45 J of work are done on the gas in the process shown in (Figure 1). What is V₁ in cm³? Express your answer in cubic centimeters. ► View Available Hint(s) [V—| ΑΣΦ V₁ = Submit Provide Feedback cm3

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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**Transcription for Educational Website**

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**Problem Statement:**

45 J of work are done on the gas in the process shown in Figure 1.

**Question:**

What is \( V_1 \) in \( \text{cm}^3 \)?

Express your answer in cubic centimeters.

**Diagram Explanation:**

The diagram (Figure 1) presents a pressure-volume (p-V) graph depicting the process through which work is done on the gas. 

- The y-axis represents pressure \( p \) in kilopascals (kPa).
- The x-axis represents volume \( V \).

Key Points on the Graph:

- Initial point \( f \) is at a pressure of 100 kPa and volume \( V_1 \).
- Final point \( i \) is at a pressure of 300 kPa and volume \( 3V_1 \).

The graph shows a linear increase in both pressure and volume, moving from point \( f \) to point \( i \).

**Task:**

Calculate \( V_1 \) using the provided data and submit your answer in cubic centimeters.

**Submission Section:**

- Input Box for \( V_1 \) in \( \text{cm}^3 \).
- Submit Button to confirm the answer.

**Hints:**

- Use the relationship between work, pressure, and volume change if necessary to deduce \( V_1 \).

---

**Feedback Section:**

- Option to provide feedback on the question or resources given.
Transcribed Image Text:**Transcription for Educational Website** --- **Problem Statement:** 45 J of work are done on the gas in the process shown in Figure 1. **Question:** What is \( V_1 \) in \( \text{cm}^3 \)? Express your answer in cubic centimeters. **Diagram Explanation:** The diagram (Figure 1) presents a pressure-volume (p-V) graph depicting the process through which work is done on the gas. - The y-axis represents pressure \( p \) in kilopascals (kPa). - The x-axis represents volume \( V \). Key Points on the Graph: - Initial point \( f \) is at a pressure of 100 kPa and volume \( V_1 \). - Final point \( i \) is at a pressure of 300 kPa and volume \( 3V_1 \). The graph shows a linear increase in both pressure and volume, moving from point \( f \) to point \( i \). **Task:** Calculate \( V_1 \) using the provided data and submit your answer in cubic centimeters. **Submission Section:** - Input Box for \( V_1 \) in \( \text{cm}^3 \). - Submit Button to confirm the answer. **Hints:** - Use the relationship between work, pressure, and volume change if necessary to deduce \( V_1 \). --- **Feedback Section:** - Option to provide feedback on the question or resources given.
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