b) times that of a H-atom
(c) The electrons orbit would go around the protons
(d) The molecule will soon decay in a proton and a H-atom

A

b' and 'd' are true

B

a' and 'b' are true

C

a' and 'c' are true

D

b' and 'c' are true

Text Solution

Verified by Experts

The correct Answer is:
C
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AAKASH SERIES-ATOMS-EXERCISE -IA
  1. Which of the following parameters are the same for all hydrogen-like a...

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  2. The angular momentum of an electron in a hydrogen atom is proportion t...

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  3. The electron in a hydrogen atom makes a transition from an excited sta...

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  4. In a hydrogen atom the radius of n^(th) Bohr orbit is 'r(n)'. The grap...

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  5. The number of spectral lines in hydrogen atom are

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  6. An electron in the ground state of hydrogen atom is revolving in anti ...

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  7. When electron falls from a higher energy to a lower energy level the d...

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  8. The de-Brogilc wavelength of an electron in the first Bohr orbit is

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  9. Bohr's basic idea of discrete energy levels in atorns and the of Photo...

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  10. From quantization of angular momentum, one gets for hydrogen atom. the...

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  11. The excitation energy of Lyman last line is

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  12. The series corresponding to minimum wave- length transition in H-atom

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  13. The minmum magnetic dipole moment of electron in hydrogen atom is

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  14. Total energy of the electron in hydrogen atom above 0eV leads to

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  15. An ionized H-molecule consists of an electron and two protons. The pro...

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  16. Considering aiming a beam of free electrons towards free protons. When...

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  17. The Bohr model for the spectra of a H-atom (a) Will not be applicabl...

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  18. The Balmer series for the H-atorn can be observed a) if we measure ...

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  19. The simple Bohr model is not applicable to He^(+) atom because He^(...

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  20. Check the correctness of the following state- ments about Bohr model o...

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