3B Scientific Premium Franck-Hertz Experiment Heater, 180mm Length x 165mm Width x 335mm Height, 115V, 50/60 Hz

3B Scientific Premium Franck-Hertz Experiment Heater, 180mm Length x 165mm Width x 335mm Height, 115V, 50/60 Hz

$2,509.00

(as of 01/25/2016 at 15:38 UTC)

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SKU: B008N3GXEI Category:

Product Description

Highly evacuated electron tube containing mercury in a heating chamber for demonstrating the discrete nature (quantization) of the energy released by free electrons in collisions with mercury atoms, and for determining the excitation energy of the mercury resonance line (61S0 - 63P1), which is 4.9 eV. The electron tube must be heated in the chamber to generate the necessary mercury vapour pressure to achieve a sufficiently high probability of collisions between electrons and mercury atoms. Electron tube with a plane parallel electrode system consisting of an indirectly heated oxide cathode with aperture, a grid and a collecting electrode. Front plate with printed tube symbol visible from a distance. Electric heating chamber with continuous temperature control and digital temperature display showing actual and set-point temperatures. In lacquered metal housing with two observation windows, opening with spring clip for thermometer, and thermally insulated carrying handle. Temperature measurement and control is handled by an integrated microcontroller and a Pt100 thermocouple. 4 - 12V Heater voltage, 0 - 70V Grid voltage, 1.5V approximate Suppressor voltage, 400W Heater output, 160 - 240 degree C Temperature range, +/-1 degree approximate Temperature constancy, Tube measures 26mm diameter by 130mm height. Measures 180mm length by 165mm width by 335mm height.

Features

  • Highly evacuated electron tube containing mercury in a heating chamber for demonstrating the discrete nature of the energy released by free electrons in collisions with mercury atoms
  • It determines the excitation energy of the mercury resonance line (61S0 - 63P1), which is 4.9 eV
  • The electron tube must be heated in the chamber to generate the necessary mercury vapour pressure to achieve a sufficiently high probability of collisions between electrons and mercury atoms
  • Electron tube with a plane parallel electrode system consisting of an indirectly heated oxide cathode with aperture, a grid and a collecting electrode
  • Front plate with printed tube symbol visible from a distance

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