Laser Diffraction Using Single & Double Slit

Laser Diffraction Using Single & Double Slit

3000.0 INR/Piece

Product Details:

  • Power 30W
  • Voltage 220-240V AC
  • Display Manual observation or external digital meter
  • Usage Physics experiments, demonstration of wave optics
  • Product Type Educational Laboratory Apparatus
  • Material Powder coated metal body, acrylic slits holder
  • Design Compact, educational design with adjustable slit system
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Laser Diffraction Using Single & Double Slit Price And Quantity

  • 3000.0 INR/Piece
  • 1 Piece
  • 0.1 mm to 0.5 mm
  • <1 mW (Class II laser)
  • Wave optics, laser physics, education & research
  • Laser safety shutter included
  • Slit position and distance adjustable
  • Single slit, double slit, power cord, manual
  • 10°C to 40°C
  • Interchangeable single and double slit plates
  • 50 Hz
  • Sturdy anti-slip platform
  • 630-680 nm (Red laser) approx.
  • Graduated scale for measurement

Laser Diffraction Using Single & Double Slit Product Specifications

  • Physics experiments, demonstration of wave optics
  • 350 mm x 250 mm x 150 mm
  • Photodiode detector for intensity measurement
  • N/A (mains operated)
  • Educational Laboratory Apparatus
  • Manual observation or external digital meter
  • Electric mains
  • Compact, educational design with adjustable slit system
  • 4 kg
  • Inbuilt semiconductor laser (typically 630-680 nm)
  • Powder coated metal body, acrylic slits holder
  • 220-240V AC
  • High precision measurement of diffraction patterns
  • 30W
  • 0.1 mm to 0.5 mm
  • <1 mW (Class II laser)
  • Wave optics, laser physics, education & research
  • Laser safety shutter included
  • Slit position and distance adjustable
  • Single slit, double slit, power cord, manual
  • 10°C to 40°C
  • Interchangeable single and double slit plates
  • 50 Hz
  • Sturdy anti-slip platform
  • 630-680 nm (Red laser) approx.
  • Graduated scale for measurement

Laser Diffraction Using Single & Double Slit Trade Information

  • All India

Product Description

To determine the wavelength using single & double slit diffraction method.

Apparatus Required;

Diode Laser 5 mW with power supply

Young`s Single & Double Slit.

Screen .

Optical bench with length 1 mtr.

Photo Detector with digital micrometer multirange.

Special Micrometer based movable uprights.



Versatility in Wave Optics Experimentation

This system offers interchangeable single and double slits, allowing users to seamlessly investigate distinct diffraction and interference patterns. The adjustable slit position and distance, along with slit widths ranging from 0.1 mm to 0.5 mm, enable diverse experimental setups for comprehensive wave optics demonstrations.


High Precision and Robust Design

Engineered for optimal measurement accuracy, the setup integrates a photodiode detector and graduated scale to ensure reliable intensity readings. The sturdy, powder-coated metal base and acrylic slit holder provide a durable foundation, and the system's compact form factors into classrooms, labs, or research environments.


Safe and User-Friendly Operation

Operating at <1 mW laser output power (Class II), this device incorporates a laser safety shutter and is housed in a design prioritizing safe use for students and researchers. Clear manual guidance and an easy-to-use interface make this apparatus suitable for all experience levels.

FAQ's of Laser Diffraction Using Single & Double Slit:


Q: How does the Laser Diffraction apparatus demonstrate wave optics phenomena?

A: This system utilizes a built-in semiconductor red laser directed through interchangeable single or double slits, producing visible diffraction and interference patterns. By adjusting the slit width and position, users can explore the principles of wave behavior and light coherence in hands-on physics experiments.

Q: What is the process for changing between single and double slit configurations?

A: The device comes with separate single and double slit plates. Users can easily swap between slits by inserting the desired plate into the acrylic slit holder, which is designed for quick and secure interchangeability. This facilitates various experiments without complex setup adjustments.

Q: When is it recommended to use the photodiode detector?

A: The photodiode detector should be used during precise measurement of intensity variations in diffraction patterns, especially in quantitative experiments. It allows for objective and accurate data collection, complementing manual observation or digital readout options.

Q: Where can this apparatus be effectively utilized?

A: Optimized for versatility, the setup is ideal for educational laboratories, research institutions, and classroom demonstrations. Its sturdy, anti-slip base ensures stable operation on lab benches, and the compact design facilitates transport and storage in academic environments.

Q: What safety features are included with this laser apparatus?

A: For user protection, the system integrates a Class II laser (<1 mW output), a dedicated laser safety shutter to block the beam during setup adjustments, and comprehensive instructions in the included manual. These features collectively promote safe operation for instructors and students alike.

Q: How does using this apparatus benefit students and researchers?

A: By providing hands-on demonstration of diffraction and interference, the apparatus fosters a deeper understanding of wave optics. Its high-precision measurement capabilities and ease of use enable accurate experiments, supporting both fundamental learning and advanced research.

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