The set of quantum numbers which represent 3p is :
1. n = 1, = 0;
2, n
= 3; = 1
3. n
= 4; l = 2;
4. n 
= 4; = 3 

Subtopic:  Shell & Subshell |
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Orbital that does not exist:

1. 6p 2. 2s
3. 3f 4. 2p

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The possible values of n, l, and m for the electron present in 3d would be respectively:

1. n = 3, l = 1, m = – 2, – 1, 3, 1, 2

2. n = 3, l = 3, m = – 2, – 1, 0, 1, 2

3. n = 3, l = 2, m = – 2, – 1, 0, 1, 2

4. n = 5, l = 2, m = – 2, – 1, 0, 1, 2

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A pair of d-orbitals having electron density along the axes is: 

1. dz2, dxz

2. dxz, dzy

3. dz2, dx2-y2

4. dxy, dx2-y2

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The maximum number of electrons in a subshell with l = 3 and n = 4 is

1. 14

2. 16

3. 10

4. 12

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Assertion (A): In the third energy level, there is no f subshell.
Reason (R): For n = 3, the possible values of l are 0, 1, 2 and for f subshell l = 3.

1. Both (A) and (R) are true and (R) is the correct explanation of (A).
2. Both (A) and (R) are true but (R) is not the correct explanation of (A).
3. (A) is true but (R) is false.
4. (A) is false but (R) is true.

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The number of electrons that can be present in the subshells having ms value of \(-\frac{1}{2}\) for n = 4 are:

1. 36

2. 4

3. 16

4. 2

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The lowest value of n for 'g' orbitals is :

1. 4 2. 5
3. 3 4. 1
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The number of electrons with the azimuthal quantum number l = 1 and 2 for Cr 24 in ground state is

1. 16 and 5

2. 12 and 5

3. 16 and 4

4. 12 and 4

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The rule used to determine the maximum number of electrons in a subshell of an atom is:

1. 4l+2 2. 2l+1
3. 4l-2 4. 2n2
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