The number of d -electrons in Fe2+ (atomic number Z = 26) is different from the number of:
1. s-electrons in Mg (Z = 12)
2. p-electrons in Cl (Z = 17)
3. d-electrons in Fe (Z = 26)
4. p-electrons in Ne (Z = 10)
The angular momentum of electrons in d orbital is equal to:
1.
2.
3.
4. 0
The correct set of four quantum numbers for the valence electron of a rubidium atom (Z =37) is:
| 1. | \(5,1,1,+ {1 \over2}\) | 2. | \(6,0,0,+ {1 \over2}\) |
| 3. | \(5,0,0,+ {1 \over2}\) | 4. | \(5,1,0,+ {1 \over2}\) |
Find the correct sequence of filling of electrons for an atom having principal quantum number (n) equal to 6.
1.
2.
3.
4.
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 |
The incorrect set of quantum numbers among the following is:
1. n= 4, l= 0, m= 0, s= -1/2
2. n= 5, l= 3, m= 0, s= +1/2
3. n= 3, l= 2, m= -3, s= -1/2
4. n= 3, l= 2, m= 2, s= -1/2
The orbital diagram in which both Pauli's exclusion principle and Hund's rule are violated is:
| 1. | |
| 2. | |
| 3. | |
| 4. | |
The correct order of the total number of nodes of atomic orbitals is:
1. 4f > 6s > 5d
2. 6s > 5d > 4f
3. 4f > 5d > 6s
4. 5d > 4f > 6s
Correct statement among the following is:
1. Number of angular nodes = n - l - 1
2. Number of radial nodes = l
3. Total number of nodes = n -1
4. All of the above
Orbitals having two spherical nodes are:
| 1. | 2s | 2. | 4s |
| 3. | 3d | 4. | 6f |