Difference between revisions of "Kicker Magnets"
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<math>B(T) = \frac{p_e (\frac{MeV}{c})\cdot 0.33\cdot 10^{-2}\cdot sin(\kappa)}{a(m)}</math> - general expression for B-field. | <math>B(T) = \frac{p_e (\frac{MeV}{c})\cdot 0.33\cdot 10^{-2}\cdot sin(\kappa)}{a(m)}</math> - general expression for B-field. | ||
− | <math>B(T) = \frac{ | + | <math>B(T) = \frac{7.83\cdot 10^{-2}\cdot sin(\kappa)}{a(m)}</math> |
If <math>\kappa = 0.47^0</math> then <math>sin(\kappa) = 0.0082</math> and our B-field becomes: | If <math>\kappa = 0.47^0</math> then <math>sin(\kappa) = 0.0082</math> and our B-field becomes: |
Revision as of 17:40, 8 June 2010
Field needed to bend 44 MeV electrons 0.47 degrees
, ,
- general expression for B-field.
If
then and our B-field becomes:
for the coils under consideration. Hence, B-field is: