**LE CHATELIER’S PRINCIPLE** Le Chatelier’s Principle states that when a system at equilibrium is subjected to a stress, the system will shift its equilibrium point in order to relieve the stress. Complete the following chart by writing left, right, or none for equilibrium shift, and decreases, increases, or remains the same for the concentrations of reactants and products, and for the value of K. **12.6 kcal + H₂(g) + I₂(g) ⇄ 2HI(g)** | Stress | Equilibrium Shift | [H₂] | [I₂] | [HI] | K_eq | |-------------------------|-------------------|-------------|----------------|-----------|------------------| | 1. Add H₂ | right | ___ | decreases | increases | Remains the same | | 2. Add I₂ | | | | | | | 3. Add HI | | | | | | | 4. Remove H₂ | | ___ | | | | | 5. Remove I₂ | | | ___ | | | | 6. Remove HI | | | | ___ | | | 7. Increase Temperature | | | | | | | 8. Decrease Temperature | | | | | | | 9. Increase Pressure | | | | | | | 10. Decrease Pressure | | | | | |

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Le Chatelier's Principle states that when a system at equilibrium is subjected to a stress, the system will shift it equilibrium point in order to relive the stress.

Can you please complete the attached chart by writing left, right, or none for equilibrium shift, and decreases, increases or remains the same for concentrations of reactants and products and for the value of K.

**LE CHATELIER’S PRINCIPLE**

Le Chatelier’s Principle states that when a system at equilibrium is subjected to a stress, the system will shift its equilibrium point in order to relieve the stress.

Complete the following chart by writing left, right, or none for equilibrium shift, and decreases, increases, or remains the same for the concentrations of reactants and products, and for the value of K.

**12.6 kcal + H₂(g) + I₂(g) ⇄ 2HI(g)**

| Stress                  | Equilibrium Shift | [H₂]        | [I₂]           | [HI]      | K_eq             |
|-------------------------|-------------------|-------------|----------------|-----------|------------------|
| 1. Add H₂               | right             | ___         | decreases      | increases | Remains the same |
| 2. Add I₂               |                   |             |                |           |                  |
| 3. Add HI               |                   |             |                |           |                  |
| 4. Remove H₂            |                   | ___         |                |           |                  |
| 5. Remove I₂            |                   |             | ___            |           |                  |
| 6. Remove HI            |                   |             |                | ___       |                  |
| 7. Increase Temperature |                   |             |                |           |                  |
| 8. Decrease Temperature |                   |             |                |           |                  |
| 9. Increase Pressure    |                   |             |                |           |                  |
| 10. Decrease Pressure   |                   |             |                |           |                  |
Transcribed Image Text:**LE CHATELIER’S PRINCIPLE** Le Chatelier’s Principle states that when a system at equilibrium is subjected to a stress, the system will shift its equilibrium point in order to relieve the stress. Complete the following chart by writing left, right, or none for equilibrium shift, and decreases, increases, or remains the same for the concentrations of reactants and products, and for the value of K. **12.6 kcal + H₂(g) + I₂(g) ⇄ 2HI(g)** | Stress | Equilibrium Shift | [H₂] | [I₂] | [HI] | K_eq | |-------------------------|-------------------|-------------|----------------|-----------|------------------| | 1. Add H₂ | right | ___ | decreases | increases | Remains the same | | 2. Add I₂ | | | | | | | 3. Add HI | | | | | | | 4. Remove H₂ | | ___ | | | | | 5. Remove I₂ | | | ___ | | | | 6. Remove HI | | | | ___ | | | 7. Increase Temperature | | | | | | | 8. Decrease Temperature | | | | | | | 9. Increase Pressure | | | | | | | 10. Decrease Pressure | | | | | |
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