In many Periodic Tables, a zig-zag line slanting down and to the right is shown in the p- block of the Table. Discuss the periodic trends in atomic properties of the elements that explain the shape, position and meaning of this line. a. b. A solution contains 10.00 g of a non-volatile hydrocarbon in 100.0 g of acetone. The boiling point of the pure acetone is 55.95 °C; the boiling point of the solution is 59.00°C. The boiling point constant of acetone is 1.71 °C kg/mol. i. What is the molar mass of the hydrocarbon? ii. What is the formula of the hydrocarbon? iii. Draw all of the isomers of the hydrocarbon.

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2. a.
In many Periodic Tables, a zig-zag line slanting down and to the right is shown in the p-
block of the Table. Discuss the periodic trends in atomic properties of the elements that
explain the shape, position and meaning of this line.
b.
A solution contains 10.00 g of a non-volatile hydrocarbon in 100.0 g of acetone. The
boiling point of the pure acetone is 55.95 °C; the boiling point of the solution is 59.00°C.
The boiling point constant of acetone is 1.71 °C kg/mol.
i.
What is the molar mass of the hydrocarbon?
ii.
What is the formula of the hydrocarbon?
iii.
Draw all of the isomers of the hydrocarbon.
Transcribed Image Text:2. a. In many Periodic Tables, a zig-zag line slanting down and to the right is shown in the p- block of the Table. Discuss the periodic trends in atomic properties of the elements that explain the shape, position and meaning of this line. b. A solution contains 10.00 g of a non-volatile hydrocarbon in 100.0 g of acetone. The boiling point of the pure acetone is 55.95 °C; the boiling point of the solution is 59.00°C. The boiling point constant of acetone is 1.71 °C kg/mol. i. What is the molar mass of the hydrocarbon? ii. What is the formula of the hydrocarbon? iii. Draw all of the isomers of the hydrocarbon.
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