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Student Basic Set – Optics 2 – Digital Set – 30 Experiments
$0.00
ABOUT THIS PRODUCT:
Function and Applications
Supplementary equipment set for Basic set Optics 1 (1576-88). Together with the Optics Basic set and optional equipment TESS Optics color mixing, it is possible to perform 70 student experiments in total:
- Propagation of light (11 Experiments)
- Mirrors (11 Experiments)
- Refraction (10 Experiments)
- Lenses (14 Experiments)
- Colours (6 Experiments)
- The human eye (5 Experiments)
- Optical equipment (9 Experiments)
- Wave optics (4 Experiments)
In 2 experiments you can use the Cobra SMARTsense Sensor Light instead of the classic measuring device in combination with tablets (iOS and Android) and smartphones (Android). In these experiments, the digital data acquisition also provides a further didactic added value.
Benefits
- The ideal combination of classic experiments (practical competence) and digital data acquisition (media competence)
- Individual teaching structure possible: you can decide to choose the measuring instrument you want (classic or digital)
- Future-proof: Prepare the transition to the digital school today
- Perfectly matched to digital science lessons with tablets and smartphones
- Faster and higher learning success: The use of digital devices increases the identification and thus increases the motivation of the students
- Multifunctional student lamp – All-in-one: It can be used for geometrical optic basics either on the table, color mixing or on the optical bench
- Extension with set-up kits possible at any time and no additional lights required, thereby recognition value for the student guaranteed
Equipment and Technical Data
The equipment set consists of all necessary components for the experiments
Robust, stackable storage box with a foam insert fitting to the contained equipment
Cobra SMARTsense Light: Measuring range: 1 … 128 klx, resolution: 0.1 lx, sampling rate: 10 Hz
30 Experiments:
- Day and night
- The seasons
- The phases of the moon
- Solar and lunar eclipses (with the earth-moon model)
- The pinhole camera
- Luminous intensity (photometer)
- Illuminance (inverse square law)
- Projected image with a concave mirror
- Law of imagery for a concave mirror
- Determining the magnification of a concave mirror
- Images in a convex mirror
- Image obtained with a convex lens
- Determining the focal length of a convex lens
- Law of imagery for a convex lens
- Determining the magnification of a concave lens
- Image obtained with a concave lens
- Pincushion and barrel distortion
- The magnifying glass
- The structure of a microscope
- Determining the magnification of a microscope
- The astronomical telescope
- The Galilean telescope
- Determining the magnification of a telescope
- The camera
- The depth of focus of a camera
- The slide projector
- Diffraction at a grid
- Determination of the wavelength by grid diffraction
- Polarisation with filters
- Rotation of the polarisation plane with a sugar solution
+ 1 Cobra SMARTsense Light
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