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Question
- choose the group that does not contain isotopes of the same element.
(a)
(b)
(c)
(d)
use the diagram below to answer question 20.
the letter ( n ) in ( n s^{2} n p^{1} ) represents an integer, where ( n=1,2,3 ). etc. the families in the periodic table
are labeled letters ( q - y ) in the periodic table above.
- the electron configuration of the valence electrons of an atom in its ground state is ( n s^{2} n p^{1} ).
this atom is a group _ element.
(a) ( q )
(b) ( r )
(c) ( s )
(d) ( t )
Question 19
Step1: Recall the definition of isotopes
Isotopes are atoms of the same element that have the same number of protons but different numbers of neutrons.
Step2: Analyze each option
- Option (A):
- Atom I: Protons \(=18\), Neutrons \(=18\)
- Atom II: Protons \(=18\), Neutrons \(=19\)
- Since protons are same (\(Z = 18\)), these are isotopes of argon (\(Ar\)).
- Option (B):
- Atom I: Protons \(=25\), Neutrons \(=30\)
- Atom II: Protons \(=25\), Neutrons \(=31\)
- Since protons are same (\(Z = 25\)), these are isotopes of manganese (\(Mn\)).
- Option (C):
- Atom I: Protons \(=37\), Neutrons \(=42\)
- Atom II: Protons \(=37\), Neutrons \(=41\)
- Since protons are same (\(Z = 37\)), these are isotopes of rubidium (\(Rb\)).
- Option (D):
- Atom I: Protons \(=82\), Neutrons \(=126\)
- Atom II: Protons \(=81\), Neutrons \(=126\)
- Since protons are different (\(Z_1=82\) and \(Z_2 = 81\)), these are not isotopes.
Step1: Determine the number of valence electrons
The electron configuration of valence electrons is \(ns^{2}np^{1}\). The number of valence electrons \(=2 + 1=3\).
Step2: Relate to periodic - table groups
- Group 1 (alkali metals): \(ns^{1}\)
- Group 2 (alkaline - earth metals): \(ns^{2}\)
- Group 13: \(ns^{2}np^{1}\)
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D. Atom I: 82 protons, 126 neutrons; Atom II: 81 protons, 126 neutrons