1. Write electron configurations and orbital diagrams for atoms of sodium, magnesium, aluminum, silicon, phosphorus, sulfur, chlorine and argon. 2. Make a table with eight columns and two rows. In the first row write the symbol atomic number, and condensed electron configurations for the period 2 elements 3. Fill in the second row with the atomic number, atomic symbol, and electron configuration for the elements in question 1. Conclude and Communicate 4. Describe two generalizations about the table that you created 5. For atoms of any Group 1 element, a general electron configuration is ns^1, where n is the quantum number for the outermost occupied energy level. Use your answer to question 2 to predict general electron configuration for atoms in the following groups a) 2 b) 13 c) 14 d) 15 e) 16 f) 17 g) 18

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Chapter1: Chemical Foundations
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Analyze and Interpret
1. Write electron configurations and orbital diagrams for atoms of sodium, magnesium, aluminum, silicon,
phosphorus, sulfur, chlorine and argon.
2. Make a table with eight columns and two rows. In the first row write the symbol atomic number, and
condensed electron configurations for the period 2 elements
3. Fill in the second row with the atomic number, atomic symbol, and electron configuration for the
elements in question 1.
Conclude and Communicate
4. Describe two generalizations about the table that you created
5. For atoms of any Group 1 element, a general electron configuration is ns^1, where n is the quantum
number for the outermost occupied energy level. Use your answer to question 2 to predict general
electron configuration for atoms in the following groups
a) 2
b) 13
c) 14
d) 15
e) 16
f) 17
g) 18
Transcribed Image Text:Analyze and Interpret 1. Write electron configurations and orbital diagrams for atoms of sodium, magnesium, aluminum, silicon, phosphorus, sulfur, chlorine and argon. 2. Make a table with eight columns and two rows. In the first row write the symbol atomic number, and condensed electron configurations for the period 2 elements 3. Fill in the second row with the atomic number, atomic symbol, and electron configuration for the elements in question 1. Conclude and Communicate 4. Describe two generalizations about the table that you created 5. For atoms of any Group 1 element, a general electron configuration is ns^1, where n is the quantum number for the outermost occupied energy level. Use your answer to question 2 to predict general electron configuration for atoms in the following groups a) 2 b) 13 c) 14 d) 15 e) 16 f) 17 g) 18
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