The mass and charge of one mole of electrons are, respectively:

1. 5.48 × 10-7 kg, 9.65 C, 
2. 5.48 × 10-7 C, 1.098 × 1027
3. 5.48 × 10-7 kg, 9.65 × 104 C
4. 9.65 × 104 C, 1.098 × 1027

Subtopic:  Number of Electron, Proton & Neutron |
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The period in the modern periodic table indicates the value of :

1. Atomic number

2. Atomic mass

3. Principal quantum number

4. Azimuthal quantum number.

Subtopic:  Quantum Numbers & Schrodinger Wave Equation |
 69%
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The number of orbitals indicated by the following set of quantum numbers, n = 3, l = 2, m =+2 is:

1.  1

2.  2

3.  3

4.  4

Subtopic:  Quantum Numbers & Schrodinger Wave Equation |
 72%
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AIPMT - 2001
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The maximum number of neutrons are present in the nuclei of:

1. O816
2. Mg1224
3. Fe2656
4. Sr3888

Subtopic:  Number of Electron, Proton & Neutron |
 93%
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The complete symbol for the atom with the given atomic number (Z) and atomic mass (A) would be, respectively :

i. Z = 17 , A = 35.
ii. Z = 92 , A = 233.
iii. Z = 4 , A = 9.

1.  Be49   U92233     Be49

2.  Cl1735    U92233    Be49

3.  Be49    Cl1735     U92233

4. U92233    Be49    Cl1735

Subtopic:  Number of Electron, Proton & Neutron |
 90%
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Yellow light emitted from a sodium lamp has a wavelength (λ) of 580 nm. The frequency (ν) and wave number of this yellow light would be, respectively:

1. 517 × 1014 s–1 , 172 × 106 m–1

2. 6.17 × 1014 s–1 , 1.72 × 106 m–1

3. 4.17 × 1014 s–1 , 2.72 × 106 m–1

4. 5.17 × 1014 s–1 , 1.72 × 106 m–1

Subtopic:  Planck's Theory |
 74%
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The energy of the photon with a frequency of 3 × 1015 Hz is:

1. 1.988 × 10-18 J
2. 1.588 × 10-18 J
3. 1.288 × 10-18 J
4. 2.988 × 10-18 J

Subtopic:  Electromagnetic Radiation |
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A photon of wavelength 4 × 10–7 m strikes a metal surface, the work function of the metal being 2.13 eV.  The kinetic energy of emission would be:

1. 0.97 eV 2. 97 eV 
3. 4.97 × 10-19 eV 4.  5.84 × 105 eV

Subtopic:  Photo Electric Effect |
 71%
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The correct comparison between energy required to ionize an H atom if the electron occupies n = 5 orbits and the ionization enthalpy of H atom ( energy required to remove the electron from n =1 orbit) would be -

1) More energy is required to ionize an electron in the 5th orbital of hydrogen atom as compared to that in the ground state

2) More energy is required to ionize an electron in the 8th orbital of hydrogen atom as compared to that in the ground state

3) Less energy is required to ionize an electron in the 5th orbital of hydrogen atom as compared to that in the ground state

4) Less energy is required to ionize a neutron in the 6th orbital of hydrogen atom as compared to that in the ground state

Subtopic:  Hydrogen Spectra |
 69%
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The wavelength of the light emitted when the electron returns to the ground state in the H atom, from n = 5 to n = 1, would be: (The ground-state electron energy is –2.18 × 1018 j

1. Wavelength = 9.498 × 108 km
2. Wavelength = 12.498 × 108 m
3. Wavelength = 9.498 × 108 m
4. Wavelength = 9.498 × 108 cm

Subtopic:  Planck's Theory |
 65%
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