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In the second energy level of an atom, there can be a maximum of 8 electrons. Silicon has 14 electrons in total, with 2 in the first energy level and the remaining 12 electrons would be in the second energy level.
A Bohr diagram for silicon would show a silicon atom with 14 protons and 14 electrons. In the first energy level, there would be 2 electrons, and in the second energy level, there would be 8 electrons. The remaining 4 electrons would be in the third energy level.
Silicon is the group 4, period 3 metalloid. It's electron configuration is 1s2 2s2 2p6 3s2 3p2. Thus it has 2 electrons in its first shell, 8 in its second, and 4 in its third.
The Bohr-Rutherford diagram for a silicon atom would show 14 electrons distributed in energy levels around the nucleus. The first energy level would have 2 electrons, the second energy level would have 8 electrons, and the third energy level would have 4 electrons.
how do you draw an electron dot diagram for silicon
Phosphorus has more outer electrons than silicon. Phosphorus has 5 outer electrons in the third energy level, while silicon has 4 outer electrons in the third energy level.
Carbon and Germanium They all have 4 electrons in their outer orbital
The second energy level can hold a maximum of 8 electrons. Magnesium has 12 electrons, so in its second energy level, there will be 8 electrons (2 in the first energy level and 8 in the second energy level).
In the second energy level of an atom, there can be a maximum of 8 electrons. Magnesium has 12 electrons in total, with 2 electrons in the first energy level and 8 electrons in the second energy level.
An atom with seven electrons will have five electrons in the second energy level.
A boron atom has three electrons in its second energy level.
More energy have the electrons in the second level of energy.