Suppose you analyzed a different unknown acid that is tetraprotic (i.e., H4X). If you need 47.18 mL of your base to titrate 25.00 mL of this different unknown acid, what is the molarity of the acid? Write a balanced equation and use dimensional analysis.

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The molarity for trial 1 will be 0.4035 and trial 2 molarity will be 0.3587 I need some assistance on question 2 if possible
**Table 3: Titration of Unknown Acid**

|                  | Trial 1 |
|------------------|---------|
| Volume of unknown| 10.00 mL|
| Initial burette reading | 0.05 mL  |
| Final burette reading | 21.8 mL  |
| Volume of base used  | 21.8 mL  |

**1.** Calculate the molarity of the unknown acid for each trial using dimensional analysis - show all unit conversions (hint: Start with mL of base used, and use the average molarity you calculated on page 2).

Trial 1: ________

Trial 2: ________

Average: ________

---

**2.** Suppose you analyzed a different unknown acid that is tetraprotic (i.e., H₄X). If you need 47.18 mL of your base to titrate 25.00 mL of this different unknown acid, what is the molarity of the acid? Write a balanced equation and use dimensional analysis.
Transcribed Image Text:**Table 3: Titration of Unknown Acid** | | Trial 1 | |------------------|---------| | Volume of unknown| 10.00 mL| | Initial burette reading | 0.05 mL | | Final burette reading | 21.8 mL | | Volume of base used | 21.8 mL | **1.** Calculate the molarity of the unknown acid for each trial using dimensional analysis - show all unit conversions (hint: Start with mL of base used, and use the average molarity you calculated on page 2). Trial 1: ________ Trial 2: ________ Average: ________ --- **2.** Suppose you analyzed a different unknown acid that is tetraprotic (i.e., H₄X). If you need 47.18 mL of your base to titrate 25.00 mL of this different unknown acid, what is the molarity of the acid? Write a balanced equation and use dimensional analysis.
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