The quantum number of the most energetic electron in an Ne atom in the first excited state is

1. 2, 1, 0, +1/2 2. 3, 1, 1, +1/2
3. 3, 0, 0, +1/2 4. 3, 1, 0, +1/2

Subtopic:  Quantum Numbers & Schrodinger Wave Equation |
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The frequency of line spectrum of sodium is 5.09 x 1014 sec-1. Its wavelength (in nm) will be -[C= 3x108m/sec]

1. 510nm

2. 420nm

3. 589nm

4. 622nm

Subtopic:  Electromagnetic Radiation |
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The total number of neutrons in dipositive zinc ions with mass number 70 is -

1. 34

2. 40

3. 36

4. 38

Subtopic:  Number of Electron, Proton & Neutron |
 74%
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With a certain exciting radiation of a particular frequency, to which hydrogen atoms are exposed, the maximum number of spectral lines obtainable in the emission is 15. The uppermost energy level to which the electron is excited is 

1. 4

2. 5

3. 6

4. 7

Subtopic:  Hydrogen Spectra |
 62%
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Consider an electron which is brought close to the nucleus of the atom from an infinite distance, the energy of the electron-nucleus system:

1. Increases

2. Decreases

3. Remains the same

4. None of these

Subtopic:  Bohr's Theory |
 55%
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When accelerated electrons are direct against an anticathode in an X-ray tube, the radiation obtained has a continuous spectrum with a wavelength minimum,

λmin = (1.24 x 10-6)V) m, where V is the voltage used for accelerating the electrons.

Calculate λmin for V= 5 x 104 volts.

1. 1.25 Å

2. 0.75 Å

3. 0.25 Å

4. 1.00 Å

Subtopic:  Electromagnetic Radiation |
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Calculate the de Broglie wavelength of an α-particle emitted from radium having an energy of 4.8 MeV.

(Mass of α-particle=6.6 x 10-24 g; h=Planck's constant = 6.626 x 10-27 erg sec)

1. 6.18 x 10-13cm

2. 0.58 x 10-8cm

3. 6.58 x 10-13cm

4. 4.12 x 10-11cm

Subtopic:  De Broglie Equation |
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An atom forms an ion by losing three electrons. The ion has an electronic configuration [Ar]3d6. The symbol of the ion is :

1. Fe3+ 2. Ni3+
3. Co3+ 4. Mn+3
Subtopic:  Number of Electron, Proton & Neutron |
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When beryllium is bombarded with α-particles, extremely penetrating radiations are produced which cannot be deflected by electrical or magnetic fields. These are:

1. Protons

2. α -rays

3. Neutrons

4. X-rays

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Using arbitrary energy units we can calculate that 864 arbitrary units (a.u.) are required to transfer an electron in hydrogen atom from the most stable Bohr's orbit to the largest distance from the nucleus 

n =    E= 0

n = 1 ;   E= -864 Arbitrary units

The energy required to transfer the electron from third Bohr's orbit to the orbit n = will be-

1. 96 Arbitrary units

2. 192 Arbitrary units

3. 288 Arbitrary units

4. 384 Arbitrary units

Subtopic:  Bohr's Theory |
 57%
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