Find the Power of the lens necessary to COrrect an eye With a far p0Int of 241CM BFind the power of the lens necessary to Correct an eye with a far point Of 99.0 cm

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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**Title: Understanding Lens Power for Vision Correction**

**Objective:**

To calculate the power of lenses necessary to correct vision in two specific scenarios, where the eye's far point is limited.

---

**Tasks:**

1. **Calculate Lens Power for a Far Point of 24.1 cm:**

   Determine the optical power needed to correct an eye that can only focus on objects up to 24.1 cm away.

2. **Calculate Lens Power for a Far Point of 49.0 cm:**

   Determine the optical power needed to correct an eye that can only focus on objects up to 49.0 cm away.

---

**Explanation:**

When the far point of the eye is less than infinity (in the case of myopia or nearsightedness), corrective lenses with appropriate power are required to allow for normal vision. The power of the lens (in diopters) is calculated using the formula:

\[ P = \frac{1}{f} \]

where \( P \) is the power in diopters and \( f \) is the focal length in meters. The focal length should be adjusted according to the far point distance of the eye in question.

---

**Note:**

Ensure to convert all measurements into meters before performing calculations as the standard unit for focal length in the lens power formula is meters.
Transcribed Image Text:**Title: Understanding Lens Power for Vision Correction** **Objective:** To calculate the power of lenses necessary to correct vision in two specific scenarios, where the eye's far point is limited. --- **Tasks:** 1. **Calculate Lens Power for a Far Point of 24.1 cm:** Determine the optical power needed to correct an eye that can only focus on objects up to 24.1 cm away. 2. **Calculate Lens Power for a Far Point of 49.0 cm:** Determine the optical power needed to correct an eye that can only focus on objects up to 49.0 cm away. --- **Explanation:** When the far point of the eye is less than infinity (in the case of myopia or nearsightedness), corrective lenses with appropriate power are required to allow for normal vision. The power of the lens (in diopters) is calculated using the formula: \[ P = \frac{1}{f} \] where \( P \) is the power in diopters and \( f \) is the focal length in meters. The focal length should be adjusted according to the far point distance of the eye in question. --- **Note:** Ensure to convert all measurements into meters before performing calculations as the standard unit for focal length in the lens power formula is meters.
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