| <!DOCTYPE html> | | <!DOCTYPE html> |
| <html lang="en"> | | <html lang="en"> |
| | | |
| <head> | | <head> |
| <meta charset="utf-8"> | | <meta charset="utf-8"> |
| <meta name="viewport" content="width=device-width, initial-scale=1.0"> | | <meta name="viewport" content="width=device-width, initial-scale=1.0"> |
| <meta http-equiv="content-language" content="en"> | | <meta http-equiv="content-language" content="en"> |
| <meta name="keywords" content="solutions, savchenko, physics problems, olympiad physics, physics book"> | | <meta name="keywords" content="solutions, savchenko, physics problems, olympiad physics, physics book"> |
| <meta name="description" content="A website with solutions to physics problems from Savchenko Textbook"> | | <meta name="description" content="A website with solutions to physics problems from Savchenko Textbook"> |
| <meta property="og:title" content="Savchenko Solutions"> | | <meta property="og:title" content="Savchenko Solutions"> |
| <meta property="og:image" content="img/logo.png"> | | <meta property="og:image" content="img/logo.png"> |
| <meta property="og:description" content="A website with solutions to physics problems from Savchenko Textbook"> | | <meta property="og:description" content="A website with solutions to physics problems from Savchenko Textbook"> |
| <meta name="yandex-verification" content="6cfda41f74038368"> | | <meta name="yandex-verification" content="6cfda41f74038368"> |
| <title>Savchenko Solutions</title> | | <title>Savchenko Solutions</title> |
| <link rel="stylesheet" href="https://savchenko-physics.github.io/css/css-latex/style.css"> | | <link rel="stylesheet" href="https://savchenko-physics.github.io/css/css-latex/style.css"> |
| <link rel="icon" href="https://savchenko-physics.github.io/img/logo.png" type="image/png"> | | <link rel="icon" href="https://savchenko-physics.github.io/img/logo.png" type="image/png"> |
| <script src="https://savchenko-physics.github.io/js/jquery-1.10.1.min.js"></script> | | <script src="https://savchenko-physics.github.io/js/jquery-1.10.1.min.js"></script> |
| <script async src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.7/MathJax.js?config=TeX-MML-AM_CHTML"></script> | | <script async src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.7/MathJax.js?config=TeX-MML-AM_CHTML"></script> |
| <script type="text/x-mathjax-config"> | | <script type="text/x-mathjax-config"> |
| MathJax.Hub.Config({ | | MathJax.Hub.Config({ |
| extensions: ['tex2jax.js'], | | extensions: ['tex2jax.js'], |
| jax: ['input/TeX', 'output/HTML-CSS'], | | jax: ['input/TeX', 'output/HTML-CSS'], |
| tex2jax: { | | tex2jax: { |
| inlineMath: [['$', '$'], ['$', '$']], | | inlineMath: [['$', '$'], ['$', '$']], |
| processEscapes: true, | | processEscapes: true, |
| processClass: 'tex2jax', | | processClass: 'tex2jax', |
| ignoreClass: 'html' | | ignoreClass: 'html' |
| }, | | }, |
| showProcessingMessages: false, | | showProcessingMessages: false, |
| messageStyle: 'none' | | messageStyle: 'none' |
| }); | | }); |
| </script> | | </script> |
| </head> | | </head> |
| <body style=""> | | <body style=""> |
| <header style="text-align:center;"> | | <header style="text-align:center;"> |
| <h2>Solutions of Savchenko Physics Textbook</h2> | | <h2>Solutions of Savchenko Physics Textbook</h2> |
| <p class="author"> | | <p class="author"> |
| Aliaksandr Melnichenka <br/> | | Aliaksandr Melnichenka <br/> |
| October 2023 | | October 2023 |
| </p> | | </p> |
| </header> | | </header> |
| | | |
| <h3 id="back-link"><a href="../#10.2">$\leftarrow$Back</a></h3> | | <h3 id="back-link"><a href="../#10.2">$\leftarrow$Back</a></h3> |
| | | |
| <h3> Statement </h3> | | <h3> Statement </h3> |
| <p> | | <p> |
| $10.2.12.$ Find the drift velocity of the electron and proton in the gravity field and the Earth's magnetic field, the induction of which is equal to 0.7 · 10$^{-4}$ T. The magnetic field is perpendicular to the gravity field. | | $10.2.12.$ Find the drift velocity of the electron and proton in the gravity field and the Earth's magnetic field, the induction of which is equal to 0.7 · 10$^{-4}$ T. The magnetic field is perpendicular to the gravity field. |
| </p> | | </p> |
| | | |
| <h3>Solution</h3> | | <h3>Solution</h3> |
| <p> | | <p> |
| Drift velocity is achieved when particle's path is unaffected respect to force fields that acting over it. So, absolute values of these forces are equal and their directions are opposed. Hence, | | Drift velocity is achieved when particle's path is unaffected respect to force fields that acting over it. So, absolute values of these forces are equal and their directions are opposed. Hence, |
| </p> | | </p> |
| <p style="text-align: center;"> | | <p style="text-align: center;"> |
| $mg = q~v_d~B$ | | $mg = q~v_d~B$ |
| </p> | | </p> |
| <p style="text-align: center;"> | | <p style="text-align: center;"> |
| $v_d = \frac{mg}{qB}$ | | $v_d = \frac{mg}{qB}$ |
| </p> | | </p> |
| <p> | | <p> |
| Now, considering the following data, calculations for each particle are possible: mass of electron $m_e = 9.1 \cdot 10^{-31}$ kg, mass of proton $m_p = 1.672 \cdot 10^{-27}$ kg, absolute value of charge $q = 1.6 \cdot 10^{-19}$ C and acceleration due to gravity $g = 9.8$ m/s$^2$. Calculating, | | Now, considering the following data, calculations for each particle are possible: mass of electron $m_e = 9.1 \cdot 10^{-31}$ kg, mass of proton $m_p = 1.672 \cdot 10^{-27}$ kg, absolute value of charge $q = 1.6 \cdot 10^{-19}$ C and acceleration due to gravity $g = 9.8$ m/s$^2$. Calculating, |
| </p> | | </p> |
| <p style="text-align: center;"> | | <p style="text-align: center;"> |
| $v_e = 7.9625 \cdot 10^{-7}$ m/s | | $v_e = 7.9625 \cdot 10^{-7}$ m/s |
| </p> | | </p> |
| <p style="text-align: center;"> | | <p style="text-align: center;"> |
| $v_p = 1.423625 \cdot 10^{-3}$ m/s | | $v_p = 1.423625 \cdot 10^{-3}$ m/s |
| </p> | | </p> |
| | | |
| <h4>Answer</h4> | | <h4>Answer</h4> |
| <p> | | <p> |