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An electron having the quantum numbers n...

An electron having the quantum numbers n=4, l=3 , m=0 , `s=-1/2` would be in the orbital

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Which is the correct orbital designation for the electron with the quantum numbers n=4, l=3, m_l=2, m_s=1/2 ?

Designate the electrons having the following sets of quantum numbers, (a) n=2, l=0, m =0, s=+1/2 (b) n=3, l=1, m=+1, s=+1/2 (c ) n=l, l=0, m=0, s=-1/2

In an atom, the total number of electrons having quantum numbers n=4, abs(m_l) =1 and m_s=-(1/2) is

Designate the electrons with the following sets of quantum numbers : (a) n=3, l=0, m=0, s=-1/2 (b) n=2, l=1, m=+1, s=+1/2 (c ) n=5, l=0, m=0, s=+1/2

The position and energy of an electron is specified with the help of four quantum numbers namely, principal quantum number (n), azimuthal quantum number (l), magnetic quantum number (m_l) and spin quantum number (m_s) . The permissible values of these are : n = 1,2..... l = 0,1,.....(n-1) m_l = -l,......0,......+l m_s = +1/2 and -1/2 for each value of m_l . The angular momentum of electron is given as sqrt(l(l + 1)) cdot h/(2pi) While spin angular momentum is given as sqrt(s(s+1)) cdot (h/(2pi)) where s = 1/2 The electrons having the same value of n, l and m_l are said to belong to the same orbital. According to Pauli's exclusion principle, an orbital can have maximum of two electrons and these two must have opposite spin. Which of the following statements is not correct ?

In an atom, the total number of electrons having quantum number n = 4, |m_(l)| = 1 and m_(s) = - (1)/(2) is

In an atom, the total number of electrons having quantum numbers n = 4,|m_(l)| = 1 and m_(s) =- (1)/(2) is

What are quantum numbers and what information is provided by them? Specify the electrons with following sets of quantum numbers : (i) n=4, l=1, m=+1, s=+1/2 (ii) n=3, l=0, m=0, s=-1/2