Both have six valance electrons. That is what the number at the top of their column means.
The outer valence shell of a sulfur atom contains a total of 6 electrons: two 3s electrons and four 3p electrons.
A sulfur atom has 6 valence electrons, while a sulfide ion has 8 valence electrons because it gains two electrons to achieve a stable electron configuration.
The sulfite ion (SO3^2-) has 18 valence electrons. There are six valence electrons from the sulfur atom (Group 16, 6 valence electrons) and four valence electrons from each of the three oxygen atoms (Group 16, 6 valence electrons each).
Sulfur has 6 valence electrons.
six
There are 6 valence electrons in the sulfur atom.
There are 20 valence electrons in the expanded valence structure of sulfur dioxide. This includes the electrons from the sulfur atom (6 valence electrons) and each oxygen atom (6 valence electrons each).
A neutral sulfur atom has 6 valence electrons. Sulfur is in group 16 of the periodic table, so it has 6 valence electrons in its outermost shell.
The outer valence shell of a sulfur atom contains a total of 6 electrons: two 3s electrons and four 3p electrons.
A sulfur atom has 6 valence electrons, while a sulfide ion has 8 valence electrons because it gains two electrons to achieve a stable electron configuration.
Sulphur's electronic configuration is 2,8,6 and hence it has 6 electrons in its valence shell.
Group 16 (VIB or VIA) elements have six valence electrons.
The atomic number is 16, so a sulfur atom has 16 protons in the nucleus and 16 electrons in the electron cloud.
There are six unpaired electrons in a sulfur atom (atomic number 16) because sulfur has six valence electrons in its outer shell.
A molecule shouldn't have valence electrons left.
Sulfur has 10 core electrons. Because the core electrons = all electrons that aren't valence electrons. Sulfur has 16 electrons; 6 valence and 10 core.
there are 6 valence electrons in the outermost energy levei