Big vert in LaTeX: Analyzing Angular Distribution

Join the discussion
Registration is free. Ask a follow-up in this thread, or start your own.
5 replies · 50K views
Messages
6,735
Reaction score
2,437
Hi! I would like to have larger verts, representating abs, you can see for yourself how ugly this looks:
[tex]\dfrac{d\sigma }{d\Omega } (\pi ^+ \text{p}) = \dfrac{1}{k^2}\left[ \vert a^{\tfrac{3}{2}}_{0,\tfrac{1}{2}} + \left( 2a^{\tfrac{3}{2}}_{1,\tfrac{3}{2}} + a^{\tfrac{3}{2}}_{1,\tfrac{1}{2}} \right) \cos (\theta ) \vert ^2 + \vert \left( a^{\tfrac{3}{2}}_{1,\tfrac{3}{2}} - a^{\tfrac{3}{2}}_{1,\tfrac{1}{2}} \right) \sin (\theta )\vert ^2 \right][/tex]

I have searched in short AMS guide, but could not find it :(
 
Physics news on Phys.org
[tex]\dfrac{d\sigma }{d\Omega } (\pi ^+ \text{p}) = \dfrac{1}{k^2}\left[ \left| a^{\tfrac{3}{2}}_{0,\tfrac{1}{2}} + \left( 2a^{\tfrac{3}{2}}_{1,\tfrac{3}{2}} + a^{\tfrac{3}{2}}_{1,\tfrac{1}{2}} \right) \cos (\theta ) \right| ^2 + \vert \left( a^{\tfrac{3}{2}}_{1,\tfrac{3}{2}} - a^{\tfrac{3}{2}}_{1,\tfrac{1}{2}} \right) \sin (\theta )\vert ^2 \right][/tex]
 
-Sometimes you don't want left and right just by itself.
-The following works instead:

\big\vert
\bigg\vert
\Bigg\vert

kind regards,
Ian Gregory, Sydney.
 
  • Like
Likes   Reactions: P4Penguin