a charged particle of mass m and charge q must have passed through a point P on angle bisector of -BAC
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AB and AC are boundary lines within which a magnetic field B exists. If the magnetic field is absent, a charged particle of mass m and charge q must have passed through a point P on angle bisector of -BAC, at a distance r(2–√) from A, if it has fallen on AB normally at a point Q such that QP =r. If the magnetic field is present, how much time the charged particle will take to come out of the magnetic field
14
Oct
AB and AC are boundary lines within which a magnetic field B exists. If the magnetic field is absent, a charged particle of mass m and charge q must have passed through a point P on angle bisector of -BAC, at a distance r(2–√) from A, if it has fallen on AB normally at a [...]
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a charged particle of mass m and charge q must have passed through a point P on angle bisector of -BAC ,
AB and AC are boundary lines within which a magnetic field B exists. If the magnetic field is absent ,
at a distance r(2–√) from A ,
how much time the charged particle will take to come out of the magnetic field ,
if it has fallen on AB normally at a point Q such that QP =r. If the magnetic field is present ,