Objective: Determine the focal length of a lens using the Bessel method
On an optical bench it is possible to set up a light source, a lens, a screen and an object to be imaged in such a way that a well focussed image appears on the screen ...
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Objective: Record and interpret transmission spectra of transparent bodies
A digital spectrophotometer is used to measure transmission spectra. In this instrument the transmitted light collected by an optical fibre is separated into its ...
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Objective: Demonstrate the wave nature of light and determine the wavelength
Diffraction of light by a single slit can be described as the superposition of coherent wavelets which, according to Huygens’ principle, spread out from the ...
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Objective: Demonstrate the wave nature of light and determine the wavelength.
The diffraction of light by multiple slits or a grating can be described by considering how the individual components of the coherent wave radiation are superimposed ...
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Objective: Demonstrate and investigate how a Michelson interferometer works
In a Michelson interferometer a coherent light beam is separated into two rays travelling in different directions by inserting a half-silvered mirror in the path ...
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Objective: Demonstration of “quantum erasure” in an experiment by analogy
Light itself can be described in quantum mechanics by means of wave equations. From this it is possible to derive the spatial distribution of the probability ...
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Objective: Investigate the rotation of the plane of polarisation by sugar solutions
Sugar solutions are optically active, in other words they rotate the plane of polarisation of any linearly polarised light that is passed through them. The ...
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Objective: Determine the velocity of light from the transit time of short light pulses
The fact that light is propagated at a finite speed can be demonstrated by a simple transit time measurement. This is achieved by using very short light ...
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