Exercise
https://texercises.raemilab.ch/exercise/relativistic-proton/
Question
Solution
Short
Video
\(\LaTeX\)
No explanation / solution video to this exercise has yet been created.

Visit our YouTube-Channel to see solutions to other exercises.
Don't forget to subscribe to our channel, like the videos and leave comments!
Exercise:
Calculate the Lorentz factor and the velocity of a proton with EkO of kinetic energy.

Solution:
The kinetic energy is the difference between the total energy and the rest energy of the proton: E_k E - E_ gamma E_ - E_ gamma-E_ with the rest energy E_ m_p c^ approx ErP. The Lorentz factor is therefore gamma +fracE_kE_ gaF With gamma /sqrt-v^/c^ we can solve for the velocity: v csqrt-fracgamma^ medskip Inserting the numerical values yields gamma +fracE_kE_ +fracEkOErP +gm resultgaP The velocity is v csqrt-fracgamma^ ncctimessqrt-fracleftgaright^ vp approx resultvpP which corresponds to v/c approx bpP.
Report An Error
You are on texercises.raemilab.ch.
reCaptcha will only work on our main-domain \(\TeX\)ercises.com!
Meta Information
\(\LaTeX\)-Code
Exercise:
Calculate the Lorentz factor and the velocity of a proton with EkO of kinetic energy.

Solution:
The kinetic energy is the difference between the total energy and the rest energy of the proton: E_k E - E_ gamma E_ - E_ gamma-E_ with the rest energy E_ m_p c^ approx ErP. The Lorentz factor is therefore gamma +fracE_kE_ gaF With gamma /sqrt-v^/c^ we can solve for the velocity: v csqrt-fracgamma^ medskip Inserting the numerical values yields gamma +fracE_kE_ +fracEkOErP +gm resultgaP The velocity is v csqrt-fracgamma^ ncctimessqrt-fracleftgaright^ vp approx resultvpP which corresponds to v/c approx bpP.
Contained in these collections
Attributes & Decorations
Topic
Tags
kinetic energy, lorentz factor
Difficulty
(1, default)
Points
0 (default)
Language
ENG (English)
Type
Calculative / Quantity
Decoration
Content image

Similar exercises (9)