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q1 chemistry u2l17.5 unit 2 mini review 2. write the preferred charges …

Question

q1 chemistry u2l17.5 unit 2 mini review

  1. write the preferred charges of the following element and calculate the number of electrons the ion would have (hint: refer to your annotated periodic table to find the preferred charges)

element preferred charge total number of electrons
o -2 10 electrons (8 + 2)
**na
*mg
f
**n
li

  1. **fill in the table with the number of orbitals and total number of electrons found in each sublevel.

sublevel # of orbitals total # of electrons
s
p
d
f

  1. examine the orbital diagrams for an element to the right to answer the following questions:

a. **circle the correct orbital diagram.
b. **why is that one correct?
1s 2s 2p

  1. ↑↓ ↑↓ ↑↓ ↑↓
  2. ↑↓ ↑↓ ↑↓ ↑ ↑
  3. ↑↓ ↑ ↑↓ ↑↓ ↑
  4. ↑↓ ↑↓ ↑↓ ↑

Explanation:

Step1: Determine preferred charges and electron - counts for elements

  • Sodium (Na) is in Group 1 of the periodic table. It loses 1 electron to achieve a stable noble - gas configuration. So the preferred charge is +1. The atomic number of Na is 11. When it forms a +1 ion, the number of electrons is 11 - 1=10.
  • Magnesium (Mg) is in Group 2. It loses 2 electrons to achieve a stable noble - gas configuration. The preferred charge is +2. The atomic number of Mg is 12. When it forms a +2 ion, the number of electrons is 12 - 2 = 10.
  • Fluorine (F) is in Group 17. It gains 1 electron to achieve a stable noble - gas configuration. The preferred charge is - 1. The atomic number of F is 9. When it forms a - 1 ion, the number of electrons is 9+1 = 10.
  • Nitrogen (N) is in Group 15. It gains 3 electrons to achieve a stable noble - gas configuration. The preferred charge is - 3. The atomic number of N is 7. When it forms a - 3 ion, the number of electrons is 7 + 3=10.
  • Lithium (Li) is in Group 1. It loses 1 electron to achieve a stable noble - gas configuration. The preferred charge is +1. The atomic number of Li is 3. When it forms a +1 ion, the number of electrons is 3 - 1 = 2.
ElementPreferred chargeTotal number of electrons
Mg+210
F- 110
N- 310
Li+12

Step2: Fill in the orbital - sublevel table

  • The s sublevel has 1 orbital. Each orbital can hold a maximum of 2 electrons, so the s sublevel can hold 2 electrons.
  • The p sublevel has 3 orbitals. Since each orbital can hold 2 electrons, the p sublevel can hold 6 electrons.
  • The d sublevel has 5 orbitals. With 2 electrons per orbital, the d sublevel can hold 10 electrons.
  • The f sublevel has 7 orbitals. With 2 electrons per orbital, the f sublevel can hold 14 electrons.
Sublevel# of orbitalsTotal # of electrons
p36
d510
f714

Step3: Determine the correct orbital diagram

  • According to Hund's rule, electrons fill degenerate (equal - energy) orbitals singly first before pairing up. For the 2p sublevel, the correct filling order is to have one electron in each of the three 2p orbitals before pairing.
  • The correct orbital diagram is the one where the 1s and 2s orbitals are filled with 2 electrons each (spin - paired), and the 2p orbitals have one electron in each of the three orbitals. So the correct diagram is the second one.
  • Reason: Hund's rule states that electrons in degenerate orbitals (like the three 2p orbitals) will occupy the orbitals singly with parallel spins before pairing up to minimize electron - electron repulsion.

Answer:

ElementPreferred chargeTotal number of electrons
Mg+210
F- 110
N- 310
Li+12
Sublevel# of orbitalsTotal # of electrons
p36
d510
f714

a. The second orbital diagram is correct.
b. Because of Hund's rule, which states that electrons in degenerate orbitals occupy the orbitals singly with parallel spins before pairing up.