(a)
Interpretation: The comparison needs to be done between the volumes of 1 g of ice at
Concept Introduction: If water freezes, it tends to expand. Water is the only liquid that expands on freezing. Thus, its solid state has a lower volume than the liquid state of the same amount.
(a)
Explanation of Solution
The mass of both ice and liquid water is the same which is 1 g at
Therefore, 1 g of ice at
(b)
Interpretation: The comparison needs to be done between 1 g of liquid water at
Concept Introduction: Solids have compact structures thus; they have definite volumes. The volume of liquid is also defined but in the case of gases, volume is not definite, it can take up the volume of the entire container in which it is placed. Thus, the volume of gases is larger than the volume of liquid of the same mass.
(b)
Explanation of Solution
The mass of liquid water and steam is the same that is 1 g at
Therefore, 1 g of steam at
Chapter 15 Solutions
Chemistry 2012 Student Edition (hard Cover) Grade 11
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- Identify the Functional Groups (FG) in the following molecules. Classify C atoms as tertiary, 30, or quaternary 40. Identify secondary 20 and tertiary, 30 hydrogen atoms. Please provide steps to undertand each labeling.arrow_forwardIdentify the Functional Groups (FG) in the following molecules. Classify C atoms as tertiary, 30, or quaternary 40. Identify secondary 20 and tertiary, 30 hydrogen atoms. Please provide steps to undertand each labeling.arrow_forwardIdentify the Functional Groups (FG) in the following molecules. Classify C atoms as tertiary, 30, or quaternary 40. Identify secondary 20 and tertiary, 30 hydrogen atoms. Please provide steps to undertand each labeling.arrow_forward
- Identify the Functional Groups (FG) in the following molecules. Classify C atoms as tertiary, 30, or quaternary 40. Identify secondary 20 and tertiary, 30 hydrogen atoms. Please provide steps to undertand each labeling.arrow_forwardA certain chemical reaction releases 24.7 kJ/g of heat for each gram of reactant consumed. How can you calculate what mass of reactant will produce 1460. J of heat? Set the math up. But don't do any of it. Just leave your answer as a math expression. Also, be sure your answer includes all the correct unit symbols. mass M 0.0 x μ 00 1 Garrow_forwardPlease don't used hand raiting and don't used Ai solutionarrow_forward
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