• DocumentCode
    839140
  • Title

    Measurement of physical constants using noise

  • Author

    Engelberg, Shlomo ; Bendelac, Yona

  • Author_Institution
    Jerusalem Coll. of Technol.-Machin Lev, Israel
  • Volume
    6
  • Issue
    4
  • fYear
    2003
  • Firstpage
    49
  • Lastpage
    52
  • Abstract
    Measuring physical constants by examining suitable types of noise has a long history. In this experiment, in contrast to previous works, the computer does much of the data gathering and processing. Once an undergraduate student understands the elements of the theory of thermal and shot noise, a little bit about Windows commands that interface with the SoundBlaster, and something of the filter design using MATLAB, the student will be able to design the apparatus and implement the measurements described in this article. Using well-known formulas for thermal and shot noise, we designed experiments for measuring two physical constants: the Boltzmann constant and the charge on the electron. We were able to perform the experiments in a particularly simple fashion by making use of widely available computer-based measurement and processing tools. In particular, the measurement of the Boltzmann constant only required one operational amplifier and three resistors. Our measurements achieved reasonable accuracies, considering the nature of the instruments with which we performed the measurements. The experiments are well suited to use in a laboratory setting, and they allow one to see some of the connections between random noise, physics and signal processing.
  • Keywords
    charge measurement; computerised instrumentation; constants; physics computing; random noise; shot noise; signal processing; student experiments; thermal noise; Boltzmann constant; MATLAB; SoundBlaster; amplifier; computer; computer-based measurement tools; computer-based processing tools; data gathering; data processing; electron charge; filter design; noise theory; noise type; physical constants measurement; physics; random noise; resistors; signal processing; thermal noise; Acoustic noise; Charge measurement; Current measurement; Filtering theory; Filters; History; MATLAB; Noise measurement; Particle measurements; Performance evaluation;
  • fLanguage
    English
  • Journal_Title
    Instrumentation & Measurement Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    1094-6969
  • Type

    jour

  • DOI
    10.1109/MIM.2003.1251483
  • Filename
    1251483