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Introductory Chemistry: A Foundation
9th Edition
ISBN:9781337399425
Author:Steven S. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Donald J. DeCoste
Chapter13: Gases
Section: Chapter Questions
Problem 18QAP
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### Experiment 4: Boyle's Law
#### Data Sheet

**Table 1**

| Pressure P (mmHg) | Volume V (ml) | 1/P (cm²/mg) | Log P | Log V | PV (S.N) |
|------------------|---------------|--------------|--------|--------|----------|
| 937              | 193           |              |        |        |          |
| 878              | 204           |              |        |        |          |
| 804              | 220           |              |        |        |          |
| 764              | 230           |              |        |        |          |
| 701              | 247           |              |        |        |          |
| 640              | 266           |              |        |        |          |
| 575              | 291           |              |        |        |          |

**Graph 1:** Relationship between Pressure P and Volume V

**Graph 2:** Relationship between Volume V and 1/P

**Graph 3:** Relationship between Log P and Log V

**Temperature:** 23.0 °C

**Significant Figures:**
- Pressure P, Volume V, and 1/P: 3 Significant Figures (3 SF)
- Log P and Log V: 4 Significant Figures (4 SF)
- PV: 3 Significant Figures (Scientific Notation) (3 SF (S.N))

This table showcases the different pressure and volume measurements taken during the experiment, which can be used to plot the respective graphs for Boyle's Law analysis. Each column contains values necessary for the computation and graph plotting to demonstrate Boyle's Law, which states that the pressure of a gas is inversely proportional to its volume at constant temperature.
Transcribed Image Text:### Experiment 4: Boyle's Law #### Data Sheet **Table 1** | Pressure P (mmHg) | Volume V (ml) | 1/P (cm²/mg) | Log P | Log V | PV (S.N) | |------------------|---------------|--------------|--------|--------|----------| | 937 | 193 | | | | | | 878 | 204 | | | | | | 804 | 220 | | | | | | 764 | 230 | | | | | | 701 | 247 | | | | | | 640 | 266 | | | | | | 575 | 291 | | | | | **Graph 1:** Relationship between Pressure P and Volume V **Graph 2:** Relationship between Volume V and 1/P **Graph 3:** Relationship between Log P and Log V **Temperature:** 23.0 °C **Significant Figures:** - Pressure P, Volume V, and 1/P: 3 Significant Figures (3 SF) - Log P and Log V: 4 Significant Figures (4 SF) - PV: 3 Significant Figures (Scientific Notation) (3 SF (S.N)) This table showcases the different pressure and volume measurements taken during the experiment, which can be used to plot the respective graphs for Boyle's Law analysis. Each column contains values necessary for the computation and graph plotting to demonstrate Boyle's Law, which states that the pressure of a gas is inversely proportional to its volume at constant temperature.
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