A. Chemical Formulas DATA 2.5g иму 2. Mass of aluminum cup and KAl(SO4)2 hydrate 3. Mass of aluminum cup and KAl(SO4)2 anhydrate-1st heating 44.99 4. Mass of aluminum cup and KAl(SO4)2 anhydrate - 2nd heating 5.09 *Use the lowest mass of aluminum cup and KAl(SO4)2 anhydrate in calculations below. 1. Mass of empty aluminum cup CALCULATIONS (show all of your work) 1. Mass of KAl(SO4)2 hydrate (Mass of Aluminum cup and hydrate-mass of empty aluminum cup) 2. Mass of KAl(SO4)2 anhydrate (Mass of Aluminum cup and anhydrate - mass of empty aluminum cup) 3. Mass of water from the KAl(SO4)2 hydrate (Mass of hydrate - mass of anhydrate)

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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### A. Chemical Formulas

#### DATA

1. **Mass of empty aluminum cup** 
   - 2.5 g

2. **Mass of aluminum cup and KAl(SO₄)₂ hydrate**
   - 4.4 g

3. **Mass of aluminum cup and KAl(SO₄)₂ anhydrate – 1st heating**
   - 4.9 g

4. **Mass of aluminum cup and KAl(SO₄)₂ anhydrate – 2nd heating**
   - 5.0 g

*Use the lowest mass of aluminum cup and KAl(SO₄)₂ anhydrate in calculations below.*

### CALCULATIONS (show all of your work)

1. **Mass of KAl(SO₄)₂ hydrate**  
   (Mass of Aluminum cup and hydrate – mass of empty aluminum cup)  
   - [Calculation space]

2. **Mass of KAl(SO₄)₂ anhydrate**  
   (Mass of Aluminum cup and anhydrate – mass of empty aluminum cup)  
   - [Calculation space]

3. **Mass of water from the KAl(SO₄)₂ hydrate**  
   (Mass of hydrate – mass of anhydrate)  
   - [Calculation space]

4. **Moles of KAl(SO₄)₂ anhydrate**  
   (Convert the mass of anhydrate to moles using the molar mass of the anhydrate)  
   - [Calculation space]

5. **Moles of water from the KAl(SO₄)₂ hydrate**  
   (Convert the mass of water to moles using the molar mass of water)  
   - [Calculation space]

---

This worksheet section involves the analysis of chemical formulas through an experiment involving the heating of a hydrated compound to determine the mass changes and calculate the number of moles of water and anhydrous compound.
Transcribed Image Text:### A. Chemical Formulas #### DATA 1. **Mass of empty aluminum cup** - 2.5 g 2. **Mass of aluminum cup and KAl(SO₄)₂ hydrate** - 4.4 g 3. **Mass of aluminum cup and KAl(SO₄)₂ anhydrate – 1st heating** - 4.9 g 4. **Mass of aluminum cup and KAl(SO₄)₂ anhydrate – 2nd heating** - 5.0 g *Use the lowest mass of aluminum cup and KAl(SO₄)₂ anhydrate in calculations below.* ### CALCULATIONS (show all of your work) 1. **Mass of KAl(SO₄)₂ hydrate** (Mass of Aluminum cup and hydrate – mass of empty aluminum cup) - [Calculation space] 2. **Mass of KAl(SO₄)₂ anhydrate** (Mass of Aluminum cup and anhydrate – mass of empty aluminum cup) - [Calculation space] 3. **Mass of water from the KAl(SO₄)₂ hydrate** (Mass of hydrate – mass of anhydrate) - [Calculation space] 4. **Moles of KAl(SO₄)₂ anhydrate** (Convert the mass of anhydrate to moles using the molar mass of the anhydrate) - [Calculation space] 5. **Moles of water from the KAl(SO₄)₂ hydrate** (Convert the mass of water to moles using the molar mass of water) - [Calculation space] --- This worksheet section involves the analysis of chemical formulas through an experiment involving the heating of a hydrated compound to determine the mass changes and calculate the number of moles of water and anhydrous compound.
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