The correct order of increasing energy of atomic orbitals is

  • A
    $5p < 4f < 6s < 5d$
  • B
    $5p < 6s < 4f < 5d$
  • C
    $4f < 5p < 5d < 6s$
  • D
    $5p < 5d < 4f < 6s$

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Total number of electrons in $Cu$ atom having $m_l = 0$.

The quantum number/s needed to describe an electron fully in an atom is/are:

The correct statement about probability density (except at infinite distance from the nucleus) is:

Consider the following pairs of electrons:
$(A)$ $(a)$ $n=3, l=1, m_{l}=1, m_{s}=+\frac{1}{2}$
$(b)$ $n=3, l=2, m_{l}=1, m_{s}=+\frac{1}{2}$
$(B)$ $(a)$ $n=3, l=2, m_{l}=-2, m_{s}=-\frac{1}{2}$
$(b)$ $n=3, l=2, m_{l}=-1, m_{s}=-\frac{1}{2}$
$(C)$ $(a)$ $n=4, l=2, m_{l}=2, m_{s}=+\frac{1}{2}$
$(b)$ $n=3, l=2, m_{l}=2, m_{s}=+\frac{1}{2}$
The pair$(s)$ of electrons present in degenerate orbitals is/are...... .

Which of the following sets of quantum numbers is impossible for an electron?

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