If 25.0 g of NH3 and 45.0 g of O2 react in the following reaction, what is the mass in grams of NO that will be formed? 4 NH3 (g) + 5 O2 (g) → 4 NO (g) + 6 H20 (g)

Chemistry
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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
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**Chemistry Problem: Reaction Mass Calculation**

**Problem Statement:**

If 25.0 g of \( \text{NH}_3 \) and 45.0 g of \( \text{O}_2 \) react in the following reaction, what is the mass in grams of \( \text{NO} \) that will be formed?

\[ 4 \text{NH}_3 (g) + 5 \text{O}_2 (g) \rightarrow 4 \text{NO} (g) + 6 \text{H}_2\text{O} (g) \]

**Calculation Setup:**

- **Input:** The input section for answers is labeled "g" for grams.
- **Calculator Interface:** A numeric keypad is provided for entering the final calculation, with digits 0-9, a decimal point, plus/minus sign, backspace, and clear operations available. An option for scientific notation ("x 10") is also present for precise calculations.

**Instructions for Use:**

To solve this problem, you should:
1. Determine the limiting reactant using stoichiometry.
2. Calculate the theoretical yield of \( \text{NO} \) based on the limiting reactant.
3. Enter your answer using the provided keypad, ensuring the mass is recorded in grams.

Make sure to double-check your calculations and use the clear button to reset if needed.

For further explanation or resources, tap or pull up the additional resources section provided at the bottom of the screen.
Transcribed Image Text:**Chemistry Problem: Reaction Mass Calculation** **Problem Statement:** If 25.0 g of \( \text{NH}_3 \) and 45.0 g of \( \text{O}_2 \) react in the following reaction, what is the mass in grams of \( \text{NO} \) that will be formed? \[ 4 \text{NH}_3 (g) + 5 \text{O}_2 (g) \rightarrow 4 \text{NO} (g) + 6 \text{H}_2\text{O} (g) \] **Calculation Setup:** - **Input:** The input section for answers is labeled "g" for grams. - **Calculator Interface:** A numeric keypad is provided for entering the final calculation, with digits 0-9, a decimal point, plus/minus sign, backspace, and clear operations available. An option for scientific notation ("x 10") is also present for precise calculations. **Instructions for Use:** To solve this problem, you should: 1. Determine the limiting reactant using stoichiometry. 2. Calculate the theoretical yield of \( \text{NO} \) based on the limiting reactant. 3. Enter your answer using the provided keypad, ensuring the mass is recorded in grams. Make sure to double-check your calculations and use the clear button to reset if needed. For further explanation or resources, tap or pull up the additional resources section provided at the bottom of the screen.
**Question 4 of 6**

**Submit**

**Problem:**

What is the mass in grams of carbon dioxide that would be required to react with 15.0 g of LiOH in the following chemical reaction?

\[ 2 \text{LiOH(s)} + \text{CO}_2(\text{g}) \rightarrow \text{Li}_2\text{CO}_3(\text{s}) + \text{H}_2\text{O(l)} \]

**Input Section:**

A numeric keypad is provided for entering the answer in grams (g). It includes digits 0-9, a decimal point, a plus/minus key, and buttons to clear or delete entries.

**Additional Resources:**

There is an option to tap for additional resources.
Transcribed Image Text:**Question 4 of 6** **Submit** **Problem:** What is the mass in grams of carbon dioxide that would be required to react with 15.0 g of LiOH in the following chemical reaction? \[ 2 \text{LiOH(s)} + \text{CO}_2(\text{g}) \rightarrow \text{Li}_2\text{CO}_3(\text{s}) + \text{H}_2\text{O(l)} \] **Input Section:** A numeric keypad is provided for entering the answer in grams (g). It includes digits 0-9, a decimal point, a plus/minus key, and buttons to clear or delete entries. **Additional Resources:** There is an option to tap for additional resources.
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