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Byju's Answer
Standard XIII
Chemistry
Quantum Numbers
Number of orb...
Question
Number of orbitals represented by
n
=
3
,
l
=
2
and
m
=
+
2
is:
A
1
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B
7
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C
3
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D
5
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Solution
The correct option is
A
1
For
n
=
3
and
l
=
2
, it represents one of the
3
d
orbital, having
m
=
+
2
.
A set of
n
,
l
and
m
represents a single orbital. Hence, the given quantum number is possible for only
1
orbital with
2
electrons.
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Similar questions
Q.
Which electron,orbitals are designated by
(i) n= 2, l=1, m= 0;
(ii)n= 3, l= 2, m= 0;
(iii)n = 4, l = 2, m = 1 and
(iv) n = 5, I= 3, m =3 respectively ?
Q.
In a multi-electron atom, which of the following orbitals described by the three quantum numbers will have the same energy in the absence of magnetic and electric fields?
(A)
n
=
1
,
l
=
0
,
m
=
0
(B)
n
=
2
,
l
=
0
,
m
=
0
(C)
n
=
2
,
l
=
1
,
m
=
1
(D)
n
=
3
,
l
=
2
,
m
=
1
(E)
n
=
3
,
l
=
2
,
m
=
0
Q.
Which of the following orbitals described by three quantum numbers will have different energies for a multielectron atom, in the absence of external electric and magnetic fields?
(1) n = 1, l = 0, m = 0
(2) n = 2, l = 1, m = -1
(3) n = 2, l = 1, m = +1
(4) n = 3, l = 2, m = +1
(5) n = 3, l = 2, m = 0
Q.
In a multi electron atom, which of the following orbitals described by the three quantum numbers will lose degeneracy in the presence of magnetic and electric field?
A. n = 1, l = 0, m = 0
B. n = 2, l = 0, m = 0
C. n = 2, l = 1, m = 1
D. n = 3, l = 2, m = 1
E. n = 3, l = 2, m = 0
Q.
For how many orbitals, the quantum numbers n=3, l = 2, m = +2 are possible?
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