When an α– particle of mass m moving with velocity v bombards a heavy nucleus of charge Ze, its distance of closest approach from the nucleus depends on m as:

1. 1m

2. 1m2

3. m

4. 1m

Subtopic:  Various Atomic Models |
 80%
From NCERT
NEET - 2016
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The ionisation potential of the hydrogen atom is 13.6 eV. Hydrogen atoms in the ground state are excited by monochromatic radiation of photon energy of 12.1 eV. According to Bohr’s theory, the spectral lines emitted by hydrogen atoms will be:

1. two

2. three

3. four

4. one

Subtopic:  Spectral Series |
 70%
From NCERT
AIPMT - 2006
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The wavelength of the first line of Lyman series for hydrogen atom is equal to that of the second line of Balmer series for a hydrogen like ion. What is the atomic number Z of hydrogen like ion?

1. 4

2. 1

3. 2

4. 3

Subtopic:  Spectral Series |
 73%
From NCERT
AIPMT - 2011
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What is the ratio of wavelengths of the last line of the Balmer series and the last line of the Lyman series?

1. 1

2. 4

3. 0.5

4. 2

Subtopic:  Spectral Series |
 83%
From NCERT
NEET - 2017
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What happens when an electron makes a transition from an excited state to the ground state of a hydrogen-like atom or ion?

1. Its kinetic energy increases but potential energy and total energy decrease.
2. Kinetic energy, potential energy and total energy decrease.
3. Kinetic energy decreases, potential energy increases but the total energy remains the same.
4. Kinetic energy and total energy decrease but potential energy increases.
Subtopic:  Bohr's Model of Atom |
 73%
From NCERT
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The radius of the first permitted Bohr orbit for the electron in a hydrogen atom equals 0.5 Ao and its ground state energy equals -13.6 eV. If the electron in the hydrogen atom is replaced by a muon (μ-) [ charged the same as the electron and mass 207 me], the first Bohr radius and ground state energy will be: 
(\(m_e\) represents mass of electron)

1.  \(0.53 \times 10^{-13} \mathrm{~m},-3.6 \mathrm{eV}\)
2. \(25.6 \times 10^{-13} \mathrm{~m},-2.8 \mathrm{eV}\)
3. \(2.56 \times 10^{-13} \mathrm{~m},-2.8 \mathrm{keV}\)
4. \(2.56 \times 10^{-13} \mathrm{~m},-13.6 \mathrm{eV}\)

Subtopic:  Bohr's Model of Atom |
 57%
From NCERT
NEET - 2019
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The de-Broglie wavelength of an electron in the second orbit of a hydrogen atom is equal to:

1. The perimeter of the orbit.
2. The half of the perimeter of the orbit.
3. The half of the diameter of the orbit.
4. The diameter of the orbit.

Subtopic:  Bohr's Model of Atom |
 66%
From NCERT
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What was Rutherford's atom according to classical theory?

1. electrostatically stable.
2. electrodynamically unstable.
3. semi-stable.
4. stable.
Subtopic:  Various Atomic Models |
 61%
From NCERT
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In an α-particle scattering experiment, the number of particles scattered per minute in a direction perpendicular to the direction of incident particles is 40. What will be the number of particles scattered at an angle of 60° per minute?

1. 145 2. 160
3. 172 4. 157
Subtopic:  Various Atomic Models |
 70%
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Let R represent the orbital radius of an electron moving in an orbit and K represent its kinetic energy. Then the quantity KR varies with principal quantum number n as:

1. 2.
3. 4.
Subtopic:  Bohr's Model of Atom |
 60%
From NCERT
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