. Determine the molar mass of glucose (C6H12O6), a type of sugar. Show your Work 2. Calculate the amount of grams of glucose in 3.8 moles. Show work using dimensional analysis. Report answer with the correct unit and significant figures.

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1. Determine the molar mass of glucose (C6H12O6), a type of sugar. Show your Work

2. Calculate the amount of grams of glucose in 3.8 moles. Show work using dimensional analysis. Report answer with the correct unit and significant figures.
 
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### Determining the Molar Mass of Glucose (C₆H₁₂O₆)

To calculate the molar mass of glucose, a type of sugar with the chemical formula \( \text{C}_6\text{H}_{12}\text{O}_6 \), follow these steps:

1. **Identify the atomic masses of the elements involved**: 
   - Carbon (C) has an atomic mass of approximately 12.01 g/mol.
   - Hydrogen (H) has an atomic mass of approximately 1.01 g/mol.
   - Oxygen (O) has an atomic mass of approximately 16.00 g/mol.

2. **Multiply the atomic mass of each element by the number of atoms of that element in the molecule**:
   - For Carbon: \( 6 \times 12.01 \text{ g/mol} = 72.06 \text{ g/mol} \)
   - For Hydrogen: \( 12 \times 1.01 \text{ g/mol} = 12.12 \text{ g/mol} \)
   - For Oxygen: \( 6 \times 16.00 \text{ g/mol} = 96.00 \text{ g/mol} \)

3. **Add the results to find the total molar mass**:
   - Total molar mass of glucose: \( 72.06 \text{ g/mol} + 12.12 \text{ g/mol} + 96.00 \text{ g/mol} = 180.18 \text{ g/mol} \)

So, the molar mass of glucose (C₆H₁₂O₆) is 180.18 g/mol.

#### Additional Resources:
- For a step-by-step tutorial on how to determine molar mass, click on the "Show Your Work" button on the left.

This interactive feature allows you to work through the problem step-by-step, ensuring that you understand the process and can apply it to other molecules. Be sure to check your work by comparing it to the final answer provided.
Transcribed Image Text:### Determining the Molar Mass of Glucose (C₆H₁₂O₆) To calculate the molar mass of glucose, a type of sugar with the chemical formula \( \text{C}_6\text{H}_{12}\text{O}_6 \), follow these steps: 1. **Identify the atomic masses of the elements involved**: - Carbon (C) has an atomic mass of approximately 12.01 g/mol. - Hydrogen (H) has an atomic mass of approximately 1.01 g/mol. - Oxygen (O) has an atomic mass of approximately 16.00 g/mol. 2. **Multiply the atomic mass of each element by the number of atoms of that element in the molecule**: - For Carbon: \( 6 \times 12.01 \text{ g/mol} = 72.06 \text{ g/mol} \) - For Hydrogen: \( 12 \times 1.01 \text{ g/mol} = 12.12 \text{ g/mol} \) - For Oxygen: \( 6 \times 16.00 \text{ g/mol} = 96.00 \text{ g/mol} \) 3. **Add the results to find the total molar mass**: - Total molar mass of glucose: \( 72.06 \text{ g/mol} + 12.12 \text{ g/mol} + 96.00 \text{ g/mol} = 180.18 \text{ g/mol} \) So, the molar mass of glucose (C₆H₁₂O₆) is 180.18 g/mol. #### Additional Resources: - For a step-by-step tutorial on how to determine molar mass, click on the "Show Your Work" button on the left. This interactive feature allows you to work through the problem step-by-step, ensuring that you understand the process and can apply it to other molecules. Be sure to check your work by comparing it to the final answer provided.
**Problem Statement:**

Calculate the amount of grams of glucose in 3.8 moles. Show work using dimensional analysis. Report answer with correct unit and significant figures.

**Solution Input Area:**
- **Button available:** "Show Your Work"
- **Text input field:** A designated space to input your calculations or final answer.
  
Use established principles of dimensional analysis to solve the above problem, ensuring accuracy and correct use of significant figures.
Transcribed Image Text:**Problem Statement:** Calculate the amount of grams of glucose in 3.8 moles. Show work using dimensional analysis. Report answer with correct unit and significant figures. **Solution Input Area:** - **Button available:** "Show Your Work" - **Text input field:** A designated space to input your calculations or final answer. Use established principles of dimensional analysis to solve the above problem, ensuring accuracy and correct use of significant figures.
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