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Page 365
Equation ( 11.39 ) shows that the electron has a 8 factor of 2. ... We will show in Section 11.10 that in a coordinate system moving with the electron the magnetic induction is B ' ~ B X E ( 11.41 ) с where we have neglected ...
Equation ( 11.39 ) shows that the electron has a 8 factor of 2. ... We will show in Section 11.10 that in a coordinate system moving with the electron the magnetic induction is B ' ~ B X E ( 11.41 ) с where we have neglected ...
Page 369
From ( 11.21 ) it is easy to show that the invariant " length " element is ds2 = dx2 + dy2 + dz2 c2 dt2 ( 11.60 ) This ... can be written do = dt v2 c2 ( 11.62 ) Equation ( 11.62 ) shows the time - dilatation effect already discussed .
From ( 11.21 ) it is easy to show that the invariant " length " element is ds2 = dx2 + dy2 + dz2 c2 dt2 ( 11.60 ) This ... can be written do = dt v2 c2 ( 11.62 ) Equation ( 11.62 ) shows the time - dilatation effect already discussed .
Page 373
3 0 X3 With definitions ( 11.68 ) and ( 11.70 ) it is elementary to show that ( 11.75 ) yields exactly the ... in ( 11.77 ) with the transformation coefficients in ( 11.75 ) shows that the angle y is a complex angle whose tangent is tan ...
3 0 X3 With definitions ( 11.68 ) and ( 11.70 ) it is elementary to show that ( 11.75 ) yields exactly the ... in ( 11.77 ) with the transformation coefficients in ( 11.75 ) shows that the angle y is a complex angle whose tangent is tan ...
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Contents
Introduction to Electrostatics | 1 |
BoundaryValue Problems in Electrostatics I | 26 |
TimeVarying Fields Maxwells Equations Con | 169 |
Copyright | |
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