The solution at revision #2526 of , by astrosander. This is not the current version.
For problem $7.3.9$
Savchenko Solutions

Solutions of Savchenko Physics Textbook

Aliaksandr Melnichenka
October 2023

    <h3 id="back-link"><a href="/#7.3">$\leftarrow$Back</a></h3>

    <h3> Statement </h3>
    <p>
        $7.3.9^*.$ A thin electron beam accelerated by the potential difference $V$ enters a flat capacitor parallel to its plates. Determine the angular spread of electrons if a voltage $V_0$ sin wt is applied to the capacitor plates. The distance between the plates of the capacitor $d$ is much smaller than its length $l$.

For problem

    <h3>Solution</h3>
    <p>
        

Trajectory of a particle in an electric field

From the drawing

Law of conservation of energy

From where

Force acting on the particle:

Second Newton's Laws

By the definition of acceleration

Let's regroup and integrate


Time for which the particle will move horizontally by the value

Find the angle of velocity to the horizontal

Whence the angle

A little extra. Given that we can use the approximation

Find the required scattering angle

    <h4>Answer</h4>
    <p>
        $$\Delta\alpha=\pm\operatorname{arctg}\bigg\{\frac{V_{0}}{d\omega}\sqrt{\frac{2e}{m_{e}V}}\bigg[1-\operatorname{cos}\bigg(\omega l\sqrt{\frac{m_{e}}{2eV}}\bigg)\bigg]\bigg\}$$
    </p>
    <p style="text-align: right; font-style: italic; font-size: 14;">   
      Lutfulloyev Shukurullo<br>
      Yuldashev Ulugbek<br>
    </p>


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