Young's double slit experiment

Item No. P1195200 | Type: Experiments

10 Minutes
10 Minutes
grades 10-13
medium
Pupils
EUR 776.50
Content 1 piece
EUR 924.04 Incl. VAT

I'm also part of:

Student set Optics 3, Wave optics, TESS advanced Physics

Item No. 15280-88 | Type: Set

Delivery time: available
EUR 460.00 Excl. VAT
EUR 547.40 Incl. VAT

Principle

In 1801 Thomas Young conducted an experiment in which he shone light from a single light source onto two slits, thus creating two beams of light which, when recombined, displayed the interference phenomenon. The classical investigation delivered final proof of the wave nature of light.
In the first experiment the students will become familiar with the principle of Young's experiment on interference. In a second experiment they will ascertain the wavelength λ of red light.

Benefits

  • Multifunctional light box - All-in-one: Can be used for geometric optics on the table, colour mixing and on an optical bench
  • Extension with others sets at anytime, no additional light sources needed, recognition value for students

Tasks

How can we use diffraction at a double slit to prove that light interferes? Direct a narrow beam of light onto a double slit and observe what happens. Determine the distance between the virtual light sources and, using this and the interference pattern, determine the wavelength λ of red light.

Name
Filename
Filesize
Filetyp
(en) Experiment guide
p1195200e .pdf
Filesize 0.48 Mb
pdf
(de) Versuchsbeschreibung
p1195200_de .pdf
Filesize 2.03 Mb
pdf
(ru) Versuchsbeschreibung
p1195200_ru .pdf
Filesize 2.21 Mb
pdf