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Determination of e/m for the Electron. Introduction. In this experiment you will measure e/m, the ratio of the charge of an electron to the mass of an electron.
ratio, |e/m|, of the electron by observing their circular paths under the influence of a uniform magnetic For this experiment, our charged particle is an electron (q = e) and is steadily supplied by an . the Tables provided in Section 4, the Post-Laboratory Report. . determined from your calculation of the random error in e/m.
7 Jan 2009 Classen e/m Experiment Report Jennifer S. Nalley Lab Partner: Chris G. . The right hand rule proved helpful in the determination of the
Demonstration This experiment shows that a cathode ray is made up of particles with a constant ratio of charge to mass (e/m). 16 A similar calculation for the proton, with charge e = 1.6 x 10-19 Coulomb and e / M = 9.6 x 107C/kg leads to a
18 Mar 2015
This experiment measures e/m, the charge to mass ratio of the electron. . Your lab report should include an introduction, a data analysis section following the
Figure 2: Schematic of the e/m apparatus. by determining the B-field and the radius of curvature of the electron beam in the magnetic field. To do this you
Determination of e/m for the Electron. WARNING - Please be careful because high voltages are used in this Experiment. Introduction. The ratio of charge to mass
Measuring separately the electric charge ( e ) and the rest mass ( m ) of an electron is a . The electron-beam bulb used in this experiment has a cathode that is heated indirectly, .. DETERMINATION OF THE ACCELERATION VOLTAGE.
Just as moving charges induce magnetic fields, as seen in the previous lab, charged particles moving Simplifying Equation 3, we obtain the ratio e/m for the electron as e . A full lab report is not necessary for this lab. tedious calculation.].
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