First, launch the video below. During the video, you'll be asked a conceptual question about the key concept. After watching the video, answer the related question at the right. You can watch the video again at any point to review. Part A PEARSON Which 1 M solution would have the highest vapor pressure at a given temperature? ALWAYS LEARNING Colligative Properties • View Available Hint(s) more info Colligotive Properties O NAC2H3O2 O KCI O LizSO4 Ln 5 O C;H12O6

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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First, launch the video below. During the video, you'll be asked a
conceptual question about the key concept. After watching the video,
answer the related question at the right. You can watch the video again
at any point to review.
Part A
PEARSON
Which 1 M solution would have the highest vapor pressure at a given temperature?
ALWAYS LEARNING
Colligative Properties
• View Available Hint(s)
more info
Colligative Properties
O NAC2H3O2
O KCI
O LizSO4
Ln 15
O C;H12O6
Transcribed Image Text:First, launch the video below. During the video, you'll be asked a conceptual question about the key concept. After watching the video, answer the related question at the right. You can watch the video again at any point to review. Part A PEARSON Which 1 M solution would have the highest vapor pressure at a given temperature? ALWAYS LEARNING Colligative Properties • View Available Hint(s) more info Colligative Properties O NAC2H3O2 O KCI O LizSO4 Ln 15 O C;H12O6
Expert Solution
Step 1 Analysis

Given: 1M solution and four compounds NaC2H3O2, KCl, Li2SO4 and C6H12O6.

To find: on adding which compound will give highest vapour pressure at a given temperature

Solution : vapour pressure depends on mainly two things that is concentration and vant hoff factor (denoted by i).

Since the concentration is same in the above case so it will only depend on i. 

 

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