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
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Plot 2 linear graphs with slope
![**Title: Optical Properties of Lenses**
**Introduction: Understanding Lens Behavior**
This table provides experimental data demonstrating the behavior of convex and concave lenses with a focal point at varying distances. The measurements are based on lenses with focal lengths of 200 mm and 100 mm, respectively.
**Data Table: Lens Imaging Properties**
- **Object Position (do) in cm:** This column indicates the position of the object in centimeters from the lens.
- **Image Distance (dI) in cm:** This column shows the distance of the image produced by the lens in centimeters.
- **Image Size (hI):** This column describes the height of the image formed.
| Object Position (do) cm | Image Distance (dI) cm | Image Size (hI) |
|-------------------------|-----------------------|-----------------|
| 15 | 32.7 | 9.05 |
| 25 | 18.3 | 3.175 |
| 35 | 14.8 | 1.905 |
| 45 | 13.8 | 1.428 |
| 55 | 13.2 | 1.111 |
| 65 | 12.6 | 0.9525 |
| 75 | 12.5 | 0.8712 |
**Analysis: How Lens Type Affects Imaging**
The data demonstrates how varying the object position affects both the image distance and size. For lenses, the image distance decreases as the object moves further away, and the image size becomes smaller, which is consistent with lens imaging principles.
Researchers utilize this fundamental understanding to explore lens applications in fields such as photography, vision correction, and optical instruments design.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F83bd02c6-d02f-4764-a848-15fcab9c3f4f%2Fe477b6f6-2e29-4205-8a44-6273b3121f20%2F7fyzbol_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Title: Optical Properties of Lenses**
**Introduction: Understanding Lens Behavior**
This table provides experimental data demonstrating the behavior of convex and concave lenses with a focal point at varying distances. The measurements are based on lenses with focal lengths of 200 mm and 100 mm, respectively.
**Data Table: Lens Imaging Properties**
- **Object Position (do) in cm:** This column indicates the position of the object in centimeters from the lens.
- **Image Distance (dI) in cm:** This column shows the distance of the image produced by the lens in centimeters.
- **Image Size (hI):** This column describes the height of the image formed.
| Object Position (do) cm | Image Distance (dI) cm | Image Size (hI) |
|-------------------------|-----------------------|-----------------|
| 15 | 32.7 | 9.05 |
| 25 | 18.3 | 3.175 |
| 35 | 14.8 | 1.905 |
| 45 | 13.8 | 1.428 |
| 55 | 13.2 | 1.111 |
| 65 | 12.6 | 0.9525 |
| 75 | 12.5 | 0.8712 |
**Analysis: How Lens Type Affects Imaging**
The data demonstrates how varying the object position affects both the image distance and size. For lenses, the image distance decreases as the object moves further away, and the image size becomes smaller, which is consistent with lens imaging principles.
Researchers utilize this fundamental understanding to explore lens applications in fields such as photography, vision correction, and optical instruments design.
![### Lens Experiment Data
This table presents data from an experiment using a 200 mm lens. The aim is to understand how the object position affects the image distance and size when using lenses.
#### Table Details:
- **Columns:**
- **Object Position (do) cm**: The distance between the object and the lens, measured in centimeters.
- **Image Distance (di) cm**: The distance from the lens to the image formed, measured in centimeters.
- **Image Size (hi)**: The size of the image observed, in arbitrary units.
- **Data Entries:**
- When the object position is 30 cm, the image distance is 60.8 cm and the image size is 8.072.
- At 40 cm object position, the image distance is 40.3 cm and the image size is 4.286.
- At 50 cm object position, the image distance is 34 cm and the image size is 2.858.
- At 60 cm object position, the image distance is 30.8 cm and the image size is 2.22.
- At 70 cm object position, the image distance is 28.6 cm and the image size is 1.746.
- At 80 cm object position, the image distance is 27.4 cm and the image size is 1.429.
This data helps in understanding the relationship between object position and image characteristics using lenses, which are essential concepts in optics.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F83bd02c6-d02f-4764-a848-15fcab9c3f4f%2Fe477b6f6-2e29-4205-8a44-6273b3121f20%2Fw22tk5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:### Lens Experiment Data
This table presents data from an experiment using a 200 mm lens. The aim is to understand how the object position affects the image distance and size when using lenses.
#### Table Details:
- **Columns:**
- **Object Position (do) cm**: The distance between the object and the lens, measured in centimeters.
- **Image Distance (di) cm**: The distance from the lens to the image formed, measured in centimeters.
- **Image Size (hi)**: The size of the image observed, in arbitrary units.
- **Data Entries:**
- When the object position is 30 cm, the image distance is 60.8 cm and the image size is 8.072.
- At 40 cm object position, the image distance is 40.3 cm and the image size is 4.286.
- At 50 cm object position, the image distance is 34 cm and the image size is 2.858.
- At 60 cm object position, the image distance is 30.8 cm and the image size is 2.22.
- At 70 cm object position, the image distance is 28.6 cm and the image size is 1.746.
- At 80 cm object position, the image distance is 27.4 cm and the image size is 1.429.
This data helps in understanding the relationship between object position and image characteristics using lenses, which are essential concepts in optics.
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