Laser – Accessory Set

Designed for use with any low power laser to enable a number of interesting experiments to be performed. The kit contains a diffraction grating 80 lines/mm; diffraction grating 300 lines/mm; single slit tapered; double slit tapered; metal gauze 300 mesh; circular apertures 1.0 -0.62 -0.39 -and 0.29 mm diameter; Hologram; 2 polaroid films; (NB All the above items are mounted between glass plates in a 35 mm slide). Lenses – 38 mm diameter :- 2 bi convex 100 mm fl; 1 bi convex 250 mm fl; 1 bi convex 1000 mm fl; 1 bi concave 100 mm fl; 1 bi concave 250 mm fl; acrylic wedge prism – rectangular section 85 x 60 x 12mm, with 10 degree wedge for half the length; adjustable slit; metal plate with 1.7 mm diameter hole; black glass plate -50 x 50 x 5 mm; pin/needle holder with recess for plasticine; 3 x slide holders to hold 35 mm slides and 38 mm diameter lens; plastic storage box. Applications include interference by division of the wave front, by division of amplitude, diffraction effects (e.g. Fresnel -Fraunhofer), diffraction by apertures and spherical objects, polarization and properties of holograms can be investigated.

Designed for use with any low power laser to enable a number of interesting experiments to be performed. The kit contains a diffraction grating 80 lines/mm; diffraction grating 300 lines/mm; single slit tapered; double slit tapered; metal gauze 300 mesh; circular apertures 1.0 -0.62 -0.39 -and 0.29 mm diameter; Hologram; 2 polaroid films; (NB All the above items are mounted between glass plates in a 35 mm slide). Lenses – 38 mm diameter :- 2 bi convex 100 mm fl; 1 bi convex 250 mm fl; 1 bi convex 1000 mm fl; 1 bi concave 100 mm fl; 1 bi concave 250 mm fl; acrylic wedge prism – rectangular section 85 x 60 x 12mm, with 10 degree wedge for half the length; adjustable slit; metal plate with 1.7 mm diameter hole; black glass plate -50 x 50 x 5 mm; pin/needle holder with recess for plasticine; 3 x slide holders to hold 35 mm slides and 38 mm diameter lens; plastic storage box. Applications include interference by division of the wave front, by division of amplitude, diffraction effects (e.g. Fresnel -Fraunhofer), diffraction by apertures and spherical objects, polarization and properties of holograms can be investigated.

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