Reasoning: 1. Substance will release more energy to overcome its interactions because of the strength of its interactions II. Substance will require more energy to overcome its interactions because of the strength of its interactions Select the correct combination: OB, 1, I OB, 2, II O A, 1, I O B, 1, II OA, 2, I O A, 1, II O A, 2, II OB, 2, I Save Answer

Introductory Chemistry: A Foundation
9th Edition
ISBN:9781337399425
Author:Steven S. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Donald J. DeCoste
Chapter14: Liquids And Solids
Section: Chapter Questions
Problem 93CP: Which of the following compound(s) exhibit only London dispersion intermolecular forces? Which...
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Reasoning:
1. Substance will release more energy to overcome its
interactions because of the strength of its interactions
II. Substance will require more energy to overcome its
interactions because of the strength of its interactions
Select the correct combination:
O B, 1, I
O B, 2, II
||
O A, 1, I
O B, 1, II
O A, 2, I
O A, 1, II
O A, 2, II
||
O B, 2, I
Save Answer
Transcribed Image Text:Reasoning: 1. Substance will release more energy to overcome its interactions because of the strength of its interactions II. Substance will require more energy to overcome its interactions because of the strength of its interactions Select the correct combination: O B, 1, I O B, 2, II || O A, 1, I O B, 1, II O A, 2, I O A, 1, II O A, 2, II || O B, 2, I Save Answer
H
H
the
-C
H
H
HIC
H
HQ-H
Н
Н
HC-H
Н
Claim:
A: Structure A
B: Structure B
HỌCÔ CH
H
Н
Structure A
OR
Structure B
Which structure will have a higher boiling point, and
why?
Evidence:
1. Molecule has London dispersion forces & dipole-
dipole interactions
2. Molecule has London dispersion forces, dipole-
dipole interactions, & hydrogen bonding interactions
Transcribed Image Text:H H the -C H H HIC H HQ-H Н Н HC-H Н Claim: A: Structure A B: Structure B HỌCÔ CH H Н Structure A OR Structure B Which structure will have a higher boiling point, and why? Evidence: 1. Molecule has London dispersion forces & dipole- dipole interactions 2. Molecule has London dispersion forces, dipole- dipole interactions, & hydrogen bonding interactions
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