Home
/
Chemistry
/
FiQ Practice: The structures for butanone, mathrm(CH)_(3) mathrm(COCH)_(2) mathrm(CH)_(2) , and n -butane, mathrm(CH)_(3) mathrm(CH)_(2) mathrm(CH)_(2) mathrm(CH)_(3) , are show below. (A) *Identify the type of intermolecular forces in butanone and in n -butane. (B) *Butanone is much more soluble in mathrm(H)_(2) mathrm(O) than is n -butane. Account for this difference. (C) Predict the solubility of n -butane in toluene, the solvent we investigated in class today. Justify your response.

Question

FiQ Practice:
The structures for butanone, mathrm(CH)_(3) mathrm(COCH)_(2) mathrm(CH)_(2) , and n -butane, mathrm(CH)_(3) mathrm(CH)_(2) mathrm(CH)_(2) mathrm(CH)_(3) , are show below.
(A) *Identify the type of intermolecular forces in butanone and in n -butane.
(B) *Butanone is much more soluble in mathrm(H)_(2) mathrm(O) than is n -butane. Account for this difference.
(C) Predict the solubility of n -butane in toluene, the solvent we investigated in class today. Justify your response.

FiQ Practice: The structures for butanone, mathrm(CH)_(3) mathrm(COCH)_(2) mathrm(CH)_(2) , and n -butane, mathrm(CH)_(3) mathrm(CH)_(2) mathrm(CH)_(2) mathrm(CH)_(3) , are show below. (A) *Identify the type of intermolecular forces in butanone and in n -butane. (B) *Butanone is much more soluble in mathrm(H)_(2) mathrm(O) than is n -butane. Account for this difference. (C) Predict the solubility of n -butane in toluene, the solvent we investigated in class today. Justify your response.

expert verifiedVerification of experts

Answer

4.2258 Voting
avatar
VincentMaster · Tutor for 5 years

Answer

(A) <br />Step 1: Identify the type of intermolecular forces in butanone and in n-butane.<br /><br />Butanone (CH3COCH2CH3) is a polar molecule due to the presence of a carbonyl group (C=O). The oxygen atom is more electronegative than the carbon atom, creating a dipole moment. Therefore, the primary type of intermolecular force in butanone is dipole-dipole interaction.<br /><br />n-Butane (CH3CH2CH2CH3) is a nonpolar molecule because the electronegativity difference between carbon and hydrogen is very small, and the molecule is symmetric. Therefore, the primary type of intermolecular force in n-butane is London dispersion forces (also known as van der Waals forces).<br /><br />Answer: The type of intermolecular force in butanone is dipole-dipole interaction, and in n-butane is London dispersion forces.<br /><br />(B) <br />Step 2: Account for the difference in solubility of butanone and n-butane in water.<br /><br />The solubility of a substance in water is determined by its ability to form hydrogen bonds with water molecules. Butanone, being a polar molecule, can form hydrogen bonds with water, making it more soluble. On the other hand, n-butane, being a nonpolar molecule, cannot form hydrogen bonds with water, making it less soluble.<br /><br />Answer: Butanone is more soluble in water than n-butane because it can form hydrogen bonds with water, while n-butane cannot.<br /><br />(C) <br />Step 3: Predict the solubility of n-butane in toluene and justify your response.<br /><br />Toluene is a nonpolar solvent. According to the "like dissolves like" principle, nonpolar solvents dissolve nonpolar solutes well. Since n-butane is a nonpolar molecule, it should be soluble in toluene.<br /><br />Answer: n-Butane is likely to be soluble in toluene because both are nonpolar, and "like dissolves like".
Click to rate:

Hot Questions

More x