PDF (Instruction Sheet) |
[524 013] Sensor-CASSY 2
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PDF (Description from CASSY Lab) |
P1.3.3.4 Path-time and velocity-time diagrams of straight motion - Recording and evaluating with CASSY
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PDF (Description from CASSY Lab) |
P1.3.5.3 Free fall: multiple measurements with the g ladder
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P1.4.1.2 Path-time diagrams of rotational motions - Recording and evaluating with CASSY
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P1.4.3.3 Centrifugal force of an orbiting body - Measuring with the central force apparatus and CASSY
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P1.4.4.3 Precession and nutation of a gyroscope
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P1.5.1.6 Pendulum with changeable acceleration due to gravity (variable g-pendulum)
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P1.5.2.1 Oscillations of a spring pendulum and determination of oscillation period as a function of the oscillating mass - Measuring with CASSY
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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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PDF (Description from CASSY Lab) |
P1.5.4.4 Coupled pendulum - Recording and evaluating with CASSY
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PDF (Description from CASSY Lab) |
P1.7.1.3 Acoustic beats - Recording with CASSY
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P1.7.2.1 Determining the oscillation frequency of a string as a function of the string length and tension
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P1.7.3.3 Determining the velocity of sound in air as a function of the temperature
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P1.7.3.4 Determining the velocity of sound in gases
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P1.7.3.5 Determining the velocity of sound in solids
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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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P1.7.7.2 Fourier analysis of the periodic signals of a function generator
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P1.7.7.3 Fourier analysis of an electric oscillator circuit
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P1.7.7.4 Fourier analysis of sounds
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P2.2.1.1 Determining the thermal conductivity of building materials using the single-plate method
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P2.2.1.2 Determining the thermal conductivity of building materials using the heat flux plate principle
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P2.2.1.3 Damping temperature fluctuations using multiple-layered walls
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P2.3.4.3 Converting electrical energy into heat energy - Measuring with CASSY
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P2.6.2.4 pV diagram of the hot-air engine as a heat engine - Recording and evaluating with CASSY
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P2.6.2.4 pV diagram of the hot-air engine as a heat engine - Recording and evaluating with CASSY
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P3.3.3.2 Measuring the force acting on current-carrying conductors in a homogeneous magnetic field - Recording with CASSY
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P3.3.3.3 Measuring the force acting on current-carrying conductors in the magnetic field of an air coil - Recording with CASSY
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P3.4.1.1 Generating a voltage surge in a conductor loop with a moving permanent magnet
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P3.4.3.2 Measuring the induction voltage in a conductor loop for a variable magnetic field - with Power-CASSY as variable source of current
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P3.4.5.3 Recording the voltage and current of a transformer under load as a function of time
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P3.4.5.4 Power transmission of a transformer
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P5.3.1.4 Diffraction at a single slit - Recording and evaluating with CASSY
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P5.3.1.5 Diffraction at a double slit and multiple slits - Recording and evaluating with CASSY
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P5.5.2.2 Stefan-Boltzmann law: measuring the radiant intensity of a "black body" as a function of temperature - Recording and evaluating with CASSY
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P5.6.3.3 Determining the velocity of light using a periodical light signal at a short measuring distance - measuring with the laser motion sensor S and CASSY
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P5.6.3.4 Determining the velocity of light for different propagation media - measuring with the laser motion sensor S and CASSY
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P6.1.2.3 Determining the electric unit charge after Millikan and verifying the charge quantification - Measuring the suspension voltage and the falling speed with CASSY
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P6.1.2.4 Determining the electric unit charge after Millikan and verifying the charge quantification - Measuring the rising and falling speed with CASSY
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P6.1.4.4 Determining Plancks constant - Recording the current-voltage characteristics, selection of wavelengths using interference filters on the optical bench
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P6.2.4.2 Franck-Hertz experiment with mercury - Recording and evaluation with CASSY
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P6.2.4.4 Franck-Hertz experiment with neon - Recording and evaluation with CASSY
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P6.3.5.1 Recording and calibrating an X-ray energy spectrum
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P6.3.5.2 Recording the energy spectrum of a molybdenum anode
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P6.3.5.3 Recording the energy spectrum of a copper anode
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P6.3.5.4 Investigation of the characteristic spectra as a function of the element's atomic number: K-lines
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P6.3.5.4 Investigation of the characteristic spectra as a function of the element's atomic number: K-lines
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P6.3.5.5 Investigation of the characteristic spectra as a function of the element's atomic number: L-lines
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P6.3.5.5 Investigation of the characteristic spectra as a function of the element's atomic number: L-lines
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P6.3.5.6 Energy-resolved Bragg reflection in different orders of diffraction
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P6.3.5.6 Energy-resolved Bragg reflection in different orders of diffraction
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P6.3.7.2 Compton effect: Measurement the energy of the scattered photons as a function of the scattering angle
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P6.3.7.2 Compton effect: Measurement the energy of the scattered photons as a function of the scattering angle
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P6.4.2.1 Statistical variations in determining counting rates
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P6.4.3.4 Determination of half-life of Cs-137 - Recording and evaluating the decay and production curve with CASSY
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P6.5.4.1 a spectroscopy of radioactive samples
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P6.5.4.2 Determining the energy loss of a radiation in air
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P6.5.4.3 Determining the energy loss of a radiation in aluminum and in gold
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P6.5.4.4 Determining age using a Ra-226 sample
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P6.5.5.1 Detecting ? radiation with a scintillation counter
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P6.5.5.2 Recording and calibrating a ? spectrum
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P6.5.5.3 Absorption of ? radiation
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P6.5.5.4 Identifying and determining the activity of radioactive samples
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P6.5.5.5 Recording a ß spectrum with a scintillation counter
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P6.5.5.6 Coincidence and ?-? angular correlation in positron decay
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P6.5.5.7 Coincidence at ? decay of cobalt
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P6.5.6.1 Quantitative observation of the Compton effect
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P6.6.2.1 Detection of Muons
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P7.2.1.3 Determining the density and mobility of charge carriers in n-Germanium
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P7.2.1.4 Determining the density and mobility of charge carriers in p-Germanium
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P7.2.1.5 Determining the band gap of germanium
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P7.2.2.1 Measuring the temperature-dependency of a noble-metal resistor
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P7.2.2.2 Measuring the temperature-dependency of a semiconductor resistor
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P7.2.6.1 Determining the transition temperature of a high-temperature superconductor
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P7.3.2.1 Recording the initial magnetization curve and the hysteresis curve of a ferromagnet and iron
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P7.5.1.1 Application of X-ray fluorescence for the non-destructive analysis of the chemical composition
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P7.5.1.1 Application of X-ray fluorescence for the non-destructive analysis of the chemical composition
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P7.5.1.2 Determination of the chemical composition of a brass sample by X-ray fluorescence analysis
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P7.5.1.2 Determination of the chemical composition of a brass sample by X-ray fluorescence analysis
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C1.7.2.2 Analysis of triprotic phosphoric acid by titration
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C2.2.2.2 The automated Blue Bottle Experiment - a reversible redox reaction
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C2.3.1.1 The calorific value of coal
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C2.3.1.3 The calorific value of fuel oil
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C2.3.2.1 Fractionated petroleum distillation with a bubble tray column
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C3.5.1.1 Determination of acid concentration by titration with drop counter
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C3.5.2.2 Conductometric titration of a hydrochloric acid solution with pH measurement
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C3.6.2.1 Continuous measurement of carbon dioxide concentration in the classroom
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C3.6.5.1 X-ray fluorescence analysis of chemical composition
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C3.6.5.2 The chemical composition of a brass specimen
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C4.1.1.1 Catalytic oxidation of tartaric acid with hydrogen peroxide
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C4.3.3.1 Determination of the heat of combustion of benzoic acid
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C4.4.7.1 Investigation of a PEM fuel cell stack
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C4.4.7.2 Recording the characteristic curves of a PEM fuel cell stack
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C6.1.4.1 Determination of the calorific value of olive oil with a demonstration calorimeter
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D1.3.5.4 Dependence of centrifugal force on the mass of the test body
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D1.3.5.5 Dependence of centrifugal force on the distance of the test body
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D1.3.5.6 Dependence of centrifugal force on the angular velocity
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D1.4.1.2a Recording the oscillation of a string pendulum Recording using Sensor-CASSY
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D1.4.1.3a Recording the oscillation of a spring pendulum Recording using Sensor-CASSY
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D1.5.2.2b Tones, sound, noise and pops Recording using Sensor-CASSY
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D1.5.2.3a Recording the oscillation of a tuning fork
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D1.5.3.1b Propagation of sound in the form of pressure fluctuations Recording using Sensor-CASSY
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D1.5.3.3a Velocity of sound in air - Measurement with Sensor-CASSY and CASSY-Display
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D1.5.4.1a Relationship between pitch and frequency - Measurement with Sensor-CASSY and CASSY-Display
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D1.7.1.4b Pressure due to weight of water - Measurement using Sensor-CASSY and CASSY-Display
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D1.7.3.1b Detecting the effect of a buoyancy force in liquids - Measurement via Sensor-CASSY and CASSY-Display
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D1.7.3.3b Dependence of the buoyancy force on the volume of the immersed body - Measurement via Sensor-CASSY and CASSY-Display
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D1.7.3.4b Dependence of the buoyancy force on the kind of liquid - Measurement via Sensor-CASSY and CASSY-Display
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D1.7.3.5c Archimedes principle - Measurement with Sensor-CASSY and CASSY-Display
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D2.3.3.1a Absorption of heat radiation - Measurement with Sensor-CASSY and CASSY-Display
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D2.3.3.2 Emission of heat - Leslies cube
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D2.3.4.1 How heat insulation depends on the material - Measurement with Sensor-CASSY (de)
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D2.3.4.2 Heat insulation in a Thermos flask - Measurement with Sensor-CASSY (de)
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D2.4.1.1a Determining the melting and the solidification temperature/candle wax - Measurement with Sensor-CASSY and CASSY-Display (de)
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D2.4.1.1b Determining the melting and the solidification temperature/Wood's metal - Measurement with Sensor-CASSY and CASSY-Display
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D2.4.2.1c Warming up water until it boils - Measurement with Sensor-CASSY and PC
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D2.5.1.1a Conservation of energy during the compression of air - Measurement with Sensor-CASSY and CASSY-Display
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D3.4.6.4a Electrical power and the luminance of light bulbs (de)
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D3.4.7.1b Efficiency of a DC motor - Measurement with Sensor-CASSY and CASSY-Display
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D3.4.7.2a Efficiency of a tachogenerator - Measurement with Sensor-CASSY and CASSY-Display
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D3.6.2.1b Stationary armature generator - Measurement via Sensor-CASSY
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D3.6.2.4b Rotating armature generators for generating alternating voltage - Measurement via Sensor-CASSY
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D3.6.2.5a Rotating armature generators for generating DC voltage - Measurement via Sensor-CASSY
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D4.1.1.1a Temperature-dependent resistors (PTC and NTC) - Assembly on plug-in board
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D5.1.2.4 Inverse square law for light
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D5.6.1.4b Infrared radiation in the continuous spectrum - Set-up with IR-sensor (de)
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