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P1.5.3.1 Free rotational oscillations - Measuring with a hand-held stopclock
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P1.5.3.2 Forced rotational oscillations - Measuring with a hand-held stopclock
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P1.5.3.3 Free rotational oscillations - Recording with CASSY
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P1.5.3.4 Forced harmonic and chaotic rotational oscillations - Recording with CASSY
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P1.7.5.3 Diffraction of ultrasonic waves at a single slit
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P1.7.5.4 Diffraction of ultrasonic waves at a double slit, a multiple slit and a grating
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P3.8.3.2 Deflection of electrons in an axial magnetic field
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P3.8.4.1 Hot-cathode emission in a vacuum: determining the polarity and estimating the specific charge of the emitted charge carriers
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P3.8.5.1 Investigating the deflection of electrons in electrical and magnetic fields
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P3.8.5.2 Assembling a velocity filter (Wien filter) to determine the specific electron charge
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P5.5.2.4 The Wien's displacement law - spectral recording of the black body radiation
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P6.1.3.1 Determining the specific charge of the electron
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P6.5.3.1 Nuclear magnetic resonance in polystyrene, glycerin and Teflon
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P7.2.1.5 Determining the band gap of germanium
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P7.2.3.1 Recording the current-voltage characteristics of a CdS photoresistor
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C1.3.1.1 Electrolytic water decomposition according to Hoffmann
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C3.4.3.1 Nuclear magnetic resonance (NMR) on water, polystyrene, glycerine and Teflon
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C4.4.5.2 Determination of the Faraday constant
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D3.9.4.1a Thermionic emission - Perrin tube
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D3.9.4.4b Deflection of electron beams in a magnetic field - Perrin tube and a pair of Helmholtz coils
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