Check the excel file on Moodle and put your element here Mn and the mass of your I. element here 58.2 2. Write the reaction for your element reacting with copper (I) sulfate in a single displacement reaction. (Remember to include phases). (If your element has variable charges possible, form the product with the 2 cation). 3. When your # of grams of your element reacts with excess copper (II) sulfate solution, how matny grams of copper solid will form? (Use the chemical reaction from question # 2). (show work) 4. When your clement is added to a solution of Zn(NO:). docs a reaction occur? Either show the balanced reaction or state NR (for No Reaction) and explain why!

Chemistry
10th Edition
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
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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**Educational Chemistry Exercise: Exploring Reactions with Elements**

1. **Element Identification:**
   - Access the excel file on Moodle and identify your element. Record your element symbol (e.g., Mn) and find the mass of your element [given example: 58.2 grams].

2. **Single Displacement Reaction:**
   - Write the chemical reaction for your element reacting with copper (II) sulfate in a single displacement reaction. Ensure to include the phases of each compound. If your element can have multiple charges, use the product with the +2 cation.

3. **Solid Formation Calculation:**
   - Calculate how many grams of copper solid will form when the given number of grams of your element reacts with excess copper (II) sulfate solution. Use the balanced chemical reaction from question 2 and show your work for clarity.

4. **Reaction with Zinc Nitrate:**
   - Test if a reaction occurs when your element is added to a solution of Zn(NO₃)₂. Provide the balanced chemical reaction or state NR (No Reaction) and explain the reasoning behind your conclusion.

5. **Addition Reaction with Oxygen:**
   - Compose and balance the chemical equation for your element reacting with oxygen in an addition reaction. Include all phases. If there is a possibility of multiple cations, select the salt with a -2 charge on the element in the product.

6. **Product Formation with Oxygen:**
   - Determine how many grams of product can form when the given number of grams of your element reacts with excess oxygen, based on the reaction from question 5. Provide detailed calculations and show your work.

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**Note:** This exercise requires accessing external resources for specific data and involves balancing chemical equations, understanding reaction types, and applying stoichiometry for quantitative analysis.
Transcribed Image Text:**Educational Chemistry Exercise: Exploring Reactions with Elements** 1. **Element Identification:** - Access the excel file on Moodle and identify your element. Record your element symbol (e.g., Mn) and find the mass of your element [given example: 58.2 grams]. 2. **Single Displacement Reaction:** - Write the chemical reaction for your element reacting with copper (II) sulfate in a single displacement reaction. Ensure to include the phases of each compound. If your element can have multiple charges, use the product with the +2 cation. 3. **Solid Formation Calculation:** - Calculate how many grams of copper solid will form when the given number of grams of your element reacts with excess copper (II) sulfate solution. Use the balanced chemical reaction from question 2 and show your work for clarity. 4. **Reaction with Zinc Nitrate:** - Test if a reaction occurs when your element is added to a solution of Zn(NO₃)₂. Provide the balanced chemical reaction or state NR (No Reaction) and explain the reasoning behind your conclusion. 5. **Addition Reaction with Oxygen:** - Compose and balance the chemical equation for your element reacting with oxygen in an addition reaction. Include all phases. If there is a possibility of multiple cations, select the salt with a -2 charge on the element in the product. 6. **Product Formation with Oxygen:** - Determine how many grams of product can form when the given number of grams of your element reacts with excess oxygen, based on the reaction from question 5. Provide detailed calculations and show your work. --- **Note:** This exercise requires accessing external resources for specific data and involves balancing chemical equations, understanding reaction types, and applying stoichiometry for quantitative analysis.
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