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Ch 35: Optical Instruments
Knight Calc - Physics for Scientists and Engineers 5th Edition
Knight Calc5th EditionPhysics for Scientists and EngineersISBN: 9780137344796당신이 사용하는 게 아니라요?교과서 변경
35장, 문제 42

High-power lasers are used to cut and weld materials by focusing the laser beam to a very small spot. This is like using a magnifying lens to focus the sun's light to a small spot that can burn things. As an engineer, you have designed a laser cutting device in which the material to be cut is placed 5.0 cm behind the lens. You have selected a high-power laser with a wavelength of 1.06 μm. Your calculations indicate that the laser must be focused to a 5.0-μm-diameter spot in order to have sufficient power to make the cut. What is the minimum diameter of the lens you must install?

검증된 단계별 안내
1
Step 1: Understand the problem requirements. The goal is to determine the minimum diameter of the lens required to focus the laser beam to a 5.0-μm-diameter spot. This involves concepts of diffraction and the relationship between lens diameter, wavelength, and focal spot size.
Step 2: Recall the formula for the diffraction-limited spot size, which is given by the equation: d=2.44λfD, where d is the spot diameter, λ is the wavelength of the laser, f is the focal length of the lens, and D is the diameter of the lens.
Step 3: Rearrange the formula to solve for the lens diameter D: D=2.44λfd. Substitute the given values: λ = 1.06 μm, f = 5.0 cm = 50 mm, and d = 5.0 μm.
Step 4: Convert all units to consistent dimensions. Since the wavelength and spot diameter are given in micrometers (μm), ensure the focal length is converted to micrometers: f=50,000μm. This ensures all values are in the same unit system.
Step 5: Substitute the values into the rearranged formula and simplify. The calculation will yield the minimum lens diameter D. Ensure the result is expressed in appropriate units (e.g., millimeters or centimeters) for practical use in engineering design.

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이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
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주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Focusing Light

Focusing light involves converging light rays to a point using lenses or mirrors. In this context, a lens is used to focus a laser beam to a small diameter, which increases the intensity of the light at that point. The ability to focus light effectively is crucial for applications like cutting and welding, where high energy concentration is needed.
추천 영상:
가이드 코스
10:30
Ray Nature of Light

Laser Wavelength

The wavelength of a laser, measured in micrometers (μm), determines its color and energy. A wavelength of 1.06 μm indicates that the laser operates in the infrared spectrum, which is effective for cutting materials. Understanding the wavelength is essential for calculating how the laser interacts with different materials and how it can be focused.
추천 영상:
가이드 코스
05:42
Unknown Wavelength of Laser through Double Slit

Lens Diameter Calculation

The diameter of the lens affects the amount of light that can be collected and focused. To achieve a specific spot size, such as the 5.0-μm diameter required for cutting, the lens diameter must be calculated based on the distance from the lens to the material and the properties of the laser. This calculation ensures that the laser beam is concentrated enough to deliver the necessary power for effective cutting.
추천 영상:
가이드 코스
05:38
Lens Maker Equation
관련 실천
교과서 질문

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