(A)Fluorine due to its high effective nuclear charge (B)Fluorine due to its low effective nuclear charge(C) Francium due to its great amount of shielding (D)Francium due to its low amount of shielding .(answer choices)
An atom with 16 electrons would have 3 electron shells. The first shell can hold up to 2 electrons, the second shell can hold up to 8 electrons, and the third shell can hold up to 8 electrons.
Each orbital can hold a maximum of 2 electrons, following the Pauli exclusion principle which states that no two electrons in an atom can have the same set of quantum numbers.
To create a cobalt Bohr model, first determine the number of protons and electrons in a cobalt atom (27). Place the protons in the nucleus and distribute the electrons in energy levels (shells) around the nucleus, following the rules of Bohr's model. The first energy level can hold up to 2 electrons, the second can hold up to 8, the third can hold up to 18, and the fourth can hold the remaining electrons.
The first shell (K shell) can hold up to 2 electrons, the second shell (L shell) can hold up to 8 electrons, the third shell (M shell) can hold up to 18 electrons, and the fourth shell (N shell) can hold up to 32 electrons.
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The d orbital can hold a maximum of 10 electrons when filled. The s can hold 2 and the p can hold 6.
The first energy level can hold up to 2 electrons, the second can hold up to 8 electrons, the third can hold up to 18 electrons, and the fourth can hold up to 32 electrons, following the 2n^2 rule where n is the energy level number.
An atom with 16 electrons would have 3 electron shells. The first shell can hold up to 2 electrons, the second shell can hold up to 8 electrons, and the third shell can hold up to 8 electrons.
The 2s sublevel can hold a maximum of 2 electrons.
20 electrons would need 4 shells. The first shell can hold up to 2 electrons, the second shell can hold up to 8 electrons, the third shell can hold up to 18 electrons, and the fourth shell can hold up to 32 electrons.
10 electrons would need 2 shells to accommodate them. The first shell can hold up to 2 electrons, while the second shell can hold up to 8 electrons.
2s: 2 electrons 5p: 6 4f: 14 3d: 10 4d: 10
Each orbital can hold a maximum of 2 electrons, following the Pauli exclusion principle which states that no two electrons in an atom can have the same set of quantum numbers.
The K shell of an atom can hold up to 2 electrons.
To create a cobalt Bohr model, first determine the number of protons and electrons in a cobalt atom (27). Place the protons in the nucleus and distribute the electrons in energy levels (shells) around the nucleus, following the rules of Bohr's model. The first energy level can hold up to 2 electrons, the second can hold up to 8, the third can hold up to 18, and the fourth can hold the remaining electrons.
The first shell (K shell) can hold up to 2 electrons, the second shell (L shell) can hold up to 8 electrons, the third shell (M shell) can hold up to 18 electrons, and the fourth shell (N shell) can hold up to 32 electrons.
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