For each of the scenarios, identify the order with respect to the reactant, A. A → products The half-life of A is independent of the initial concentration of [A]. order: A three-fold increase in the initial concentration of A leads to a nine-fold increase in the initial rate. order:

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**Identifying Reaction Order Based on Given Scenarios for Reactant A**

**Reaction:** 
\[ A \rightarrow \text{products} \]

### Scenario 1:
**Observation:** The half-life of A is independent of the initial concentration \([A]\).

**Order Identification:**
- **Order:** [Text Box for Response]

### Scenario 2:
**Observation:** A three-fold increase in the initial concentration of A leads to a nine-fold increase in the initial rate.

**Order Identification:**
- **Order:** [Text Box for Response]

In these scenarios, you are asked to identify the reaction order with respect to reactant A based on given experimental observations. Consider how the changes in concentration affect the rate of reaction and the half-life to determine the order.
Transcribed Image Text:**Identifying Reaction Order Based on Given Scenarios for Reactant A** **Reaction:** \[ A \rightarrow \text{products} \] ### Scenario 1: **Observation:** The half-life of A is independent of the initial concentration \([A]\). **Order Identification:** - **Order:** [Text Box for Response] ### Scenario 2: **Observation:** A three-fold increase in the initial concentration of A leads to a nine-fold increase in the initial rate. **Order Identification:** - **Order:** [Text Box for Response] In these scenarios, you are asked to identify the reaction order with respect to reactant A based on given experimental observations. Consider how the changes in concentration affect the rate of reaction and the half-life to determine the order.
**Transcription for Educational Website:**

---

A three-fold increase in the initial concentration of A leads to a 1.73-fold increase in the initial rate.

**Order:**

[Text Box for Input]

---

The time required for [A] to decrease from \([A]_0\) to \([A]_0/2\) is equal to the time required for [A] to decrease from \([A]_0/2\) to \([A]_0/4\).

**Order:**

[Text Box for Input]

---

The rate of decrease of [A] is a constant.

---

Note: Please provide the order of reactions based on the provided scenarios.
Transcribed Image Text:**Transcription for Educational Website:** --- A three-fold increase in the initial concentration of A leads to a 1.73-fold increase in the initial rate. **Order:** [Text Box for Input] --- The time required for [A] to decrease from \([A]_0\) to \([A]_0/2\) is equal to the time required for [A] to decrease from \([A]_0/2\) to \([A]_0/4\). **Order:** [Text Box for Input] --- The rate of decrease of [A] is a constant. --- Note: Please provide the order of reactions based on the provided scenarios.
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